Crystallography Open Database

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7130653 CIFC22 H28 N O4 VC 1 2 120.07; 8.2; 15.4395
90; 123.721; 90
2113.4Debnath, Snehasish; Chatterjee, Pabitra B.
Enantiopure chiroptical probes for circular dichroism and absorbance based detection of nerve gas simulants.
Chemical communications (Cambridge, England), 2022, 58, 9006-9009
7130654 CIFC56 H70 N4 O7P 1 21 112.4889; 7.0833; 28.1105
90; 93.256; 90
2482.7Debnath, Snehasish; Chatterjee, Pabitra B.
Enantiopure chiroptical probes for circular dichroism and absorbance based detection of nerve gas simulants.
Chemical communications (Cambridge, England), 2022, 58, 9006-9009
7130655 CIFC21 H26 N O4 VP 21 21 218.3617; 9.8925; 25.026
90; 90; 90
2070.1Debnath, Snehasish; Chatterjee, Pabitra B.
Enantiopure chiroptical probes for circular dichroism and absorbance based detection of nerve gas simulants.
Chemical communications (Cambridge, England), 2022, 58, 9006-9009
7130656 CIFC63 H89 N3 O10P 1 21 110.9618; 21.0542; 14.0676
90; 111.39; 90
3023.1Debnath, Snehasish; Chatterjee, Pabitra B.
Enantiopure chiroptical probes for circular dichroism and absorbance based detection of nerve gas simulants.
Chemical communications (Cambridge, England), 2022, 58, 9006-9009
7130657 CIFC23 H29 N2 O4 VP 21 21 218.4626; 11.4719; 22.4492
90; 90; 90
2179.4Debnath, Snehasish; Chatterjee, Pabitra B.
Enantiopure chiroptical probes for circular dichroism and absorbance based detection of nerve gas simulants.
Chemical communications (Cambridge, England), 2022, 58, 9006-9009
7130658 CIFC52 H148 As4 Cl4 N16 Na5.34 O192 Rh5.66 S2 W40C 1 2/c 141.05; 19.763; 29.763
90; 110.885; 90
22559Chen, Wenjing; Li, Huafeng; Jin, Yuzhen; Wu, Che; Yuan, Zelong; Ma, Pengtao; Wang, Jingping; Niu, Jingyang
An intriguing tetranuclear Rh-based polyoxometalate for the reduction of nitroarene and oxidation of aniline.
Chemical communications (Cambridge, England), 2022, 58, 9902-9905
7130659 CIFC51 H43 Cl4 N3 Ni SP -111.8089; 12.2573; 17.3475
80.827; 78.14; 66.538
2245.8Fujita, Masaki; Haketa, Yohei; Tanaka, Hiroki; Yasuda, Nobuhiro; Maeda, Hiromitsu
Ion-pairing assemblies of heteroporphyrin-based π-electronic cation with various counteranions.
Chemical communications (Cambridge, England), 2022, 58, 9870-9873
7130660 CIFC48 H36 Cl N3 Ni O SP b c a14.864; 23.185; 21.949
90; 90; 90
7564Fujita, Masaki; Haketa, Yohei; Tanaka, Hiroki; Yasuda, Nobuhiro; Maeda, Hiromitsu
Ion-pairing assemblies of heteroporphyrin-based π-electronic cation with various counteranions.
Chemical communications (Cambridge, England), 2022, 58, 9870-9873
7130661 CIFC55 H35 B Cl F6 N5 Ni O3 SP -112.3536; 13.2407; 14.7731
83.126; 84.024; 81.561
2363.86Fujita, Masaki; Haketa, Yohei; Tanaka, Hiroki; Yasuda, Nobuhiro; Maeda, Hiromitsu
Ion-pairing assemblies of heteroporphyrin-based π-electronic cation with various counteranions.
Chemical communications (Cambridge, England), 2022, 58, 9870-9873
7130662 CIFC74 H33 B Cl F20 N3 Ni SP -113.2112; 15.9096; 16.7024
62.936; 87.227; 74.503
3001.55Fujita, Masaki; Haketa, Yohei; Tanaka, Hiroki; Yasuda, Nobuhiro; Maeda, Hiromitsu
Ion-pairing assemblies of heteroporphyrin-based π-electronic cation with various counteranions.
