Crystallography Open Database

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Searching journal of publication like 'Faraday Discussions'

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1552353 CIFC27.24 H36.48 B K N4 O3.81 PtP -110.5788; 11.2602; 15.097
86.14; 79.626; 76.227
1717.5Pal, Shrinwantu; Patrick, Brian O.; Love, Jennifer A.
Platinum-mediated B‒H methoxylation of bis(pyrazolyl)borate
Faraday Discussions, 2019
1552354 CIFC26 H34 B K N4 O2 PtP 1 21/n 19.6073; 15.6781; 35.365
90; 94.891; 90
5307.4Pal, Shrinwantu; Patrick, Brian O.; Love, Jennifer A.
Platinum-mediated B‒H methoxylation of bis(pyrazolyl)borate
Faraday Discussions, 2019
1552966 CIFC39 H33 N5 O4 S2P -16.9253; 13.3435; 18.5149
88.562; 84.154; 76.656
1656.07Black, Hayden T.; Lin, Huaping; Bélanger-Gariépy, Francine; Perepichka, Dmitrii F.
Supramolecular control of organic p/n-heterojunctions by complementary hydrogen bonding.
Faraday discussions, 2014, 174, 297-312
1552967 CIFC39 H33 N5 O6P 1 21/c 121.99561; 9.3758; 31.7046
90; 106.046; 90
6283.59Black, Hayden T.; Lin, Huaping; Bélanger-Gariépy, Francine; Perepichka, Dmitrii F.
Supramolecular control of organic p/n-heterojunctions by complementary hydrogen bonding.
Faraday discussions, 2014, 174, 297-312
1552968 CIFC37 H27 N5 O6P 1 21/n 117.9367; 9.3501; 19.4676
90; 112.562; 90
3015.03Black, Hayden T.; Lin, Huaping; Bélanger-Gariépy, Francine; Perepichka, Dmitrii F.
Supramolecular control of organic p/n-heterojunctions by complementary hydrogen bonding.
Faraday discussions, 2014, 174, 297-312
1556940 CIFC18 H19 N3 TiP -17.7583; 9.5204; 11.4421
70.673; 88.342; 84.629
794.01Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556941 CIFC40 H52 O4 TiP -4 21 c15.2024; 15.2024; 7.9195
90; 90; 90
1830.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556942 CIFC56 H84 O4 TiP -4 21 c12.312; 12.312; 17.7572
90; 90; 90
2691.73Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556943 CIFC40 H48 F4 O4 TiP -4 21 c15.2973; 15.2973; 8.263
90; 90; 90
1933.6Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556944 CIFC35.67 H51.5 O2.67 Ti0.67P 1 21/c 112.9534; 21.2798; 19.3799
90; 98.805; 90
5279Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556945 CIFC44 H48 Br4 O4 TiI 41/a :222.37; 22.37; 9.5963
90; 90; 90
4802.2Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556946 CIFC19 H35 Cr N3 OP 1 21/n 19.1061; 9.1819; 25.815
90; 93.065; 90
2155.34Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556947 CIFC48.5 H70.5 O4 TiC 1 2/c 122.452; 9.4744; 22.253
90; 90.71; 90
4733.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556948 CIFC30 H45 Cl3 O4 TiP -111.5725; 12.3899; 13.0612
67.658; 80.546; 66.699
1590.67Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556949 CIFC44 H60 O8 TiP 1 21 110.0587; 14.8851; 14.1568
90; 90.284; 90
2119.6Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556950 CIFC44 H48 F12 O4 TiC 1 2/c 122.059; 9.8711; 22.6307
90; 110.609; 90
4612.4Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556951 CIFC65 H88 N3 O4 Ti2C 1 2/c 134.0256; 17.3283; 25.5196
90; 121.054; 90
12890.1Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556952 CIFC23 H30 I2 O2 TiP -19.69; 9.8844; 13.151
90.518; 92.411; 95.161
