Crystallography Open Database

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7706295 CIFC12 H8 Br2 Co N4 S2P -18.0951; 9.4346; 10.8479
73.304; 83.016; 80.318
779.91Jochim, Aleksej; Rams, Michał; Böhme, Michael; Ceglarska, Magdalena; Plass, Winfried; Näther, Christian
Thermodynamically metastable chain and stable layered Co(NCS)<sub>2</sub> coordination polymers: thermodynamic relations and magnetic properties.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15310-15322
7706296 CIFC20 H19 Br Cr O6 S2P -17.5092; 10.8694; 15.5717
100.253; 102.1; 108.802
1134.27Lamprecht, Zandria; Malan, Frederick P.; Fernández, Israel; Lotz, Simon; Bezuidenhout, Daniela I.
Chelated Fischer carbene complexes of annulated thiophenes: synthesis, structure and electrochemistry.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15339-15354
7706297 CIFC16 H12 O6 S2 WP -17.4467; 10.7958; 12.3241
75.914; 75.794; 70.56
891.44Lamprecht, Zandria; Malan, Frederick P.; Fernández, Israel; Lotz, Simon; Bezuidenhout, Daniela I.
Chelated Fischer carbene complexes of annulated thiophenes: synthesis, structure and electrochemistry.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15339-15354
7706298 CIFC16 H12 Cr O6 S2P -17.4276; 10.7016; 12.2391
74.238; 75.469; 71.41
872.91Lamprecht, Zandria; Malan, Frederick P.; Fernández, Israel; Lotz, Simon; Bezuidenhout, Daniela I.
Chelated Fischer carbene complexes of annulated thiophenes: synthesis, structure and electrochemistry.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15339-15354
7706299 CIFC26 H20 Cr2 O12 S2P -17.1185; 9.6691; 10.7876
92.975; 96.209; 103.001
717Lamprecht, Zandria; Malan, Frederick P.; Fernández, Israel; Lotz, Simon; Bezuidenhout, Daniela I.
Chelated Fischer carbene complexes of annulated thiophenes: synthesis, structure and electrochemistry.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15339-15354
7706300 CIFC37 H29 O12 S3 W2P -111.0377; 12.018; 16.5239
69.06; 74.437; 77.654
1955.1Lamprecht, Zandria; Malan, Frederick P.; Fernández, Israel; Lotz, Simon; Bezuidenhout, Daniela I.
Chelated Fischer carbene complexes of annulated thiophenes: synthesis, structure and electrochemistry.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15339-15354
7706301 CIFC30.85 H22.85 Cr2 O12 S3P -110.7421; 16.0557; 21.988
101.964; 99.888; 103.629
3507.1Lamprecht, Zandria; Malan, Frederick P.; Fernández, Israel; Lotz, Simon; Bezuidenhout, Daniela I.
Chelated Fischer carbene complexes of annulated thiophenes: synthesis, structure and electrochemistry.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15339-15354
7706302 CIFC22 H47 I23 N33 O2 P Sn6P -114.0051; 14.7298; 22.535
83.978; 85.573; 88.147
4608McNulty, Jason A.; Slawin, Alexandra M. Z.; Lightfoot, Philip
Variable dimensionality in 'hollow' hybrid tin iodide perovskites.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15171-15174
7706303 CIFC6 H12 I7 N9 Sn2P -16.403; 14.2301; 14.68
91.42; 93.54; 90.1
1334.6McNulty, Jason A.; Slawin, Alexandra M. Z.; Lightfoot, Philip
Variable dimensionality in 'hollow' hybrid tin iodide perovskites.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15171-15174
7706304 CIFC23 H23 Eu N4 O11I 1 2/c 116.423; 11.4174; 34.1386
90; 102.649; 90
6245.9Wang, Xiaokang; Wang, Yutong; Wang, Xia; Lu, Kebin; Jiang, Weifeng; Cui, Pei-Pei; Hao, Hongguo; Dai, Fangna
Two series of Ln-MOFs by solvent induced self-assembly demonstrating the rapid selective sensing of Mg<sup>2+</sup> and Fe<sup>3+</sup> cations.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15473-15480
7706305 CIFC102 H67 Dy4 N9 O47P -110.8561; 14.9304; 19.0399
74.9102; 79.6702; 80.0399
2905.4Wang, Xiaokang; Wang, Yutong; Wang, Xia; Lu, Kebin; Jiang, Weifeng; Cui, Pei-Pei; Hao, Hongguo; Dai, Fangna
Two series of Ln-MOFs by solvent induced self-assembly demonstrating the rapid selective sensing of Mg<sup>2+</sup> and Fe<sup>3+</sup> cations.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15473-15480
7706306 CIFC23 H23 N4 Nd O11I 1 2/c 116.5848; 11.528; 33.9909
90; 102.198; 90
6352Wang, Xiaokang; Wang, Yutong; Wang, Xia; Lu, Kebin; Jiang, Weifeng; Cui, Pei-Pei; Hao, Hongguo; Dai, Fangna
Two series of Ln-MOFs by solvent induced self-assembly demonstrating the rapid selective sensing of Mg<sup>2+</sup> and Fe<sup>3+</sup> cations.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15473-15480
7706307 CIFC102 H67 N9 O47 Sm4P -110.951; 14.931; 19.1539
