首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Complex formation of anserine with uranyl in aqueous solution: Thermodynamic studies and structural analysis
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Complex formation of anserine with uranyl in aqueous solution: Thermodynamic studies and structural analysis

机译:含有铀酰含水溶液中的冬式烷的复杂形成:热力学研究和结构分析

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摘要

Knowledge of uranyl (UO22+) aqueous speciation and chemical interactions with natural organic matter is the basis to mode the sorption and transport behavior of uranyl. Anserine is a natural dipeptide containing beta-alanine and 1-methylhistidine, which can be found in the skeletal muscle of birds and certain species of mammals. The complexation of anserine with uranyl cation was studied thermodynamically and structurally at 25 degrees C, I = 0.5 mol.L-1 NaCI solution. Protonation of anserine was investigated by potentiometry, microcalorimetry and NMR spectroscopy. Experimental results confirmed that there are three successive proton reaction steps for a totally deproton anserine. The order of successive protonation sites are the terminal amine nitrogen atom of alanine, amine nitrogen atoms in imidazole ring, and finally carboxylate oxygen. This trend is in agreement with exothermic enthalpies of protonation reaction. Potentiometry was used to measure stability constant of uranyl complex in solution. Thermodynamic studies identified four uranyl/anserine complexes with different degrees of deprotonation, UO2(HL)(2+), UO2L+, (UOL2(aq))-L-2 and UO2(OH)L-2(-). Coordination modes of the three complexes [UO2(HL)(2+), UO2L+ and UO2L2(aq)] were investigated by NMR spectroscopy. In these complexes, anserine holds a tridentate mode. Cyclic voltammetry was performed to understand the influence of anserine exert over redox response to uranium in solution. The results confirmed that oxidation state of uranyl cation is stabilized significantly and harder to be reduced by complex with anserine. Anserine could effectively suppress the hydrolysis of uranyl in aqueous solutions.
机译:铀酰(UO22 +)水性物质和与天然有机物质的化学相互作用的知识是模式铀酰的吸附和运输行为的基础。 Anserine是一种含有β-丙氨酸和1-甲基氨基氨基的天然二肽,其可以在鸟类和某些哺乳动物的骨骼肌中找到。在25℃下在热力学和结构上进行氰基阳离子的络合与铀酰阳离子的络合,I = 0.5mol.L-1 NaCl溶液。通过电位,微离核和NMR光谱研究了苯胺的质子化。实验结果证实,对于完全脱髓鞘的苯胺笼有三个连续的质子反应步骤。连续质子化位点的顺序是丙氨酸中丙氨酸的末端胺氮原子,咪唑环中的胺氮原子,最后羧酸盐氧。这种趋势与质子化反应的放热焓一致。电位计量测量溶液中铀酰络合物的稳定性常数。热力学研究鉴定了具有不同程度的去质子化,UO 2(HL)(2+),UO 2L +,(UOL2(AQ)) - L-2和UO 2(OH)L-2( - )的四种铀酰/冬式素配合物。通过NMR光谱研究了三种复合物[UO2(HL)(2+),UO2L +和UO2L2(AQ)]的配位模式。在这些复合物中,Anserine持有三叉模式。进行循环伏安法以了解厌氧对溶液中铀氧化还原反应的影响。结果证实,铀酰阳离子的氧化状态显着稳定,并且通过冬式络合物致络合物较硬。 Anserine可以有效地抑制水溶液中铀的水解。

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