Chemical communications (Cambridge, England), 2022, 58, 9870-9873
7130663 CIFC56.28 H39.56 B Cl3.56 F2 N5 Ni O2 SP -113.066; 13.295; 15.987
113.935; 91.484; 92.34
2533.5Fujita, Masaki; Haketa, Yohei; Tanaka, Hiroki; Yasuda, Nobuhiro; Maeda, Hiromitsu
Ion-pairing assemblies of heteroporphyrin-based π-electronic cation with various counteranions.
Chemical communications (Cambridge, England), 2022, 58, 9870-9873
7130664 CIFC46 H32 Cl4 F6 N3 Ni P SP 1 21/c 113.771; 16.0517; 19.023
90; 90.485; 90
4204.8Fujita, Masaki; Haketa, Yohei; Tanaka, Hiroki; Yasuda, Nobuhiro; Maeda, Hiromitsu
Ion-pairing assemblies of heteroporphyrin-based π-electronic cation with various counteranions.
Chemical communications (Cambridge, England), 2022, 58, 9870-9873
7130665 CIFC56 H32 Cl4 N8 Ni SP -113.9345; 15.3744; 24.075
79.22; 89.861; 69.239
4726.2Fujita, Masaki; Haketa, Yohei; Tanaka, Hiroki; Yasuda, Nobuhiro; Maeda, Hiromitsu
Ion-pairing assemblies of heteroporphyrin-based π-electronic cation with various counteranions.
Chemical communications (Cambridge, England), 2022, 58, 9870-9873
7130666 CIFC65 H53 B Cl9 F2 N5 Ni O2 SP 1 21/c 112.962; 17.107; 27.519
90; 102.088; 90
5967Fujita, Masaki; Haketa, Yohei; Tanaka, Hiroki; Yasuda, Nobuhiro; Maeda, Hiromitsu
Ion-pairing assemblies of heteroporphyrin-based π-electronic cation with various counteranions.
Chemical communications (Cambridge, England), 2022, 58, 9870-9873
7130667 CIFC17 H25 Br O SiP -17.7171; 8.91; 12.9401
82.729; 84.143; 80.754
868.09Fernández-Canelas, Paula; Miguélez, Rubén; Rubio, Eduardo; González, José Manuel; Barrio, Pablo
Intramolecular activation of strong Si-O bonds by gold(I): regioselective synthesis of 3-bromo-2-silylbenzofurans.
Chemical communications (Cambridge, England), 2022, 58, 9250-9253
7130668 CIFC46 H81 O3 Y3P 1 21/n 112.526; 19.107; 18.9963
90; 92.192; 90
4543.1Buschmann, Dennis A.; Schumacher, Lion; Anwander, Reiner
Rare-earth-metal half-sandwich complexes incorporating methyl, methylidene, and hydrido ligands.
Chemical communications (Cambridge, England), 2022, 58, 9132-9135
7130669 CIFC46 H81 Dy3 O3P -111.3103; 11.9001; 21.1333
97.942; 91.931; 114.983
2540.1Buschmann, Dennis A.; Schumacher, Lion; Anwander, Reiner
Rare-earth-metal half-sandwich complexes incorporating methyl, methylidene, and hydrido ligands.
Chemical communications (Cambridge, England), 2022, 58, 9132-9135
7130670 CIFC16 H14 N2 O2F d d 243.7224; 14.194; 8.7864
90; 90; 90
5452.8Yuan, Sitian; Liu, Yi; Ni, Mengjia; Hao, Tianxin; Peng, Yiyuan; Ding, Qiuping
Fe(acac)<sub>2</sub>/TBHP-promoted synthesis of 11-functionalized dibenzodiazepines <i>via</i> alkoxycarbonylation and carboxamidation of <i>o</i>-isocyanodiaryl amines.
Chemical communications (Cambridge, England), 2022, 58, 10985-10988
7130671 CIFC17 H17 N3 OP 1 21/n 18.4266; 13.3424; 13.1891
90; 95.252; 90
1476.6Yuan, Sitian; Liu, Yi; Ni, Mengjia; Hao, Tianxin; Peng, Yiyuan; Ding, Qiuping
Fe(acac)<sub>2</sub>/TBHP-promoted synthesis of 11-functionalized dibenzodiazepines <i>via</i> alkoxycarbonylation and carboxamidation of <i>o</i>-isocyanodiaryl amines.