74.153; 79.198; 80.098
2935.2Wang, Xiaokang; Wang, Yutong; Wang, Xia; Lu, Kebin; Jiang, Weifeng; Cui, Pei-Pei; Hao, Hongguo; Dai, Fangna
Two series of Ln-MOFs by solvent induced self-assembly demonstrating the rapid selective sensing of Mg<sup>2+</sup> and Fe<sup>3+</sup> cations.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15473-15480
7706308 CIFC102 H65 Eu4 N9 O46.5P -110.9059; 15.0573; 19.0395
73.965; 79.657; 80.859
2936.3Wang, Xiaokang; Wang, Yutong; Wang, Xia; Lu, Kebin; Jiang, Weifeng; Cui, Pei-Pei; Hao, Hongguo; Dai, Fangna
Two series of Ln-MOFs by solvent induced self-assembly demonstrating the rapid selective sensing of Mg<sup>2+</sup> and Fe<sup>3+</sup> cations.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 15473-15480
7706309 CIFC70 H24 Au Cl0 F33 Fe3 N3 O3 P3 SP -112.6634; 15.103; 19.1877
93.198; 97.777; 103.745
3517.1Straube, Axel; Coburger, Peter; Michak, Marvin; Ringenberg, Mark R.; Hey-Hawkins, Evamarie
The core of the matter - arene substitution determines the coordination and catalytic behaviour of tris(1-phosphanyl-1'-ferrocenylene)arene gold(I) complexes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 16667-16682
7706310 CIFC71 H25.75 Ag Cl F33 Fe3 N3 O3 P3 SP -112.7215; 15.1519; 19.1988
93.368; 98.006; 103.392
3549Straube, Axel; Coburger, Peter; Michak, Marvin; Ringenberg, Mark R.; Hey-Hawkins, Evamarie
The core of the matter - arene substitution determines the coordination and catalytic behaviour of tris(1-phosphanyl-1'-ferrocenylene)arene gold(I) complexes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 16667-16682
7706311 CIFC93 H97 Au F3 Fe3 O8 P3 SP 1 21/n 123.1998; 16.4337; 23.6527
90; 107.834; 90
8584.5Straube, Axel; Coburger, Peter; Michak, Marvin; Ringenberg, Mark R.; Hey-Hawkins, Evamarie
The core of the matter - arene substitution determines the coordination and catalytic behaviour of tris(1-phosphanyl-1'-ferrocenylene)arene gold(I) complexes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 16667-16682
7706312 CIFC156.5 H127.5 Au3 Cl0 F3 Fe6 N6 O3 P6 SP -112.4778; 23.4172; 27.2317
70.125; 84.26; 89.076
7444.1Straube, Axel; Coburger, Peter; Michak, Marvin; Ringenberg, Mark R.; Hey-Hawkins, Evamarie
The core of the matter - arene substitution determines the coordination and catalytic behaviour of tris(1-phosphanyl-1'-ferrocenylene)arene gold(I) complexes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 16667-16682
7706313 CIFC147 H108 Au3 F15 Fe6 O9 P6 S3P -114.1825; 19.1612; 31.3978
80.713; 84.878; 85.819
8372.1Straube, Axel; Coburger, Peter; Michak, Marvin; Ringenberg, Mark R.; Hey-Hawkins, Evamarie
The core of the matter - arene substitution determines the coordination and catalytic behaviour of tris(1-phosphanyl-1'-ferrocenylene)arene gold(I) complexes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 16667-16682
7706314 CIFC153 H122 Au3 F6 Fe6 N0 O6 P6 S2P -112.6182; 23.5315; 27.2516
69.34; 83.591; 88.26
7523.6Straube, Axel; Coburger, Peter; Michak, Marvin; Ringenberg, Mark R.; Hey-Hawkins, Evamarie
The core of the matter - arene substitution determines the coordination and catalytic behaviour of tris(1-phosphanyl-1'-ferrocenylene)arene gold(I) complexes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 16667-16682
8000395 CIFC4 H12 Br4 Cd F4 N2P b c a7.8696; 7.664; 22.6439
90; 90; 90
1365.71Luo, Binbin; Liang, Dehai; Sun, Shanshan; Xiao, Yonghong; Lian, Xin; Li, Xianli; Li, Ming-De; Huang, Xiao-Chun; Zhang, Jin Z.
Breaking Forbidden Transitions for Emission of Self-Trapped Excitons in Two Dimensional (F<sub>2</sub>CHCH<sub>2</sub>NH<sub>3</sub>)<sub>2</sub>CdBr<sub>4</sub> Perovskite through Pb Alloying.
The journal of physical chemistry letters, 2020, 11, 199-205
8000396 CIFC32 H44 Cu4 I4 N4P 21 21 217.54153; 12.0777; 45.1161
90; 90; 90
4109.4Yao, Li; Niu, Guangda; Li, Junze; Gao, Liang; Luo, Xufeng; Xia, Bing; Liu, Yuhao; Du, Peipei; Li, Dehui; Chen, Chao; Zheng, Youxuan; Xiao, Zewen; Tang, Jiang
Circularly Polarized Luminescence from Chiral Tetranuclear Copper(I) Iodide Clusters.
The journal of physical chemistry letters, 2020, 1255-1260
8000397 CIFC32 H44 Cu4 I4 N4P 21 21 217.54722; 12.06809; 45.0822
90; 90; 90
4106.11Yao, Li; Niu, Guangda; Li, Junze; Gao, Liang; Luo, Xufeng; Xia, Bing; Liu, Yuhao; Du, Peipei; Li, Dehui; Chen, Chao; Zheng, Youxuan; Xiao, Zewen; Tang, Jiang
Circularly Polarized Luminescence from Chiral Tetranuclear Copper(I) Iodide Clusters.
