Crystallography Open Database

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Searching journal of publication like 'Faraday discussions' volume of publication is 220

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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

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