Chemical communications (Cambridge, England), 2022, 58, 10985-10988
7130672 CIFC19 H23 F3 N O3 S SbP 1 21/n 114.0671; 9.5855; 17.307
90; 110.01; 90
2192.8Sharma, Deepti; Benny, Annabel; Gupta, Radhika; Jemmis, Eluvathingal D.; Venugopal, Ajay
Crystallographic evidence for a continuum and reversal of roles in primary-secondary interactions in antimony Lewis acids: applications in carbonyl activation.
Chemical communications (Cambridge, England), 2022, 58, 11009-11012
7130673 CIFC17 H21 Cl N SbP 1 21/c 18.6015; 12.9734; 15.5648
90; 103.132; 90
1691.5Sharma, Deepti; Benny, Annabel; Gupta, Radhika; Jemmis, Eluvathingal D.; Venugopal, Ajay
Crystallographic evidence for a continuum and reversal of roles in primary-secondary interactions in antimony Lewis acids: applications in carbonyl activation.
Chemical communications (Cambridge, England), 2022, 58, 11009-11012
7130674 CIFC47 H33 Al Cl2 F36 N O5 SbP -112.3903; 15.266; 17.646
99.484; 109.81; 106.208
2888.5Sharma, Deepti; Benny, Annabel; Gupta, Radhika; Jemmis, Eluvathingal D.; Venugopal, Ajay
Crystallographic evidence for a continuum and reversal of roles in primary-secondary interactions in antimony Lewis acids: applications in carbonyl activation.
Chemical communications (Cambridge, England), 2022, 58, 11009-11012
7130675 CIFC18 H23 Cl N SbP 1 21/n 18.7795; 9.5084; 20.932
90; 99.156; 90
1725.1Sharma, Deepti; Benny, Annabel; Gupta, Radhika; Jemmis, Eluvathingal D.; Venugopal, Ajay
Crystallographic evidence for a continuum and reversal of roles in primary-secondary interactions in antimony Lewis acids: applications in carbonyl activation.
Chemical communications (Cambridge, England), 2022, 58, 11009-11012
7130676 CIFC47 H33 Al F36 N O5 SbP -113.7542; 14.4647; 15.6531
97.575; 112.199; 98.467
2791.5Sharma, Deepti; Benny, Annabel; Gupta, Radhika; Jemmis, Eluvathingal D.; Venugopal, Ajay
Crystallographic evidence for a continuum and reversal of roles in primary-secondary interactions in antimony Lewis acids: applications in carbonyl activation.
Chemical communications (Cambridge, England), 2022, 58, 11009-11012
7130677 CIFC47 H48 B Cl8 N O P SbP 1 21/n 112.346; 22.8428; 17.8648
90; 103.197; 90
4905.1Sharma, Deepti; Benny, Annabel; Gupta, Radhika; Jemmis, Eluvathingal D.; Venugopal, Ajay
Crystallographic evidence for a continuum and reversal of roles in primary-secondary interactions in antimony Lewis acids: applications in carbonyl activation.
Chemical communications (Cambridge, England), 2022, 58, 11009-11012
7130678 CIFC18 H21 F3 N O3 S SbP 1 21/n 18.401; 9.453; 25.467
90; 96.737; 90
2008Sharma, Deepti; Benny, Annabel; Gupta, Radhika; Jemmis, Eluvathingal D.; Venugopal, Ajay
Crystallographic evidence for a continuum and reversal of roles in primary-secondary interactions in antimony Lewis acids: applications in carbonyl activation.
Chemical communications (Cambridge, England), 2022, 58, 11009-11012
7130679 CIFC49 H52 B Cl10 N O P SbP 1 21 120.494; 12.5955; 20.8355
90; 100.742; 90
5284.1Sharma, Deepti; Benny, Annabel; Gupta, Radhika; Jemmis, Eluvathingal D.; Venugopal, Ajay
Crystallographic evidence for a continuum and reversal of roles in primary-secondary interactions in antimony Lewis acids: applications in carbonyl activation.
