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Lan-Chang Liang

Showing results (11-20 of 29) with videos related to

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Inorganic Chemistry|October 1, 2021
Facial-Meridional Isomerization and Reductive Elimination in [(R<sub>2</sub>P-<i>o</i>-C<sub>6</sub>H<sub>4</sub>)<sub>2</sub>N]PtMe<sub>3</sub> (R = Ph, <i>i</i>Pr)Lan-Chang Liang, Shu-Mei Liao, Xue-Ru Zou
Chemical Communications (Cambridge, England)|May 12, 2005
Benzene C-H activation by platinum(II) complexes of bis(2-diphenylphosphinophenyl)amideLan-Chang Liang, Jia-Ming Lin, Wei-Ying Lee
Inorganic Chemistry|March 25, 2011
Group 4 complexes of a tert-butylphosphine-bridged biphenolate ligandLan-Chang Liang, Yu-Lin Hsu, Sheng-Ta Lin
Inorganic Chemistry|September 3, 2003
Amido phosphine complexes of zincLan-Chang Liang, Wei-Ying Lee, Chen-Hsiung Hung
Inorganic Chemistry|March 17, 2004
Aluminum complexes incorporating bidentate amido phosphine ligandsLan-Chang Liang, Mei-Hui Huang, Chen-Hsiung Hung
Inorganic Chemistry|June 19, 2013
Zirconium and hafnium complexes containing N-alkyl-substituted amine biphenolate ligands: unexpected ligand degradation and divergent complex constitutions governed by N-alkylsLan-Chang Liang, Chia-Cheng Chien, Ming-Tsz Chen, et al.
Dalton Transactions (Cambridge, England : 2003)|March 23, 2013
Zirconium and hafnium complexes containing N-alkyl substituted amine biphenolate ligands: coordination chemistry and living ring-opening polymerization catalysisLan-Chang Liang, Sheng-Ta Lin, Chia-Cheng Chien, et al.
Frontiers in Chemistry|January 9, 2019
Enhanced Reactivity of Aluminum Complexes Containing P-Bridged Biphenolate Ligands in Ring-Opening Polymerization CatalysisXue-Ru Zou, Yu-Ning Chang, Kuo-Wei Huang, et al.
Inorganic Chemistry|August 1, 2007
Biphenolate phosphine complexes of tin(IV)Lan-Chang Liang, Yu-Ning Chang, Han-Sheng Chen, et al.
Inorganic Chemistry|November 21, 2015
Homo- and Heteropolynuclear Clusters of Phosphine TriphenolatesLan-Chang Liang, Kuan-Wei Chou, Wei-Jia Su, et al.
Pageof 3

Showing results (11-20 of 29) with videos related to

Sort By:
Pageof 3
Inorganic Chemistry|October 1, 2021
Facial-Meridional Isomerization and Reductive Elimination in [(R<sub>2</sub>P-<i>o</i>-C<sub>6</sub>H<sub>4</sub>)<sub>2</sub>N]PtMe<sub>3</sub> (R = Ph, <i>i</i>Pr)Lan-Chang Liang, Shu-Mei Liao, Xue-Ru Zou
Chemical Communications (Cambridge, England)|May 12, 2005
Benzene C-H activation by platinum(II) complexes of bis(2-diphenylphosphinophenyl)amideLan-Chang Liang, Jia-Ming Lin, Wei-Ying Lee
Inorganic Chemistry|March 25, 2011
Group 4 complexes of a tert-butylphosphine-bridged biphenolate ligandLan-Chang Liang, Yu-Lin Hsu, Sheng-Ta Lin
Inorganic Chemistry|September 3, 2003
Amido phosphine complexes of zincLan-Chang Liang, Wei-Ying Lee, Chen-Hsiung Hung
Inorganic Chemistry|March 17, 2004
Aluminum complexes incorporating bidentate amido phosphine ligandsLan-Chang Liang, Mei-Hui Huang, Chen-Hsiung Hung
Inorganic Chemistry|June 19, 2013
Zirconium and hafnium complexes containing N-alkyl-substituted amine biphenolate ligands: unexpected ligand degradation and divergent complex constitutions governed by N-alkylsLan-Chang Liang, Chia-Cheng Chien, Ming-Tsz Chen, et al.
Dalton Transactions (Cambridge, England : 2003)|March 23, 2013
Zirconium and hafnium complexes containing N-alkyl substituted amine biphenolate ligands: coordination chemistry and living ring-opening polymerization catalysisLan-Chang Liang, Sheng-Ta Lin, Chia-Cheng Chien, et al.
Frontiers in Chemistry|January 9, 2019
Enhanced Reactivity of Aluminum Complexes Containing P-Bridged Biphenolate Ligands in Ring-Opening Polymerization CatalysisXue-Ru Zou, Yu-Ning Chang, Kuo-Wei Huang, et al.
Inorganic Chemistry|August 1, 2007
Biphenolate phosphine complexes of tin(IV)Lan-Chang Liang, Yu-Ning Chang, Han-Sheng Chen, et al.
Inorganic Chemistry|November 21, 2015
Homo- and Heteropolynuclear Clusters of Phosphine TriphenolatesLan-Chang Liang, Kuan-Wei Chou, Wei-Jia Su, et al.
Pageof 3