1253.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1557244 CIFC90 H126 Mn3 N12 O27P 1 21/m 112.323; 32.145; 12.931
90; 93.58; 90
5112Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557245 CIFC84 H84 Cl18 Mn3 N12 O12P 1 21/m 112.313; 31.877; 12.954
90; 92.93; 90
5078Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557246 CIFC105 H103.5 Mn3 N12 O12P -112.276; 12.869; 31.586
93.98; 97.43; 92.02
4931Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557247 CIFC111 H138 Mn3 N12 O21P -112.457; 13.242; 33.037
86.69; 86.08; 85.22
5411Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557248 CIFC97 H126 Mn3 N12 O18P -112.364; 12.947; 30.366
99.4; 97.35; 91.57
4750.4Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557249 CIFC93 H120 Mn3 N12 O21P 1 21/m 112.274; 32.826; 12.93
90; 95.51; 90
5186Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557250 CIFC97.5 H111 Mn3 N12 O19.5P 1 21/m 112.307; 31.637; 13.006
90; 92.1; 90
5061Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557251 CIFC111 H106 Cl2 Mn3 N12 O16 Rh2P 1 21/c 112.339; 33.798; 25.762
90; 96.1; 90
10683Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557599 CIFC9 H10 N4 O3 Zn2P b a 210.51; 12.234; 4.666
90; 90; 90
599.95Huang, Zhehao; Ge, Meng; Carraro, Francesco; Doonan, Christian; Falcaro, Paolo; Zou, Xiaodong
Can 3D electron diffraction provide accurate atomic structures of metal-organic frameworks?
Faraday discussions, 2021, 225, 118-132
1557771 CIFC94 H100 Cl12 N12 O3 Pd6P 1 21 114.2257; 50.2552; 19.5481
90; 91.9145; 90
13967.4Tashiro, Shohei; Umeki, Tsutomu; Kubota, Ryou; Shionoya, Mitsuhiko
Face-selective adsorption of a prochiral compound on the chiral pore-surface of a metal-macrocycle framework (MMF) directed towards stereoselective reactions.
Faraday discussions, 2021, 225, 197-209
1557772 CIFC95.93 H98.19 Cl12 N15 O2.74 Pd6P 1 21/c 119.5269; 51.758; 14.2813
90; 91.0232; 90
14431Tashiro, Shohei; Umeki, Tsutomu; Kubota, Ryou; Shionoya, Mitsuhiko
Face-selective adsorption of a prochiral compound on the chiral pore-surface of a metal-macrocycle framework (MMF) directed towards stereoselective reactions.
Faraday discussions, 2021, 225, 197-209
1557773 CIFC86.9 H86.8 Cl12 N12 O10.13 Pd6P 1 21 114.1814; 52.5455; 19.8435
90; 91.1321; 90
14783.9Tashiro, Shohei; Umeki, Tsutomu; Kubota, Ryou; Shionoya, Mitsuhiko
Face-selective adsorption of a prochiral compound on the chiral pore-surface of a metal-macrocycle framework (MMF) directed towards stereoselective reactions.
Faraday discussions, 2021, 225, 197-209
1557774 CIFC98.4 H97.66 Cl12.55 N14.25 O2.95 Pd6P 1 21 114.338; 52.953; 19.7623
90; 90.789; 90
15002.9Tashiro, Shohei; Umeki, Tsutomu; Kubota, Ryou; Shionoya, Mitsuhiko
Face-selective adsorption of a prochiral compound on the chiral pore-surface of a metal-macrocycle framework (MMF) directed towards stereoselective reactions.
Faraday discussions, 2021, 225, 197-209
1557791 CIFC20 H16 Cl2 N4 O PtP 1 21/c 15.3046; 21.6781; 15.9776
90; 94.542; 90
1831.55Kobayashi, Atsushi; Imada, Shin-Ichiro; Wang, Dongjin; Nagao, Yuki; Yoshida, Masaki; Kato, Masako
Cooperative phenomenon of vapochromism and proton conduction of luminescent Pt(ii) complexes for the visualisation of proton conductivity.