Chemical communications (Cambridge, England), 2022, 58, 11009-11012
7130690 CIFC43 H45 B F6 N6 O2 P2 S WI 1 2/a 125.2847; 13.3933; 28.4487
90; 92.09; 90
9627.6Burt, Liam K.; Hill, Anthony F.; Jones, Stephanie L.
Thiocarbonylphosphorane and arsorane ligands.
Chemical communications (Cambridge, England), 2022, 58, 11091-11094
7130691 CIFC40 H45 B F6 Mo N6 O3 P2P 1 21/n 19.2673; 18.2717; 25.4905
90; 91.331; 90
4315.12Burt, Liam K.; Hill, Anthony F.; Jones, Stephanie L.
Thiocarbonylphosphorane and arsorane ligands.
Chemical communications (Cambridge, England), 2022, 58, 11091-11094
7130692 CIFC35 H41 B F6 N8 O2 P2 S WP 1 21/c 114.171; 13.2958; 22.833
90; 103.452; 90
4184.05Burt, Liam K.; Hill, Anthony F.; Jones, Stephanie L.
Thiocarbonylphosphorane and arsorane ligands.
Chemical communications (Cambridge, England), 2022, 58, 11091-11094
7130695 CIFGe2 O4 Sr3 Te3R 3 m :H10.5223; 10.5223; 8.68
90; 90; 120
832.3Sun, Mengran; Xing, Wenhao; Lee, Ming-Hsien; Yao, Jiyong
Bridging oxygen atoms in trigonal prism units driven strong second-harmonic-generation efficiency in Sr<sub>3</sub>Ge<sub>2</sub>O<sub>4</sub>Te<sub>3</sub>.
Chemical communications (Cambridge, England), 2022, 58, 11167-11170
7130696 CIFC83 H70 F18 Fe2 N18 O2 P2 SiP 1 21/c 117.2482; 26.1224; 18.8989
90; 105.11; 90
8220.8Capó, Nuria; Barrios, Leoní A; Cardona, Joan; Ribas-Ariño, Jordi; Teat, Simon J.; Roubeau, Olivier; Aromí, Guillem
The template effect of a SiF<sub>6</sub><sup>2-</sup> guest drives the formation of a heteroleptic Fe(II) coordination helicate.
Chemical communications (Cambridge, England), 2022, 58, 10969-10972
7130697 CIFC124 H120 Cl4 Fe2 N38 O16P -118.685; 19.364; 19.401
68.021; 88.515; 67.719
5968.1Capó, Nuria; Barrios, Leoní A; Cardona, Joan; Ribas-Ariño, Jordi; Teat, Simon J.; Roubeau, Olivier; Aromí, Guillem
The template effect of a SiF<sub>6</sub><sup>2-</sup> guest drives the formation of a heteroleptic Fe(II) coordination helicate.
Chemical communications (Cambridge, England), 2022, 58, 10969-10972
7130698 CIFC91 H80 F18 Fe2 N18 O2 P2 SiC 1 c 122.696; 27.095; 17.87
90; 125.911; 90
8900Capó, Nuria; Barrios, Leoní A; Cardona, Joan; Ribas-Ariño, Jordi; Teat, Simon J.; Roubeau, Olivier; Aromí, Guillem
The template effect of a SiF<sub>6</sub><sup>2-</sup> guest drives the formation of a heteroleptic Fe(II) coordination helicate.
Chemical communications (Cambridge, England), 2022, 58, 10969-10972
7130699 CIFC99.67 H114.67 Cl4 Fe2 N18 O27.67P 1 21/n 123.217; 17.634; 27.292
90; 95.498; 90
11122Capó, Nuria; Barrios, Leoní A; Cardona, Joan; Ribas-Ariño, Jordi; Teat, Simon J.; Roubeau, Olivier; Aromí, Guillem
The template effect of a SiF<sub>6</sub><sup>2-</sup> guest drives the formation of a heteroleptic Fe(II) coordination helicate.
