Study of electronic and steric effects of organic substituents on complexation between U(VI) and aromatic carboxylates in aqueous solution수용액 내 우라늄(VI)-방향족 카복실레이트 착화합물 형성반응에 대한 유기치환기의 전자 및 입체효과 규명

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In order to accurately predict and control the chemical behaviors of actinides in aqueous environments, the complexation of actinide ions with relevant inorganic or organic ligands is required to be comprehensively investigated because the stable complexation reactions dominate the aquatic chemical properties of actinides, such as the oxidation state, solubility, species distribution, and chemisorption. Among the diverse chemical functionalities, aromatic carboxyl groups are ubiquitous in various natural organic matters and significantly govern the migration of actinide ions in natural water. Additionally, due to the excellent stability of the benzene moiety, the aromatic carboxyl groups have a potential to be further utilized as the basic structure of the chemical complexants for separation and recovery of actinides dissolved in the aqueous radioactive wastes. In this study, for the purpose of improving the current understanding of complexation behaviors between actinyl(VI) ions and aromatic carboxylates, methoxy and methyl groups were selected as major organic substituents, and 1:1 aqueous complexation of uranyl(VI) with the substituted benzoates was scrutinized. The spectroscopic properties and stability constants of the uranyl(VI) complexes were evaluated by means of UV-Vis absorption and Raman spectroscopy for the first time, and correlation between the resulting thermodynamic constants related to the substituents’ electronic and steric effects was analyzed based on the Hammett equation and the reported structural characteristics of several uranyl(VI) compounds. Furthermore, in the case of 2-methoxybenzoate, formation of crystalline 1:1:3 sodium uranyl(VI) 2-methoxybenzoate dodecahydrate was observed in the solutions. The spectroscopic properties, molecular structure, and solubility product of the U(VI) precipitate were identified using UV-Vis absorption, photoluminescence, Raman and IR spectroscopy, X-ray diffraction, and thermogravimetric analysis for the first time. The solid U(VI) complex has distinctive one-dimensional channels in the crystal structure, and a driving force of the precipitation reaction was discussed in relation to the steric effect of the ortho-substituent.
Advisors
Yun, Jong-Ilresearcher윤종일researcher
Description
한국과학기술원 :원자력및양자공학과,
Publisher
한국과학기술원
Issue Date
2021
Identifier
325007
Language
eng
Description

학위논문(박사) - 한국과학기술원 : 원자력및양자공학과, 2021.8,[vi, 94 p. :]

Keywords

Uranium▼aMethoxybenzoic acid▼aMethylbenzoic acid▼aComplex▼aStability constant▼aHammett equation▼aSolubility product▼aMolecular structure; 우라늄▼a메톡시벤조산▼a메틸벤조산▼a착화합물▼a형성상수▼a하메트식▼a용해도곱상수▼a분자구조

URI
http://hdl.handle.net/10203/295552
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=962516&flag=dissertation
Appears in Collection
NE-Theses_Ph.D.(박사논문)
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