The journal of physical chemistry letters, 2020, 1255-1260
8000398 CIFC40 H20 Cl4 N4 O2 S4P -17.5502; 15.2672; 30.9195
80.2982; 89.4414; 87.9701
3510.9Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000399 CIFC48 H24 Cl12 O6 S4P -17.1738; 7.6722; 21.6585
96.19; 98.569; 92.3536
1169.9Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000400 CIFC40 H20 Cl4 N4 O2 S4P -17.6289; 7.701; 30.698
85.794; 89.5306; 88.5438
1798.04Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000401 CIFC38 H16 Cl8 O4 S4P -17.6555; 7.6969; 15.9629
98.1455; 93.3158; 92.2872
928.44Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000402 CIFC38 H16 Cl8 O4 S4P -17.5809; 15.1973; 17.0179
67.017; 82.633; 87.047
1790.1Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000403 CIFC48 H24 Cl12 O6 S4P -17.3358; 7.7383; 21.822
96.2006; 98.4849; 93.0166
1215.1Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000404 CIFC40 H20 Cl4 N4 O2 S4P -17.5963; 7.6826; 30.6464
85.5932; 89.6875; 88.448
1782.55Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000405 CIFC40 H20 Cl4 N4 O2 S4P -17.5923; 7.6803; 30.6429
85.5655; 89.7179; 88.4239
1780.79Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000406 CIFC40 H20 Cl4 N4 O2 S4P -17.5852; 7.6749; 30.624
85.5563; 89.7552; 88.3859
1776.7Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000407 CIFC40 H20 Cl4 N4 O2 S4P -17.5797; 7.6692; 30.6092
85.6093; 89.79; 88.3051
1773.32Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000408 CIFC40 H20 Cl4 N4 O2 S4P -17.5747; 7.6588; 30.5803
85.7079; 89.8361; 88.1942
1768.2Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000409 CIFC40 H20 Cl4 N4 O2 S4P -17.5681; 7.6518; 30.5589
85.7256; 89.8676; 88.1423
1763.8Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000410 CIFC40 H20 Cl4 N4 O2 S4P -17.5454; 7.6338; 30.5119
85.5906; 89.9846; 88.0361
1751.25Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000411 CIFC40 H20 Cl4 N4 O2 S4P -17.531; 15.22; 30.7947
80.415; 89.44; 88.111
3478.5Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000412 CIFC38 H16 Cl8 O4 S4P -17.6224; 7.6188; 15.8758
97.7456; 93.2272; 92.4714
910.9Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000413 CIFC38 H16 Cl8 O4 S4P -17.6001; 15.2128; 17.0597
67.0648; 82.4814; 87.1754
1800.9Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000414 CIFC48 H24 Cl12 O6 S4P -17.1814; 7.674; 21.6396
96.108; 98.58; 92.34
1170.57Takahashi, Yukihiro; Takehisa, Mika; Tanaka, Eri; Harada, Jun; Kumai, Reiji; Inabe, Tamotsu
Incorporating Spacer Molecules into the Tetrathiafulvalene-p-Chloranil Charge-Transfer Framework: Modulating the Neutral-Ionic Phase Transition.
The journal of physical chemistry letters, 2020, 1336
8000415 CIFC18 H17 N O5P 21 21 217.3855; 9.2351; 24.6276
90; 90; 90
1679.75Xue, Shixin; Zhang, Nan; Hu, Xiaoling; Zeng, Yongfei; Zhang, Jingbo; Xing, Pengyao; Zhao, Yanli
Self-Assembly Evolution of <i>N</i>-Terminal Aromatic Amino Acids with Transient Supramolecular Chirality.
The journal of physical chemistry letters, 2020, 11, 1490-1496
8000416 CIFC16 H0 B8 F32 N5.33 Rb2.67F m -3 c14.341; 14.341; 14.341
90; 90; 90
2949.43Chu, Lu-Lu; Zhang, Tie; Zhang, Wan-Ying; Shi, Ping-Ping; Gao, Ji-Xing; Ye, Qiong; Fu, Da-Wei
Three-Dimensional Metal-Free Molecular Perovskite with a Thermally Induced Switchable Dielectric Response.
The journal of physical chemistry letters, 2020, 1668-1674
8000417 CIFC6 H18 B3 F12 N3P a -314.2205; 14.2205; 14.2205
90; 90; 90
2875.71Chu, Lu-Lu; Zhang, Tie; Zhang, Wan-Ying; Shi, Ping-Ping; Gao, Ji-Xing; Ye, Qiong; Fu, Da-Wei
Three-Dimensional Metal-Free Molecular Perovskite with a Thermally Induced Switchable Dielectric Response.
The journal of physical chemistry letters, 2020, 1668-1674
8000418 CIFC48 H0 B24 F96 N24F m -3 c14.3006; 14.3006; 14.3006
90; 90; 90
2924.58Chu, Lu-Lu; Zhang, Tie; Zhang, Wan-Ying; Shi, Ping-Ping; Gao, Ji-Xing; Ye, Qiong; Fu, Da-Wei
Three-Dimensional Metal-Free Molecular Perovskite with a Thermally Induced Switchable Dielectric Response.
The journal of physical chemistry letters, 2020, 1668-1674
8000419 CIFC6 H14 B3 F12 N2 RbP a -314.2492; 14.2492; 14.2492
90; 90; 90
2893.15Chu, Lu-Lu; Zhang, Tie; Zhang, Wan-Ying; Shi, Ping-Ping; Gao, Ji-Xing; Ye, Qiong; Fu, Da-Wei
Three-Dimensional Metal-Free Molecular Perovskite with a Thermally Induced Switchable Dielectric Response.
The journal of physical chemistry letters, 2020, 1668-1674
8000420 CIFC12 H32 Cl8 N4 SnC 1 2/c 124.8035; 7.9768; 14.8847
90; 121.21; 90
2518.76Song, Gaomin; Li, Mingze; Yang, Yi; Liang, Fei; Huang, Qian; Liu, Xiaomeng; Gong, Pifu; Xia, Zhiguo; Lin, Zheshuai
Lead-Free Tin(IV)-Based Organic-Inorganic Metal Halide Hybrids with Excellent Stability and Blue-Broadband Emission.