Chemical communications (Cambridge, England), 2022, 58, 10969-10972
7130700 CIFC79 H60 B2 F14 Fe2 N18 O SiP 1 21/c 117.31; 25.07; 18.781
90; 105.202; 90
7865Capó, Nuria; Barrios, Leoní A; Cardona, Joan; Ribas-Ariño, Jordi; Teat, Simon J.; Roubeau, Olivier; Aromí, Guillem
The template effect of a SiF<sub>6</sub><sup>2-</sup> guest drives the formation of a heteroleptic Fe(II) coordination helicate.
Chemical communications (Cambridge, England), 2022, 58, 10969-10972
7130701 CIFC95 H96 B2 F14 Fe2 N22 O5 SiP 41 21 230.215; 30.215; 21.126
90; 90; 90
19287Capó, Nuria; Barrios, Leoní A; Cardona, Joan; Ribas-Ariño, Jordi; Teat, Simon J.; Roubeau, Olivier; Aromí, Guillem
The template effect of a SiF<sub>6</sub><sup>2-</sup> guest drives the formation of a heteroleptic Fe(II) coordination helicate.
Chemical communications (Cambridge, England), 2022, 58, 10969-10972
7130707 CIFC13 H16 F N O3 SP 1 21/c 110.7846; 16.668; 16.942
90; 98.592; 90
3011.3Wang, Tong-Tong; Zhao, Li-Ming
Synthesis of 2-arylethenesulfonyl fluorides and isoindolinones: Ru-catalyzed C-H activation of nitrones with ethenesulfonyl fluoride.
Chemical communications (Cambridge, England), 2022, 58, 11099-11102
7130756 CIFC46 H54 B Co F3 Fe N14 O4.5 SP -113.5817; 14.0463; 14.9259
69.516; 89.648; 73.04
2536.7Mathonière, Corine; Mitcov, Dmitri; Koumousi, Evangelia; Amorin-Rosario, Daniel; Dechambenoit, Pierre; Fatima Jafri, Sadaf; Sainctavit, Philippe; Cartier Dit Moulin, Christophe; Toupet, Loic; Trzop, Elzbieta; Collet, Eric; Arrio, Marie-Anne; Rogalev, Andrei; Wilhelm, Fabrice; Clérac, Rodolphe
Metal-to-metal electron transfer in a cyanido-bridged {Fe<sub>2</sub>Co<sub>2</sub>} square complex followed by X-ray diffraction and absorption techniques.
Chemical communications (Cambridge, England), 2022, 58, 12098-12101
7130757 CIFC46 H54 B Co F3 Fe N14 O4.5 SP -113.3992; 13.916; 14.8696
69.246; 89.144; 72.923
2466.1Mathonière, Corine; Mitcov, Dmitri; Koumousi, Evangelia; Amorin-Rosario, Daniel; Dechambenoit, Pierre; Fatima Jafri, Sadaf; Sainctavit, Philippe; Cartier Dit Moulin, Christophe; Toupet, Loic; Trzop, Elzbieta; Collet, Eric; Arrio, Marie-Anne; Rogalev, Andrei; Wilhelm, Fabrice; Clérac, Rodolphe
Metal-to-metal electron transfer in a cyanido-bridged {Fe<sub>2</sub>Co<sub>2</sub>} square complex followed by X-ray diffraction and absorption techniques.
Chemical communications (Cambridge, England), 2022, 58, 12098-12101
7130758 CIFC46 H54 B Co F3 Fe N14 O4.5 SP -113.2457; 13.8227; 14.769
69.953; 87.972; 71.58
2402Mathonière, Corine; Mitcov, Dmitri; Koumousi, Evangelia; Amorin-Rosario, Daniel; Dechambenoit, Pierre; Fatima Jafri, Sadaf; Sainctavit, Philippe; Cartier Dit Moulin, Christophe; Toupet, Loic; Trzop, Elzbieta; Collet, Eric; Arrio, Marie-Anne; Rogalev, Andrei; Wilhelm, Fabrice; Clérac, Rodolphe
Metal-to-metal electron transfer in a cyanido-bridged {Fe<sub>2</sub>Co<sub>2</sub>} square complex followed by X-ray diffraction and absorption techniques.
