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Spacial Structure of Cationic Phosphorus Ligand-Ru (Ⅱ) Halide Complexes-by DFT Study

Spacial Structure of Cationic Phosphorus Ligand–Ru (II) Halide Complexes—by DFT Study
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摘要 The full-parameter geometry optimization of cationic ( S ) - BINAP - Ru ( Ⅱ ) halide complex was performed by DFT method using B3LYP, PW91 and PBE potentials with several basis sets. PW91 with 3-21G / SDD basis sets is found to be the most suitable method with consideration of both precision and efficiency. The dihedral angles ( θ ) of the binaphthyl or biphenyl with different phosphorus ligand - Ru ( Ⅱ ) halide complexes were found changing from 59.9 to 79.3 degree, while the natural bite angle ( βn ) of those complexes only changes from 87.4 to 90.3 degree. It is different from the common view of asymmetric organic chemists' that θ directly influences βn. The full-parameter geometry optimization of cationic ( S ) - BINAP - Ru ( Ⅱ ) halide complex was performed by DFT method using B3LYP, PW91 and PBE potentials with several basis sets. PW91 with 3-21G / SDD basis sets is found to be the most suitable method with consideration of both precision and efficiency. The dihedral angles ( θ ) of the binaphthyl or biphenyl with different phosphorus ligand - Ru ( Ⅱ ) halide complexes were found changing from 59.9 to 79.3 degree, while the natural bite angle ( βn ) of those complexes only changes from 87.4 to 90.3 degree. It is different from the common view of asymmetric organic chemists' that θ directly influences βn.
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2005年第11期1555-1558,共4页 中国化学快报(英文版)
基金 the financial support by the National Natural Science Foundation of China(No.20373014).
关键词 Chiral phosphorus ligand DFT dihedral angle(θ) natural bite angle(βn). Chiral phosphorus ligand, DFT, dihedral angle(θ), natural bite angle(βn).
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