The journal of physical chemistry letters, 2020, 1808-1813
8000421 CIFC67.28 H51.67 Cl1.19 N4 O12.68 ZnP 1 21 113.6905; 19.3639; 28.2678
90; 97.376; 90
7431.8Margarit, Charles G.; Asimow, Naomi G.; Gonzalez, Miguel I.; Nocera, Daniel G.
Double Hangman Iron Porphyrin and the Effect of Electrostatic Nonbonding Interactions on Carbon Dioxide Reduction.
The journal of physical chemistry letters, 2020, 1890-1895
8000422 CIFC24 H18 Cu3 N9P n a 2125.5422; 10.3454; 34.6772
90; 90; 90
9163.3Xing, Li-Rui; Lu, Zhou; Li, Mian; Zheng, Ji; Li, Dan
Revealing High-Lying Inter-System Crossing in Brightly Luminescent Cyclic Trinuclear Cu<sup>I</sup>/Ag<sup>I</sup> Complexes.
The journal of physical chemistry letters, 2020, 2067
8000423 CIFC96 H73 Cu12 N36P n a 2125.6853; 10.4956; 35.037
90; 90; 90
9445.4Xing, Li-Rui; Lu, Zhou; Li, Mian; Zheng, Ji; Li, Dan
Revealing High-Lying Inter-System Crossing in Brightly Luminescent Cyclic Trinuclear Cu<sup>I</sup>/Ag<sup>I</sup> Complexes.
The journal of physical chemistry letters, 2020, 2067
8000424 CIFC48 H36 Ag6 N18P 1 21/n 111.592; 8.3296; 25.2621
90; 102.944; 90
2377.24Xing, Li-Rui; Lu, Zhou; Li, Mian; Zheng, Ji; Li, Dan
Revealing High-Lying Inter-System Crossing in Brightly Luminescent Cyclic Trinuclear Cu<sup>I</sup>/Ag<sup>I</sup> Complexes.
The journal of physical chemistry letters, 2020, 2067
8000425 CIFC48 H36 Ag6 N18P 1 21/c 111.5674; 8.5459; 25.4385
90; 103.077; 90
2449.5Xing, Li-Rui; Lu, Zhou; Li, Mian; Zheng, Ji; Li, Dan
Revealing High-Lying Inter-System Crossing in Brightly Luminescent Cyclic Trinuclear Cu<sup>I</sup>/Ag<sup>I</sup> Complexes.
The journal of physical chemistry letters, 2020, 2067
8000426 CIFC51 H48 Cu6 N18 O3P -17.1324; 18.7836; 18.9897
89.437; 79.51; 88.405
2500.57Xing, Li-Rui; Lu, Zhou; Li, Mian; Zheng, Ji; Li, Dan
Revealing High-Lying Inter-System Crossing in Brightly Luminescent Cyclic Trinuclear Cu<sup>I</sup>/Ag<sup>I</sup> Complexes.
The journal of physical chemistry letters, 2020, 2067
8000427 CIFC24 H18 Cu3 N9P -17.214; 18.8723; 19.0253
89.557; 80.608; 89.749
2555.38Xing, Li-Rui; Lu, Zhou; Li, Mian; Zheng, Ji; Li, Dan
Revealing High-Lying Inter-System Crossing in Brightly Luminescent Cyclic Trinuclear Cu<sup>I</sup>/Ag<sup>I</sup> Complexes.
The journal of physical chemistry letters, 2020, 2067
8000428 CIFC8 H20 Br4 N2 PbP n m a8.4804; 24.4406; 7.9107
90; 90; 90
1639.62Su, Binbin; Molokeev, Maxim S.; Xia, Zhiguo
Unveiling Mn<sup>2+</sup> Dopant States in Two-Dimensional Halide Perovskite toward Highly Efficient Photoluminescence.
The journal of physical chemistry letters, 2020, 11, 2510-2517
8000429 CIFC21 H21 Cl2 Fe N O3C 2 2 219.6818; 15.8107; 26.3785
90; 90; 90
4037.92Zong, Zhaohui; Li, Peizhou; Hao, Aiyou; Xing, Pengyao
Self-Assembly of <i>N</i>-Terminal Aryl Amino Acids into Adaptive Single- and Double-Strand Helices.
The journal of physical chemistry letters, 2020, 11, 4147-4155
8000430 CIFC31 H30 Cl2 Fe N2 O6P 21 21 2111.0166; 12.3581; 22.5772
90; 90; 90
3073.76Zong, Zhaohui; Li, Peizhou; Hao, Aiyou; Xing, Pengyao
Self-Assembly of <i>N</i>-Terminal Aryl Amino Acids into Adaptive Single- and Double-Strand Helices.
The journal of physical chemistry letters, 2020, 11, 4147-4155
8000431 CIFC31 H30 Cl2 Fe N2 O6P 21 21 2111.0155; 12.3587; 22.5754
90; 90; 90
3073.35Zong, Zhaohui; Li, Peizhou; Hao, Aiyou; Xing, Pengyao
Self-Assembly of <i>N</i>-Terminal Aryl Amino Acids into Adaptive Single- and Double-Strand Helices.
The journal of physical chemistry letters, 2020, 11, 4147-4155
8000432 CIFC21 H21 Cl2 Fe N O3C 2 2 219.6682; 15.8378; 26.3801
90; 90; 90
4039.4Zong, Zhaohui; Li, Peizhou; Hao, Aiyou; Xing, Pengyao
Self-Assembly of <i>N</i>-Terminal Aryl Amino Acids into Adaptive Single- and Double-Strand Helices.