Chemical communications (Cambridge, England), 2022, 58, 12098-12101
7130810 CIFC27 H35 Cl N2 O2 RuP 21 21 218.9971; 12.0737; 26.66
90; 90; 90
2896Thongpaen, Jompol; Manguin, Romane; Kittikool, Tanakorn; Camy, Aurèle; Roisnel, Thierry; Dorcet, Vincent; Yotphan, Sirilata; Canac, Yves; Mauduit, Marc; Baslé, Olivier
Ruthenium-NHC complex-catalyzed P(III)-directed C-H borylation of arylphosphines.
Chemical communications (Cambridge, England), 2022, 58, 12082-12085
7130811 CIFC24 H29 Cl N2 O2 RuP 1 21 110.1024; 21.259; 10.8649
90; 102.016; 90
2282.3Thongpaen, Jompol; Manguin, Romane; Kittikool, Tanakorn; Camy, Aurèle; Roisnel, Thierry; Dorcet, Vincent; Yotphan, Sirilata; Canac, Yves; Mauduit, Marc; Baslé, Olivier
Ruthenium-NHC complex-catalyzed P(III)-directed C-H borylation of arylphosphines.
Chemical communications (Cambridge, England), 2022, 58, 12082-12085
7130812 CIFC24 H20 O2 SP 1 21/n 15.8791; 14.5329; 22.0105
90; 96.175; 90
1869.67More, Sayaji Arjun; Sadaphal, Vikas Ashokrao; Kuo, Tung-Chun; Cheng, Mu-Jeng; Liu, Rai-Shung
Reactions of thioalkynes with diarylketenes <i>via</i> [3+2]-annulation <i>versus</i> benzannulation using Au and P(C<sub>6</sub>F<sub>5</sub>)<sub>3</sub> catalysts.
Chemical communications (Cambridge, England), 2022, 58, 10064-10067
7130813 CIFC18 H16 O3P -18.5967; 8.8188; 11.0107
82.083; 74.736; 63.889
722.88More, Sayaji Arjun; Sadaphal, Vikas Ashokrao; Kuo, Tung-Chun; Cheng, Mu-Jeng; Liu, Rai-Shung
Reactions of thioalkynes with diarylketenes <i>via</i> [3+2]-annulation <i>versus</i> benzannulation using Au and P(C<sub>6</sub>F<sub>5</sub>)<sub>3</sub> catalysts.
Chemical communications (Cambridge, England), 2022, 58, 10064-10067
7130814 CIFC24 H20 O2 SP 1 21/c 113.9643; 10.0272; 13.369
90; 96.154; 90
1861.18More, Sayaji Arjun; Sadaphal, Vikas Ashokrao; Kuo, Tung-Chun; Cheng, Mu-Jeng; Liu, Rai-Shung
Reactions of thioalkynes with diarylketenes <i>via</i> [3+2]-annulation <i>versus</i> benzannulation using Au and P(C<sub>6</sub>F<sub>5</sub>)<sub>3</sub> catalysts.
Chemical communications (Cambridge, England), 2022, 58, 10064-10067
7130815 CIFC25 H22 O3 SP 1 21/c 118.1663; 15.0546; 22.1448
90; 98.161; 90
5995More, Sayaji Arjun; Sadaphal, Vikas Ashokrao; Kuo, Tung-Chun; Cheng, Mu-Jeng; Liu, Rai-Shung
Reactions of thioalkynes with diarylketenes <i>via</i> [3+2]-annulation <i>versus</i> benzannulation using Au and P(C<sub>6</sub>F<sub>5</sub>)<sub>3</sub> catalysts.
Chemical communications (Cambridge, England), 2022, 58, 10064-10067
7130816 CIFC16 H22 F3 N O8 SP 1 21/c 18.9554; 21.609; 10.7441
90; 101.285; 90
2039Fiorentino, Antonio; Sachini, Brian; Corra, Stefano; Credi, Alberto; Femoni, Cristina; Fraix, Aurore; Silvi, Serena
Acidochromism of donor-acceptor Stenhouse adducts in organic solvent.
Chemical communications (Cambridge, England), 2022, 58, 11236-11239
7130817 CIFC16 H22 F3 N3 O7 SP 21 21 2110.2011; 12.202; 16.775
90; 90; 90
2088Fiorentino, Antonio; Sachini, Brian; Corra, Stefano; Credi, Alberto; Femoni, Cristina; Fraix, Aurore; Silvi, Serena
Acidochromism of donor-acceptor Stenhouse adducts in organic solvent.
