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碱金属萃取化学的研究 III:弱酸性偶氮螯合剂化学结构对萃取锂的性能研究
引用本文:严金英,李树森,冯涵真,程德凯,金慕军,陈耀焕,盛怀禹. 碱金属萃取化学的研究 III:弱酸性偶氮螯合剂化学结构对萃取锂的性能研究[J]. 化学学报, 1983, 41(2): 153-158
作者姓名:严金英  李树森  冯涵真  程德凯  金慕军  陈耀焕  盛怀禹
作者单位:中国科学院上海有机化学研究所
摘    要:The synergistic extractic extraction of lithium with a solution of o-phenylazophenols (HAX) and trioctylphosphine oxide (TOPO) or other trialkylphosphine oxide (TRPO, R = C8-10) in o-dichlorobenzene from aqueous solution of lithium hydroxide was reported. The structural effect of o-phenylazophenols on extraction of lithium has been examined. In the case of 1-(p-X-phenylazo)-2-naphthols, the HMO calculation shows that the charge density of azo nitrogen atom(the donor atom, denote azo N) and hydroxyl oxygen atom does not very apparently, so that the stability of their chelates with lithium has no obvious variations as well. In this case their ability to extract lithium is chiefly governed by the pKa. of the compound. The results of extraction prove that there is a linear correlation between the extraction constant Kex and pKa. However, for the second group of chelating agents, the change of their structure leads to the change of the change of both pKa and stability of chelates. The results of extraction and HMO calculation show that the stability of chelates is mainly influenced by the strength of the coordination bond, i.e. the larger the charge density of azo N (qN), the more stable the chelate will be. Therefore, their ability to extract lithium is roughly directly proportional to the stability of chelates and inversely to the pKa. the strength of coordination bond for the chelates can be experimentally measured by means of the strength of intramolecular hydrogen bond of chelating agent, ΔδOH (the diference of chemical shift of hydroxyl proton in free and bonded state). Therefore, the ratio, ΔδOH/pKa, can be used to evaluate the extraction ability of chelating agents to lithium. We find that it is approximately proportional to the distribution ratio (D).

关 键 词:萃取剂  碱金属  萃取  结构与性能关系  偶氮化合物    协同萃取  

Studies on extraction chemistry of alkali metal III: The structural effect of o-phenylazophenols on extraction of lithium.
YAN JINYING,LI SHUSEN,FENG HANZHEN,CHENG DEKAI,JIN MUJUN,CHEN YAOHUAN,SHENG HUAIYU. Studies on extraction chemistry of alkali metal III: The structural effect of o-phenylazophenols on extraction of lithium.[J]. Acta Chimica Sinica, 1983, 41(2): 153-158
Authors:YAN JINYING  LI SHUSEN  FENG HANZHEN  CHENG DEKAI  JIN MUJUN  CHEN YAOHUAN  SHENG HUAIYU
Abstract:The synergistic extractic extraction of lithium with a solution of o-phenylazophenols (HAX) and trioctylphosphine oxide (TOPO) or other trialkylphosphine oxide (TRPO, R = C8-10) in o-dichlorobenzene from aqueous solution of lithium hydroxide was reported. The structural effect of o-phenylazophenols on extraction of lithium has been examined. In the case of 1-(p-X-phenylazo)-2-naphthols, the HMO calculation shows that the charge density of azo nitrogen atom(the donor atom, denote azo N) and hydroxyl oxygen atom does not very apparently, so that the stability of their chelates with lithium has no obvious variations as well. In this case their ability to extract lithium is chiefly governed by the pKa. of the compound. The results of extraction prove that there is a linear correlation between the extraction constant Kex and pKa. However, for the second group of chelating agents, the change of their structure leads to the change of the change of both pKa and stability of chelates. The results of extraction and HMO calculation show that the stability of chelates is mainly influenced by the strength of the coordination bond, i.e. the larger the charge density of azo N (qN), the more stable the chelate will be. Therefore, their ability to extract lithium is roughly directly proportional to the stability of chelates and inversely to the pKa. the strength of coordination bond for the chelates can be experimentally measured by means of the strength of intramolecular hydrogen bond of chelating agent, ΔδOH (the diference of chemical shift of hydroxyl proton in free and bonded state). Therefore, the ratio, ΔδOH/pKa, can be used to evaluate the extraction ability of chelating agents to lithium. We find that it is approximately proportional to the distribution ratio (D).
Keywords:EXTRACTIVE AGENT  ALKALI METAL  EXTRACTION  STRUCTURE AND PROPERTY CORRELATION  AZO COMPOUNDS  LITHIUM  SYNERGIC SOLVENT EXTRACTION
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