The journal of physical chemistry letters, 2020, 11, 4147-4155
8000433 CIFC788 H832 Cu44 F48 P24 S36 Sb8P 1 21/n 126.564; 26.692; 33.045
90; 106.652; 90
22448Li, Hao; Zhai, Hongsheng; Zhou, Chuanjun; Song, Yongbo; Ke, Feng; Xu, Wen Wu; Zhu, Manzhou
Atomically Precise Copper Cluster with Intensely Near-Infrared Luminescence and Its Mechanism.
The journal of physical chemistry letters, 2020, 11, 4891-4896
8000434 CIFC19 H14 I NP 21 21 215.4967; 13.8112; 19.849
90; 90; 90
1506.86Sun, Huili; Ding, Riqing; Lv, Shanling; Zhou, Shasha; Guo, Sidan; Qian, Zhaosheng; Feng, Hui
Clustering-Triggered Ultralong Room-Temperature Phosphorescence of Organic Crystals through Halogen-Mediated Molecular Assembly.
The journal of physical chemistry letters, 2020, 11, 4962-4969
8000435 CIFC19 H14 Br NP 21 21 215.5364; 13.6786; 19.513
90; 90; 90
1477.7Sun, Huili; Ding, Riqing; Lv, Shanling; Zhou, Shasha; Guo, Sidan; Qian, Zhaosheng; Feng, Hui
Clustering-Triggered Ultralong Room-Temperature Phosphorescence of Organic Crystals through Halogen-Mediated Molecular Assembly.
The journal of physical chemistry letters, 2020, 11, 4962-4969
8000436 CIFC17 H16 F N O2P b c a8.4897; 10.6452; 30.8917
90; 90; 90
2791.8Chu, Xiaotong; Lu, Zhuoqun; Tang, Baolei; Liu, Bin; Ye, Kaiqi; Zhang, Hongyu
Engineering Mechanical Compliance of an Organic Compound toward Flexible Crystal Lasing Media.
The journal of physical chemistry letters, 2020, 5433-5438
8000437 CIFC2.34 H2.21 F0.14 N0.14 O0.28P 1 21/c 115.4183; 12.1852; 7.8546
90; 104.549; 90
1428.4Chu, Xiaotong; Lu, Zhuoqun; Tang, Baolei; Liu, Bin; Ye, Kaiqi; Zhang, Hongyu
Engineering Mechanical Compliance of an Organic Compound toward Flexible Crystal Lasing Media.
The journal of physical chemistry letters, 2020, 5433-5438
8000438 CIFC17 H16 F N O2P 1 21/c 110.913; 11.7943; 11.5984
90; 111.525; 90
1388.73Chu, Xiaotong; Lu, Zhuoqun; Tang, Baolei; Liu, Bin; Ye, Kaiqi; Zhang, Hongyu
Engineering Mechanical Compliance of an Organic Compound toward Flexible Crystal Lasing Media.
The journal of physical chemistry letters, 2020, 5433-5438
8000439 CIFC80.5 H85 Cl7 F10 Ir2 N6 O2 S2P 1 21/n 111.0806; 15.6633; 23.814
90; 96.483; 90
4106.7Shafikov, Marsel Z.; Zaytsev, Andrey V.; Suleymanova, Alfiya F.; Brandl, Fabian; Kowalczyk, Aleksandra; Gapińska, Magdalena; Kowalski, Konrad; Kozhevnikov, Valery N.; Czerwieniec, Rafał
Near Infrared Phosphorescent Dinuclear Ir(III) Complex Exhibiting Unusually Slow Intersystem Crossing and Dual Emissive Behavior.
The journal of physical chemistry letters, 2020, 5849-5855
8000440 CIFC20 H32 Br4 Mn0.6 N2 Zn0.4P 1 21 19.5732; 9.1568; 15.2531
90; 94.935; 90
1332.13Zhou, Guojun; Liu, Zhiyang; Huang, Jinglong; Molokeev, Maxim S.; Xiao, Zewen; Ma, Chonggeng; Xia, Zhiguo
Unraveling the Near-Unity Narrow-Band Green Emission in Zero-Dimensional Mn<sup>2+</sup>-Based Metal Halides: A Case Study of (C<sub>10</sub>H<sub>16</sub>N)<sub>2</sub>Zn<sub>1-<i>x</i></sub>Mn<sub> <i>x</i> </sub>Br<sub>4</sub> Solid Solutions.
The journal of physical chemistry letters, 2020, 5956-5962
8000441 CIFC20 H32 Br4 Mn0.8 N2 Zn0.2P 1 21 19.5764; 9.1603; 15.2625
90; 94.924; 90
1333.93Zhou, Guojun; Liu, Zhiyang; Huang, Jinglong; Molokeev, Maxim S.; Xiao, Zewen; Ma, Chonggeng; Xia, Zhiguo
Unraveling the Near-Unity Narrow-Band Green Emission in Zero-Dimensional Mn<sup>2+</sup>-Based Metal Halides: A Case Study of (C<sub>10</sub>H<sub>16</sub>N)<sub>2</sub>Zn<sub>1-<i>x</i></sub>Mn<sub> <i>x</i> </sub>Br<sub>4</sub> Solid Solutions.
The journal of physical chemistry letters, 2020, 5956-5962
8000442 CIFC20 H32 Br4 N2 ZnP 1 21 19.552; 9.134; 15.2067
90; 94.953; 90
1321.8Zhou, Guojun; Liu, Zhiyang; Huang, Jinglong; Molokeev, Maxim S.; Xiao, Zewen; Ma, Chonggeng; Xia, Zhiguo
Unraveling the Near-Unity Narrow-Band Green Emission in Zero-Dimensional Mn<sup>2+</sup>-Based Metal Halides: A Case Study of (C<sub>10</sub>H<sub>16</sub>N)<sub>2</sub>Zn<sub>1-<i>x</i></sub>Mn<sub> <i>x</i> </sub>Br<sub>4</sub> Solid Solutions.
