Crystallography Open Database

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Searching journal of publication like 'Chemical Communications' volume of publication is 53

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7119404 CIFC20 H52 Cl4 N8 O14.5 Pd2 Pt2 S4C 1 2 116.407; 23.902; 14.901
90; 103.206; 90
5689Kuwamura, Naoto; Kurioka, Yoshinari; Konno, Takumi
A platinum(ii)-palladium(ii)-nickel(ii) heterotrimetallic coordination polymer showing a cooperative effect on catalytic hydrogen evolution.
Chemical communications (Cambridge, England), 2017, 53, 846-849
7119405 CIFC20 H48 Cl2 N8 Ni O26 Pd2 Pt2 S4C 1 2 122.503; 9.065; 18.45
90; 119.332; 90
3281.1Kuwamura, Naoto; Kurioka, Yoshinari; Konno, Takumi
A platinum(ii)-palladium(ii)-nickel(ii) heterotrimetallic coordination polymer showing a cooperative effect on catalytic hydrogen evolution.
Chemical communications (Cambridge, England), 2017, 53, 846-849
7119406 CIFC24 H18 N2 OP 1 21/n 113.365; 17.037; 16.781
90; 98.932; 90
3774.7Yang, Tang-Hao; Kuo, Chun-Wei; Kavala, Veerababurao; Konala, Ashok; Huang, Chia-Yu; Yao, Ching-Fa
Regioselective switching approach for the synthesis of α and δ carboline derivatives.
Chemical communications (Cambridge, England), 2017, 53, 1676-1679
7119407 CIFC24 H18 N2 OP -19.48; 13.2295; 15.0067
88.685; 73.346; 86.478
1799.7Yang, Tang-Hao; Kuo, Chun-Wei; Kavala, Veerababurao; Konala, Ashok; Huang, Chia-Yu; Yao, Ching-Fa
Regioselective switching approach for the synthesis of α and δ carboline derivatives.
Chemical communications (Cambridge, England), 2017, 53, 1676-1679
7119408 CIFC25 H20 N2 O2P -18.2571; 16.859; 17.1654
66.416; 86.395; 89.79
2185Yang, Tang-Hao; Kuo, Chun-Wei; Kavala, Veerababurao; Konala, Ashok; Huang, Chia-Yu; Yao, Ching-Fa
Regioselective switching approach for the synthesis of α and δ carboline derivatives.
Chemical communications (Cambridge, England), 2017, 53, 1676-1679
7119409 CIFC16 H16 N2 O5 ZnP -18.3703; 9.2341; 11.1634
90.457; 110.366; 100.752
792.21Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119410 CIFC16 H16 N2 O5 ZnP -18.3664; 9.236; 11.163
90.482; 110.353; 100.726
792.1Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119411 CIFC16 H16 N2 O5 ZnP -18.3788; 9.2243; 11.1762
90.546; 110.397; 100.564
793.38Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119412 CIFC16 H16 N2 O5 ZnP -18.3909; 9.2121; 11.1901
90.62; 110.447; 100.385
794.64Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119413 CIFC16 H16 N2 O5 ZnP -18.4043; 9.199; 11.2066
90.703; 110.501; 100.187
796.14Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119414 CIFC16 H16 N2 O5 ZnP -18.4179; 9.1829; 11.2234
90.807; 110.554; 99.951
797.49Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119415 CIFC16 H16 N2 O5 ZnP -18.4318; 9.1634; 11.2411
90.933; 110.602; 99.686
798.71Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119416 CIFC16 H16 N2 O5 ZnP -18.4474; 9.1453; 11.2631
91.059; 110.661; 99.39
800.52Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119417 CIFC16 H16 N2 O5 ZnP -18.4619; 9.1264; 11.2843
91.177; 110.717; 99.088
802.11Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119418 CIFC16 H14 N2 O4 ZnP -18.1653; 8.8929; 11.2602
92.327; 107.639; 95.663
773.25Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119419 CIFC16 H14 N2 O4 ZnP -18.1663; 8.8936; 11.26
92.305; 107.67; 95.665
773.27Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119420 CIFC16 H14 N2 O4 ZnP -18.1696; 8.8871; 11.2748
92.312; 107.662; 95.599
774.17Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119421 CIFC16 H14 N2 O4 ZnP -18.1718; 8.8796; 11.2884
92.322; 107.661; 95.53
774.77Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119422 CIFC16 H14 N2 O4 ZnP -18.1742; 8.8724; 11.3032
92.343; 107.665; 95.457
775.46Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864
7119423 CIFC16 H14 N2 O4 ZnP -18.1769; 8.8656; 11.3207
92.361; 107.667; 95.383
776.416Aggarwal, Himanshu; Das, Raj Kumar; Engel, Emile R.; Barbour, Leonard J.
A five-fold interpenetrated metal-organic framework showing a large variation in thermal expansion behaviour owing to dramatic structural transformation upon dehydration-rehydration.
Chemical communications (Cambridge, England), 2017, 53, 861-864

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