2021Unpublished venueRequires access

Theoretical Investigation for the Coordination Complexes of Bis-Picolinic Acid Derivatives with Lead and Chromium

Xiaofeng Wang, Liping He, Wenbo Lan, Jianhuang Li, Kang-Fa Xiao, Lei Yuan, Yanbin Meng, Wen-Lu Guo, Changming Nie

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Abstract

Under the same level of computer calculation accuracy, molecular simulation and analysis of the coordination structures of bis-picolinic acid derivatives with lead and chromium are carried out. Studies have found that the binding capacity of the bis-picolinic acid derivatives to chromium ions and the stability of the complexes formed by the bis-picolinic acid derivatives and chromium are stronger than that of lead. Moreover, after the bis-picolinic acid derivative is combined with chromium, a strong UV absorption peak will be produced, while there will never appear in the complexes combined lead.

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What this paper is about

Under the same level of computer calculation accuracy, molecular simulation and analysis of the coordination structures of bis-picolinic acid derivatives with lead and chromium are carried out. Studies have found that the binding capacity of the bis-picolinic acid derivatives to chromium ions and the stability of the complexes formed by the bis-picolinic acid derivatives and chromium are stronger than that of lead. Moreover, after the bis-picolinic acid derivative is combined with chromium, a strong UV absorption peak will be produced, while there will never appear in the complexes combined lead.

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Available abstract

Under the same level of computer calculation accuracy, molecular simulation and analysis of the coordination structures of bis-picolinic acid derivatives with lead and chromium are carried out. Studies have found that the binding capacity of the bis-picolinic acid derivatives to chromium ions and the stability of the complexes formed by the bis-picolinic acid derivatives and chromium are stronger than that of lead. Moreover, after the bis-picolinic acid derivative is combined with chromium, a strong UV absorption peak will be produced, while there will never appear in the complexes combined lead.

Key concepts: Picolinic acid, Chromium, Chemistry, Absorption (acoustics), Inorganic chemistry, Organic chemistry, Materials science, Composite material

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