The journal of physical chemistry letters, 2020, 5956-5962
8000443 CIFC20 H32 Br4 Mn N2P 1 21 19.59257; 9.17931; 15.29408
90; 94.8868; 90
1341.8Zhou, Guojun; Liu, Zhiyang; Huang, Jinglong; Molokeev, Maxim S.; Xiao, Zewen; Ma, Chonggeng; Xia, Zhiguo
Unraveling the Near-Unity Narrow-Band Green Emission in Zero-Dimensional Mn<sup>2+</sup>-Based Metal Halides: A Case Study of (C<sub>10</sub>H<sub>16</sub>N)<sub>2</sub>Zn<sub>1-<i>x</i></sub>Mn<sub> <i>x</i> </sub>Br<sub>4</sub> Solid Solutions.
The journal of physical chemistry letters, 2020, 5956-5962
8000444 CIFC20 H32 Br4 Mn0.2 N2 Zn0.8P 1 21 19.5593; 9.1402; 15.2225
90; 94.958; 90
1325.07Zhou, Guojun; Liu, Zhiyang; Huang, Jinglong; Molokeev, Maxim S.; Xiao, Zewen; Ma, Chonggeng; Xia, Zhiguo
Unraveling the Near-Unity Narrow-Band Green Emission in Zero-Dimensional Mn<sup>2+</sup>-Based Metal Halides: A Case Study of (C<sub>10</sub>H<sub>16</sub>N)<sub>2</sub>Zn<sub>1-<i>x</i></sub>Mn<sub> <i>x</i> </sub>Br<sub>4</sub> Solid Solutions.
The journal of physical chemistry letters, 2020, 5956-5962
8000445 CIFC20 H32 Br4 Mn0.4 N2 Zn0.6P 1 21 19.5667; 9.1487; 15.2381
90; 94.949; 90
1328.71Zhou, Guojun; Liu, Zhiyang; Huang, Jinglong; Molokeev, Maxim S.; Xiao, Zewen; Ma, Chonggeng; Xia, Zhiguo
Unraveling the Near-Unity Narrow-Band Green Emission in Zero-Dimensional Mn<sup>2+</sup>-Based Metal Halides: A Case Study of (C<sub>10</sub>H<sub>16</sub>N)<sub>2</sub>Zn<sub>1-<i>x</i></sub>Mn<sub> <i>x</i> </sub>Br<sub>4</sub> Solid Solutions.
The journal of physical chemistry letters, 2020, 5956-5962
8000446 CIFC60 Ag5.26 Au24.74 S18P 1 21/n 125.1222; 14.9693; 40.2014
90; 99.435; 90
14913.7Wijesinghe, Kalpani Hirunika; Sakthivel, Naga Arjun; Jones, Tanya; Dass, Amala
Crystal Structure of Au<sub>30-<i>x</i></sub>Ag<sub> <i>x</i> </sub>(S-<i>t</i>Bu)<sub>18</sub> and Effect of the Ligand on Ag Alloying in Gold Nanomolecules.
The journal of physical chemistry letters, 2020, 6312-6319
8000447 CIFC17 H30 I7 N3 Pb2P -18.722; 8.726; 22.533
97.604; 93.482; 90.36
1696.5Morrow, Darien J.; Hautzinger, Matthew P.; Lafayette, David P.; Scheeler, Jason M.; Dang, Lianna; Leng, Meiying; Kohler, Daniel D.; Wheaton, Amelia M.; Fu, Yongping; Guzei, Ilia A.; Tang, Jiang; Jin, Song; Wright, John C.
Disentangling Second Harmonic Generation from Multiphoton Photoluminescence in Halide Perovskites using Multidimensional Harmonic Generation.
The journal of physical chemistry letters, 2020, 6551-6559
8000448 CIFC72 H162 Ag2.68 Au27.31 S18P 1 21/n 115.2662; 51.5233; 17.4781
90; 90.777; 90
13746.4Li, Yingwei; Taylor, Michael G.; Luo, Tian-Yi; Song, Yongbo; Rosi, Nathaniel L.; Mpourmpakis, Giannis; Jin, Rongchao
Heteroatom Tracing Reveals the 30-Atom Au-Ag Bimetallic Nanocluster as a Dimeric Structure.
The journal of physical chemistry letters, 2020, 11, 7307-7312
8000449 CIFC5 H3 K O3P 21 21 213.9649; 5.7919; 25.7992
90; 90; 90
592.46Frankhouser, Amy D.; Kanan, Matthew W.
Phase Behavior That Enables Solvent-Free Carbonate-Promoted Furoate Carboxylation.
The journal of physical chemistry letters, 2020, 7544-7551
8000450 CIFC94 H82 N4 O2 S4P -115.7472; 16.9033; 18.0345
64.976; 73.853; 84.654
4176.6Zhou, Jiadong; Wen, Xinbo; Tang, Ningning; Zhou, Xuehong; Wang, Cong; Zheng, Nan; Liu, Linlin; Xie, Zengqi
Ultrafast and Long-Range Exciton Migration through Anisotropic Coulombic Coupling in the Textured Films of Fused-Ring Electron Acceptors.
The journal of physical chemistry letters, 2020, 11, 7908-7913
8000451 CIFC72 H64 Mn4 N40 O12P -4 21 c16.1196; 16.1196; 17.5219
90; 90; 90
4552.9Liu, Zhi-Bo; He, Lei; Shi, Ping-Ping; Ye, Qiong; Fu, Da-Wei
A Three-Dimensional Molecular Perovskite Ferroelastic with Two-Step Switching of Quadratic Nonlinear Optical Properties Tuned by Molecular Chiral Design.