Chemical communications (Cambridge, England), 2022, 58, 11236-11239
7130833 CIFC31 H32 N O3 PP 21 21 2110.45953; 13.5092; 19.3396
90; 90; 90
2732.68Jia, Yun-Qing; Zhao, Jian-Qiang; Wang, Zhen-Hua; You, Yong; Zhang, Yan-Ping; Jin, Xin; Zhou, Ming-Qiang; Ge, Zhen-Zhen; Yuan, Wei-Cheng
Catalytic enantioselective hydrophosphinylation of <i>in situ</i>-generated indole-derived vinylogous imines to access 3-(1-diphenylphosphoryl-arylmethyl)indoles.
Chemical communications (Cambridge, England), 2022, 58, 12062-12065
7130848 CIFC25 H23 N O4 ZnP -18.6664; 9.5962; 12.8603
79.05; 88.97; 84.185
1044.64Khan, Samim; Naaz, Sanobar; Ekka, Akansha; Dutta, Basudeb; Roy, Sourav; Medishetty, Raghavender; Mir, Mohammad Hedayetullah
Photomechanical effect in Zn(II) and Cd(II) 1D coordination polymers: photosalient to non-salient behaviour.
Chemical communications (Cambridge, England), 2022, 58, 12102-12105
7130849 CIFC25 H23 Cd N O4P -19.4781; 9.8709; 12.141
97.577; 102.802; 102.063
1064.1Khan, Samim; Naaz, Sanobar; Ekka, Akansha; Dutta, Basudeb; Roy, Sourav; Medishetty, Raghavender; Mir, Mohammad Hedayetullah
Photomechanical effect in Zn(II) and Cd(II) 1D coordination polymers: photosalient to non-salient behaviour.
Chemical communications (Cambridge, England), 2022, 58, 12102-12105
7130861 CIFC32 H40 B2 O4 SiC 1 c 110.11404; 16.90606; 18.29331
90; 102.387; 90
3055.13Stefanowska, Kinga; Sokolnicki, Tomasz; Walkowiak, Jędrzej; Czapik, Agnieszka; Franczyk, Adrian
Directed <i>cis</i>-hydrosilylation of borylalkynes to borylsilylalkenes.
Chemical communications (Cambridge, England), 2022, 58, 12046-12049
7130862 CIFC32 H68 B2 O5 Si4I 1 2/a 115.82548; 11.13928; 24.2701
90; 102.231; 90
4181.33Stefanowska, Kinga; Sokolnicki, Tomasz; Walkowiak, Jędrzej; Czapik, Agnieszka; Franczyk, Adrian
Directed <i>cis</i>-hydrosilylation of borylalkynes to borylsilylalkenes.
Chemical communications (Cambridge, England), 2022, 58, 12046-12049
7130863 CIFC26 H29 B O2 SiP -19.0492; 10.2286; 13.285
71.204; 84.767; 87.048
1158.92Stefanowska, Kinga; Sokolnicki, Tomasz; Walkowiak, Jędrzej; Czapik, Agnieszka; Franczyk, Adrian
Directed <i>cis</i>-hydrosilylation of borylalkynes to borylsilylalkenes.
Chemical communications (Cambridge, England), 2022, 58, 12046-12049
7130864 CIFC26 H29 B O2 SiP -119.7542; 20.3725; 21.9182
96.7187; 112.361; 114.97
6977.9Stefanowska, Kinga; Sokolnicki, Tomasz; Walkowiak, Jędrzej; Czapik, Agnieszka; Franczyk, Adrian
Directed <i>cis</i>-hydrosilylation of borylalkynes to borylsilylalkenes.
Chemical communications (Cambridge, England), 2022, 58, 12046-12049
7130865 CIFC23 H38 B2 O4 SiP 1 21/c 134.3594; 8.4664; 18.3153
90; 105.437; 90
5135.72Stefanowska, Kinga; Sokolnicki, Tomasz; Walkowiak, Jędrzej; Czapik, Agnieszka; Franczyk, Adrian
Directed <i>cis</i>-hydrosilylation of borylalkynes to borylsilylalkenes.