Faraday discussions, 2021, 225, 184-196
1557792 CIFC21 H18 Cl2 N4 O PtP -18.0185; 10.5928; 13.0124
69.402; 86.254; 72.413
985.2Kobayashi, Atsushi; Imada, Shin-Ichiro; Wang, Dongjin; Nagao, Yuki; Yoshida, Masaki; Kato, Masako
Cooperative phenomenon of vapochromism and proton conduction of luminescent Pt(ii) complexes for the visualisation of proton conductivity.
Faraday discussions, 2021, 225, 184-196
1557793 CIFC40 H34 Cl6.5 N8 O6 Pt2P -113.5911; 14.4864; 14.6981
99.605; 101.408; 117.546
2401.45Kobayashi, Atsushi; Imada, Shin-Ichiro; Wang, Dongjin; Nagao, Yuki; Yoshida, Masaki; Kato, Masako
Cooperative phenomenon of vapochromism and proton conduction of luminescent Pt(ii) complexes for the visualisation of proton conductivity.
Faraday discussions, 2021, 225, 184-196
1558875 CIFC44.2 H35.32 N2.6 O16.6 Zn3C 1 2/c 132.7998; 9.7204; 18.3042
90; 96.453; 90
5798.9Cadman, Laura K.; Mahon, Mary F.; Burrows, Andrew D.
Inclusion of viologen cations leads to switchable metal-organic frameworks.
Faraday discussions, 2021, 225, 414-430
1558876 CIFC49.2 H46.78 N3.4 O18.7 Zn3C 1 2/c 132.6406; 9.63384; 18.4404
90; 102.534; 90
5660.47Cadman, Laura K.; Mahon, Mary F.; Burrows, Andrew D.
Inclusion of viologen cations leads to switchable metal-organic frameworks.
Faraday discussions, 2021, 225, 414-430
1558877 CIFC212 H260 N20 O76 Zn8P c a 2136.4926; 14.6058; 45.4204
90; 90; 90
24209.2Cadman, Laura K.; Mahon, Mary F.; Burrows, Andrew D.
Inclusion of viologen cations leads to switchable metal-organic frameworks.
Faraday discussions, 2021, 225, 414-430
1558878 CIFC36 H34 N4 O14 Zn2P 1 21/n 19.6981; 16.1078; 11.5458
90; 90.923; 90
1803.39Cadman, Laura K.; Mahon, Mary F.; Burrows, Andrew D.
Inclusion of viologen cations leads to switchable metal-organic frameworks.
Faraday discussions, 2021, 225, 414-430
1559676 CIFC20 H22 Cd N4 O12P 31 2 113.7702; 13.7702; 13.2048
90; 90; 120
2168.42Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559677 CIFC20 H22 Cd N4 O12P 31 2 113.9775; 13.9775; 13.0994
90; 90; 120
2216.4Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559678 CIFC20 H22 Cd N4 O12P 32 2 114.8922; 14.8922; 12.7663
90; 90; 120
2452Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559679 CIFC16 H6 Cd N2 O12P 31 2 114.9689; 14.9689; 12.6934
90; 90; 120
2463.14Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559680 CIFC20 H22 Cd N4 O12P 32 2 115.0465; 15.0465; 12.6619
90; 90; 120
2482.56Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559681 CIFC20 H22 Cd N4 O12P 31 2 114.0982; 14.0982; 13.0538
90; 90; 120
2247Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559682 CIFC20 H22 Cd N4 O12P 31 2 113.6191; 13.6191; 13.2288
90; 90; 120
2124.9Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559683 CIFC20 H22 Cd N4 O12P 31 2 114.366; 14.366; 12.8607
90; 90; 120
2298.6Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559684 CIFC20 H22 Cd N4 O12P 31 2 114.218; 14.218; 13.0014
90; 90; 120
2276.1Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559685 CIFC16 H6 Cd N2 O12P 31 2 114.515; 14.515; 12.8247
90; 90; 120
2340Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559686 CIFC20 H22 Cd N4 O12P 31 2 113.9484; 13.9484; 13.1157
90; 90; 120
2209.89Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559687 CIFC16 H6 Cd N2 O12P 31 2 114.8744; 14.8744; 12.7248
90; 90; 120
2438.2Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151

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