The journal of physical chemistry letters, 2020, 11, 7960-7965
8000452 CIFC44 H0 Mn2 N22 O8I 4/m c m11.5389; 11.5389; 17.7377
90; 90; 90
2361.7Liu, Zhi-Bo; He, Lei; Shi, Ping-Ping; Ye, Qiong; Fu, Da-Wei
A Three-Dimensional Molecular Perovskite Ferroelastic with Two-Step Switching of Quadratic Nonlinear Optical Properties Tuned by Molecular Chiral Design.
The journal of physical chemistry letters, 2020, 11, 7960-7965
8000453 CIFC18 H Mn N10 OP 21 21 2111.6357; 12.2736; 16.6608
90; 90; 90
2379.4Liu, Zhi-Bo; He, Lei; Shi, Ping-Ping; Ye, Qiong; Fu, Da-Wei
A Three-Dimensional Molecular Perovskite Ferroelastic with Two-Step Switching of Quadratic Nonlinear Optical Properties Tuned by Molecular Chiral Design.
The journal of physical chemistry letters, 2020, 11, 7960-7965
8000454 CIFC36 H0 Mn2 N20 O2P n a 2111.1875; 12.4566; 16.4477
90; 90; 90
2292.1Liu, Zhi-Bo; He, Lei; Shi, Ping-Ping; Ye, Qiong; Fu, Da-Wei
A Three-Dimensional Molecular Perovskite Ferroelastic with Two-Step Switching of Quadratic Nonlinear Optical Properties Tuned by Molecular Chiral Design.
The journal of physical chemistry letters, 2020, 11, 7960-7965
8000455 CIFC18 H8 Mn N10 OP n a m11.6485; 12.2688; 16.6697
90; 90; 90
2382.32Liu, Zhi-Bo; He, Lei; Shi, Ping-Ping; Ye, Qiong; Fu, Da-Wei
A Three-Dimensional Molecular Perovskite Ferroelastic with Two-Step Switching of Quadratic Nonlinear Optical Properties Tuned by Molecular Chiral Design.
The journal of physical chemistry letters, 2020, 11, 7960-7965
8000456 CIFC26 H26 N2 O7 Zn2P 1 21/n 111.7122; 13.4138; 16.8162
90; 103.261; 90
2571.46Takimoto, Kazuyoshi; Ishihara, Shinsuke; Labuta, Jan; Březina, Václav; Payne, Daniel T.; Hill, Jonathan P.; Ariga, Katsuhiko; Sumita, Masato; Mori, Shigeki; Sato, Hisako
Enantiomeric Excess Dependent Splitting of NMR Signal through Dynamic Chiral Inversion and Coligand Exchange in a Coordination Complex.
The journal of physical chemistry letters, 2020, 11, 8164-8169
8000457 CIFC16 H16 Cl N3 OP 1 21/c 115.198; 13.1294; 7.7881
90; 98.169; 90
1538.27Liu, Bin; Liu, Hao; Zhang, Houyu; Di, Qi; Zhang, Hongyu
Crystal Engineering of a Hydrazone Molecule toward High Elasticity and Bright Luminescence
The Journal of Physical Chemistry Letters, 2020, 9178-9183
8000458 CIFC32 H32 Cl2 N6 O2P b c a11.3576; 8.0121; 67.179
90; 90; 90
6113.2Liu, Bin; Liu, Hao; Zhang, Houyu; Di, Qi; Zhang, Hongyu
Crystal Engineering of a Hydrazone Molecule toward High Elasticity and Bright Luminescence
The Journal of Physical Chemistry Letters, 2020, 9178-9183
8000459 CIFC17 H20 Cl N3 O2P 1 21/c 115.5657; 6.4012; 17.6685
90; 102.526; 90
1718.57Liu, Bin; Liu, Hao; Zhang, Houyu; Di, Qi; Zhang, Hongyu
Crystal Engineering of a Hydrazone Molecule toward High Elasticity and Bright Luminescence
The Journal of Physical Chemistry Letters, 2020, 9178-9183
8000460 CIFC18 H22 Cl N3 O2P 1 21/c 115.7804; 6.3813; 18.8376
90; 107.348; 90
1810.65Liu, Bin; Liu, Hao; Zhang, Houyu; Di, Qi; Zhang, Hongyu
Crystal Engineering of a Hydrazone Molecule toward High Elasticity and Bright Luminescence
The Journal of Physical Chemistry Letters, 2020, 9178-9183
8000461 CIFC19 H24 Cl N3 O2P 1 21/c 114.9915; 6.3912; 20.0914
90; 105.829; 90
1852Liu, Bin; Liu, Hao; Zhang, Houyu; Di, Qi; Zhang, Hongyu
Crystal Engineering of a Hydrazone Molecule toward High Elasticity and Bright Luminescence
The Journal of Physical Chemistry Letters, 2020, 9178-9183
8000462 CIFC72 H68 F24 N6 O20 P4P n n n :26.6837; 21.6852; 27.8092
90; 90; 90
4030.6Sui, Qi; Li, Peng; Sun, Rong; Fang, Yu-Hui; Wang, Lin; Wang, Bing-Wu; Gao, En-Qing; Gao, Song
Effects of Different Counter Anions on Solid-State Electron Transfer in Viologen Compounds: Modulation of Color and Piezo- and Photochromic Properties.
