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氢键对增强固定化单质子磷酸配体离子亲和力的影响。

The Effect of Hydrogen Bonding in Enhancing the Ionic Affinities of Immobilized Monoprotic Phosphate Ligands.

作者信息

Alexandratos Spiro D, Zhu Xiaoping

机构信息

Department of Chemistry, Hunter College of the City University of New York, New York, NY 10065, USA.

Graduate Center of the City University of New York, New York, NY 10016, USA.

出版信息

Materials (Basel). 2017 Aug 18;10(8):968. doi: 10.3390/ma10080968.

Abstract

Environmental remediation requires ion-selective polymers that operate under a wide range of solution conditions. In one example, removal of trivalent and divalent metal ions from waste streams resulting from mining operations before they enter the environment requires treatment at acidic pH. The monoethyl ester phosphate ligands developed in this report operate from acidic solutions. They have been prepared on polystyrene-bound ethylene glycol, glycerol, and pentaerythritol, and it is found that intra-ligand hydrogen bonding affects their metal ion affinities. The affinity for a set of trivalent (Fe(III), Al(III), La(III), and Lu(III)) and divalent (Pb(II), Cd(II), Cu(II), and Zn(II)) ions is greater than that of corresponding neutral diethyl esters and phosphonic acid. In an earlier study, hydrogen bonding was found important in determining the metal ion affinities of immobilized phosphorylated polyol diethyl ester coordinating ligands; their Fourier transform infrared (FTIR) band shifts indicated that the basicity of the phosphoryl oxygen increased by hydrogen bonding to auxiliary -OH groups on the neighboring polyol. The same mechanism is operative with the monoprotic resins along with hydrogen bonding to the P-OH acid site. This is reflected in the FTIR spectra: the neutral phosphate diethyl ester resins have the P=O band at 1265 cm while the monoethyl ester resins have the band shifted to 1230 cm; hydrogen bonding is further indicated by the broadness of this region down to 900 cm. The monoprotic pentaerythritol has the highest metal ion affinities of the polymers studied.

摘要

环境修复需要能在广泛的溶液条件下运行的离子选择性聚合物。在一个例子中,在采矿作业产生的废物流进入环境之前去除其中的三价和二价金属离子需要在酸性pH条件下进行处理。本报告中开发的单乙酯磷酸酯配体可在酸性溶液中发挥作用。它们已被制备在聚苯乙烯键合的乙二醇、甘油和季戊四醇上,并且发现配体内氢键影响它们对金属离子的亲和力。对一组三价离子(Fe(III)、Al(III)、La(III)和Lu(III))和二价离子(Pb(II)、Cd(II)、Cu(II)和Zn(II))的亲和力大于相应的中性二乙酯和膦酸。在早期的一项研究中,发现氢键在确定固定化磷酸化多元醇二乙酯配位配体的金属离子亲和力方面很重要;它们的傅里叶变换红外(FTIR)谱带位移表明,通过与相邻多元醇上的辅助 -OH 基团形成氢键,磷酰氧的碱性增强。单质子树脂也通过与P-OH酸性位点形成氢键起作用相同的机制。这在FTIR光谱中有所体现:中性磷酸二乙酯树脂在1265 cm处有P=O谱带,而单乙酯树脂的谱带移至1230 cm;该区域延伸至900 cm的宽度进一步表明了氢键的存在。在所研究的聚合物中,单质子季戊四醇具有最高的金属离子亲和力。

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