Zobrazeno 1 - 10
of 12
pro vyhledávání: '"Lathewdeipor Shadap"'
Autor:
Chun-Wan Timothy Lo, Lathewdeipor Shadap, S. A. Novikov, Mohan Rao Kollipara, Krishna Mohan Poluri, Jaya Lakshmi Tyagi, Yurij Mozharivskyj
Publikováno v:
Transition Metal Chemistry. 46:231-240
Metal complexes 1–9 have been synthesized by reacting the benzothiazole–pyrazole derivative ligands (L1, L2 and L3) with the metal precursors of ruthenium (Ru), rhodium (Rh) and iridium (Ir). The complexes have been isolated as cationic mononucle
Autor:
Lathewdeipor Shadap, Emma Pinder, Venkanna Banothu, Werner Kaminsky, Roger M. Phillips, Mohan Rao Kollipara
Publikováno v:
Journal of Coordination Chemistry. 73:1538-1553
Ligands containing benzothiazole moiety upon reaction with arene platinum group metal precursors in dry methanol yielded cationic complexes 1–9 having N∩N bonding mode. The general formulation of t...
Publikováno v:
Journal of Coordination Chemistry. 73:175-187
Arene metal precursors on treatment with thiosemicarbazone ligands (L1, L2, and L3) yielded a series of cationic mono- and binuclear complexes (1–9) with N∩S bonding mode. In general, the complexes have been formulated as [(p-cymene)Ru(L)Cl]+ and
Autor:
Charlestine Soh, Lathewdeipor Shadap, Mohan Rao Kollipara, Jaya Lakshmi Tyagi, Krishna Mohan Poluri, Yurij Mozharivskyj, E.K. Rymmai
Publikováno v:
Journal of Organometallic Chemistry. 984:122559
Autor:
Siewdorlang Diamai, Krishna Mohan Poluri, Jaya Lakshmi Tyagi, Werner Kaminsky, Lathewdeipor Shadap, Mohan Rao Kollipara
Publikováno v:
Journal of Organometallic Chemistry. 897:207-216
A series of complexes ( 1 – 9 ) were synthesized by the reaction of halide bridged metal precursors with the three pyrazine thiourea ligands L1 , L2 and L3 to yield cationic as well as neutral complexes and characterized by various spectroscopic te
Autor:
Venkanna Banothu, Siewdorlang Diamai, Uma Adepally, Mohan Rao Kollipara, Lathewdeipor Shadap, Devendra P.S. Negi, Werner Kaminsky
Publikováno v:
Journal of Organometallic Chemistry. 884:44-54
Complexes 1–9 were prepared by the reaction of [(arene)MCl2]2 (arene = p-cymene, Cp*; M = Ru, Rh and Ir) with thiourea derivative ligands L1, L2 and L3. These complexes have been isolated as cationic bidentate (N, S), neutral bidentate (N, S) as we
Autor:
Krishna Mohan Poluri, Werner Kaminsky, Mohan Rao Kollipara, Deepak Kumar Tripathi, Agreeda Lapasam, Lathewdeipor Shadap
The reaction of [(arene)MCl2]2 with ligands 4-hydroxy-benzhydrazide (L1) and 3-methoxy-benzhydrazide (L2) leads to formation of cationic complexes 1-6 having the general formula [(arene)M(L)Cl]+ {arene = p-cymene, M = Ru; arene = Cp*; M = Rh/Ir; L =
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::395ea1db7cced82cb90e2eb5ac9ea172
Autor:
Lathewdeipor Shadap, Venkanna Banothu, Pinder, Emma, Phillips, Roger M., Kaminsky, Werner, Kollipara, Mohan Rao
Ligands containing benzothiazole moiety upon reaction with arene platinum group metal precursors in dry methanol yielded cationic complexes 1–9 having N∩N bonding mode. The general formulation of the complexes is presented as [(arene)M(κ2N∩N-L
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4d91f809af5122a255645e9e657e5bf6
Autor:
Vivek Chetry, Krishna Mohan Poluri, Lathewdeipor Shadap, Werner Kaminsky, Mohan Rao Kollipara, Nipanshu Agarwal
Publikováno v:
Journal of Organometallic Chemistry. 937:121731
The benzamide derivative ligands of benzothiazole (L1) and benzimidazole (L2) upon reaction with halide bridged metal precursors of platinum group yielded a series of complexes (1-6) formulated as [(arene)M(κ1(N)-L)Cl2], where, L = L1 and L2, M = Ru
Autor:
Lathewdeipor Shadap, Krishna Mohan Poluri, Yurij Mozharivskyj, S. A. Novikov, Jaya Lakshmi Tyagi, Chun-Wan Timothy Lo, Mohan Rao Kollipara
Publikováno v:
Journal of Organometallic Chemistry. 920:121345
Halide bridged metal precursors of platinum group on reaction with thiocarbamate derivative ligands (L1 and L2) yielded a series of neutral mono-dentate complexes (1–6) formulated as [(arene)M(κ1(S)-L)Cl2] where, L = L1 and L2, M = Ru, Rh and Ir,