The journal of physical chemistry letters, 2020, 9282-9288
8000463 CIFC24 H18 B2 F8 N2 O4C 1 2/c 128.005; 6.9983; 14.0177
90; 119.983; 90
2379.6Sui, Qi; Li, Peng; Sun, Rong; Fang, Yu-Hui; Wang, Lin; Wang, Bing-Wu; Gao, En-Qing; Gao, Song
Effects of Different Counter Anions on Solid-State Electron Transfer in Viologen Compounds: Modulation of Color and Piezo- and Photochromic Properties.
The journal of physical chemistry letters, 2020, 9282-9288
8000464 CIFC25 H22 Br2 N2 O5P -16.8623; 12.6219; 15.1424
74.772; 82.398; 76.727
1228.08Sui, Qi; Li, Peng; Sun, Rong; Fang, Yu-Hui; Wang, Lin; Wang, Bing-Wu; Gao, En-Qing; Gao, Song
Effects of Different Counter Anions on Solid-State Electron Transfer in Viologen Compounds: Modulation of Color and Piezo- and Photochromic Properties.
The journal of physical chemistry letters, 2020, 9282-9288
8000465 CIFC72 H68 Cl4 N6 O36P n n n :26.6806; 20.8364; 27.965
90; 90; 90
3892.7Sui, Qi; Li, Peng; Sun, Rong; Fang, Yu-Hui; Wang, Lin; Wang, Bing-Wu; Gao, En-Qing; Gao, Song
Effects of Different Counter Anions on Solid-State Electron Transfer in Viologen Compounds: Modulation of Color and Piezo- and Photochromic Properties.
The journal of physical chemistry letters, 2020, 9282-9288
8000466 CIFC48 H74 Br9 In N6 OP 1 21 110.2996; 26.3489; 22.2194
90; 92.337; 90
6024.96Li, Zhongyuan; Song, Gaomin; Li, Ye; Wang, Le; Zhou, Tianliang; Lin, Zheshuai; Xie, Rong-Jun
Realizing Tunable White Light Emission in Lead-Free Indium(III) Bromine Hybrid Single Crystals through Antimony(III) Cation Doping.
The journal of physical chemistry letters, 2020, 11, 10164-10172
8000467 CIFC16 H18 F6 I4 N2 PbP 1 21/c 118.1441; 8.418; 8.6907
90; 98.909; 90
1311.38Wang, Pei-Xi; Najarian, Amin Morteza; Hao, Zhaomin; Johnston, Andrew; Voznyy, Oleksandr; Hoogland, Sjoerd; Sargent, Edward H.
Structural Distortion and Bandgap Increase of Two-Dimensional Perovskites Induced by Trifluoromethyl Substitution on Spacer Cations.
The journal of physical chemistry letters, 2020, 11, 10144-10149
8000468 CIFC18 H9 I S2P 1 c 15.9937; 31.533; 7.4479
90; 91.034; 90
1407.4Matsunaga, Amane; Ogawa, Yuta; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Control of Molecular Orientation in Organic Semiconductors Using Weak Iodine‒Iodine Interactions
The Journal of Physical Chemistry Letters, 2020, 111-116
8000469 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Wieduwilt, Erna K.; Macetti, Giovanni; Genoni, Alessandro
Climbing Jacob’s Ladder of Structural Refinement: Introduction of a Localized Molecular Orbital-Based Embedding for Accurate X-ray Determinations of Hydrogen Atom Positions
The Journal of Physical Chemistry Letters, 2020, 463-471
8000470 CIFC180 H270 Ag26 Au S19P 1 2/c 130.891; 17.628; 39.727
90; 99.02; 90
21366Lin, Xinzhang; Ma, Weiguang; Sun, Keju; Sun, Bo; Fu, Xuemei; Ren, Xiuqing; Liu, Chao; Huang, Jiahui
[AuAg26(SR)18S]− Nanocluster: Open Shell Structure and High Faradaic Efficiency in Electrochemical Reduction of CO2 to CO
The Journal of Physical Chemistry Letters, 2020, 552-557
8000471 CIFC42 H28 F4P -111.952; 12.348; 13.306
63.93; 85.6; 73.85
1692Ma, Suqian; Liu, Yingjie; Zhang, Jibo; Xu, Bin; Tian, Wenjing
Polymorphism-Dependent Enhanced Emission in Molecular Aggregates: J-Aggregate versus X-Aggregate.
The journal of physical chemistry letters, 2020, 11, 10504-10510
8000472 CIFC42 H26 F4P 1 21/c 115.036; 11.848; 8.5039
90; 95.07; 90
1509Ma, Suqian; Liu, Yingjie; Zhang, Jibo; Xu, Bin; Tian, Wenjing
Polymorphism-Dependent Enhanced Emission in Molecular Aggregates: J-Aggregate versus X-Aggregate.
The journal of physical chemistry letters, 2020, 11, 10504-10510
8105075 CIFC32 H28 Cu F2 N4 O4P 1 21/n 110.5489; 6.2601; 21.3299
90; 99.401; 90
1389.65Zhao, Ji-Xing; Wu, Qin
Synthesis and crystal structure of bis{5-fluorine-2-(((4-(1-(methoxy-imino)ethyl)phenyl) imino)methyl)phenolato-κ2 N,O}copper(II), C32H28CuF2N4O4
Zeitschrift für Kristallographie - New Crystal Structures, 2020, 235, 257-258
8105076 CIFC16 H17 F N2 O4P 1 21/c 19.2328; 12.933; 12.3477
90; 97.383; 90
1462.19Lo, Kong Mun; Lee, See Mun; Tiekink, Edward R.T.
Redetermination of the crystal structure of N′-(3-ethoxy-2-hydroxybenzylidene)-4-fluorobenzohydrazide monohydrate, C16H17FN2O4
Zeitschrift für Kristallographie - New Crystal Structures, 2020, 235, 259-261

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