Chemical communications (Cambridge, England), 2022, 58, 12046-12049
7130957 CIFC17 H12 N2 O5 SP 1 21/c 111.173; 5.3337; 25.755
90; 95.565; 90
1527.6Sharma, Alpa; Kour, Harpreet; Kour, Jaspreet; Kamal, ?; Sawant, Sanghapal D.
Visible-light-promoted iron-catalyzed C-H functionalization of 1,4-naphthoquinones <i>via</i> oxidative coupling with sulfoximines.
Chemical communications (Cambridge, England), 2022, 58, 11312-11315
7131029 CIFC7 H19 Co N6 O6P c a 2112.7442; 10.7342; 9.7366
90; 90; 90
1331.96Deresz, Krystyna A.; Kamiński, Radosław; Kutniewska, Sylwia E.; Krówczyński, Adam; Schaniel, Dominik; Jarzembska, Katarzyna N.
An optically reversible room-temperature solid-state cobalt(iii) photoswitch based on nitro-to-nitrito linkage isomerism
Chemical Communications, 2022, 58, 13439-13442
7131030 CIFC7 H19 Co N6 O6P c a 2112.8959; 10.7975; 9.8301
90; 90; 90
1368.78Deresz, Krystyna A.; Kamiński, Radosław; Kutniewska, Sylwia E.; Krówczyński, Adam; Schaniel, Dominik; Jarzembska, Katarzyna N.
An optically reversible room-temperature solid-state cobalt(iii) photoswitch based on nitro-to-nitrito linkage isomerism
Chemical Communications, 2022, 58, 13439-13442
7131031 CIFC7 H19 Co N6 O6P c a 2112.9023; 10.7957; 9.8304
90; 90; 90
1369.27Deresz, Krystyna A.; Kamiński, Radosław; Kutniewska, Sylwia E.; Krówczyński, Adam; Schaniel, Dominik; Jarzembska, Katarzyna N.
An optically reversible room-temperature solid-state cobalt(iii) photoswitch based on nitro-to-nitrito linkage isomerism
Chemical Communications, 2022, 58, 13439-13442
7131032 CIFC7 H19 Co N6 O6P c a 2112.8539; 10.7924; 9.8369
90; 90; 90
1364.62Deresz, Krystyna A.; Kamiński, Radosław; Kutniewska, Sylwia E.; Krówczyński, Adam; Schaniel, Dominik; Jarzembska, Katarzyna N.
An optically reversible room-temperature solid-state cobalt(iii) photoswitch based on nitro-to-nitrito linkage isomerism
Chemical Communications, 2022, 58, 13439-13442
7131033 CIFC7 H19 Co N6 O6P c a 2112.8611; 10.7902; 9.8361
90; 90; 90
1364.99Deresz, Krystyna A.; Kamiński, Radosław; Kutniewska, Sylwia E.; Krówczyński, Adam; Schaniel, Dominik; Jarzembska, Katarzyna N.
An optically reversible room-temperature solid-state cobalt(iii) photoswitch based on nitro-to-nitrito linkage isomerism
Chemical Communications, 2022, 58, 13439-13442
7131034 CIFC7 H19 Co N6 O6P c a 2112.8116; 10.7825; 9.8623
90; 90; 90
1362.4Deresz, Krystyna A.; Kamiński, Radosław; Kutniewska, Sylwia E.; Krówczyński, Adam; Schaniel, Dominik; Jarzembska, Katarzyna N.
An optically reversible room-temperature solid-state cobalt(iii) photoswitch based on nitro-to-nitrito linkage isomerism
Chemical Communications, 2022, 58, 13439-13442
7131035 CIFC40 H46 Ag B F4 N4C 1 c 118.707; 17.219; 14.288
90; 121.068; 90
3942.2Deresz, Krystyna A.; Kamiński, Radosław; Kutniewska, Sylwia E.; Krówczyński, Adam; Schaniel, Dominik; Jarzembska, Katarzyna N.
An optically reversible room-temperature solid-state cobalt(<scp>iii</scp>) photoswitch based on nitro-to-nitrito linkage isomerism
Chemical Communications, 2022, 58, 13439-13442

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