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Influence of different transition metals in phthalocyanines on their interaction energies with volatile organic compounds: an experimental and computational study

机译:酞菁类化合物中不同过渡金属对其与挥发性有机化合物相互作用能的影响:一项实验和计算研究

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摘要

Experimental partition coefficients were determined for a series of volatile organic compounds (VOCs) (acetonitrile, n-butylamine, n-octane tetrachloroethene, and toluene) for the interaction with 2,3,9,10,16,17,23,24-octakis(octyloxy)-phthalocyaninato complexes, PcM(OR)(8), with varying central metal atoms [M=H-2 (metal-free), Ni, Pd, Cu, Zn]. Large partition coefficients for toluene were observed in the case of the nickel and palladium phthalocyanines, whereas for the corresponding zinc-containing compound, interaction with n-butylamine resulted in a high value for the partition coefficient. Interaction energies for model coordination complexes were obtained at the ab initio LMP2/ LACVP* level of theory. The interaction of various small volatiles with the various PcM(OR)(8) compounds was studied using the PM3 semiempirical Hamiltonian. Large values for interaction energies correspond to particularly strong partition coefficients, suggesting that coordination of the volatiles to the central metal dominates over the often discussed pi-system stacking at the PcM(OR)(8)'s.
机译:确定了一系列挥发性有机化合物(VOC)(乙腈,正丁胺,正辛烷四氯乙烯和甲苯)与2、3、9、10、16、17、23、24-具有不同中心金属原子[M = H-2(不含金属),Ni,Pd,Cu,Zn的辛基(辛氧基)-酞菁配合物PcM(OR)(8)。在镍和钯酞菁的情况下,甲苯的分配系数较大,而对于相应的含锌化合物,与正丁胺的相互作用导致分配系数的值较高。在理论上从头开始获得LMP2 / LACVP *的模型配位化合物的相互作用能。使用PM3半经验哈密顿量研究了各种小挥发物与各种PcM(OR)(8)化合物的相互作用。相互作用能的大数值对应于特别强的分配系数,这表明在通常讨论的PcM(OR)(8)上pi系统堆叠中,挥发物与中心金属的配位起主导作用。

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