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辛基苯基 - N,N - 二异丁基氨基甲酰甲基氧化膦(CMPO)及其类似物活化辐射防护机制的磷核磁共振研究

P NMR study of the activated radioprotection mechanism of octylphenyl-N,N-diisobutylcarbamoylmethyl phosphine oxide (CMPO) and analogues.

作者信息

Horne Gregory P, Kiddle James J, Zarzana Christopher A, Rae Cathy, Peller Julie R, Cook Andrew R, Mezyk Stephen P, Mincher Bruce J

机构信息

Idaho National Laboratory, Center for Radiation Chemistry Research, Idaho Falls, ID, P.O. Box 1625, 83415, USA.

Western Michigan University, Department of Chemistry, Kalamazoo, MI 49008, USA.

出版信息

Dalton Trans. 2019 Aug 14;48(30):11547-11555. doi: 10.1039/c9dt01950b. Epub 2019 Jul 11.

Abstract

We report a P NMR investigation into the activated radioprotection mechanism of octylphenyl-N,N-diisobutyl-carbamoylmethyl phosphine oxide (CMPO) and analogues in the presence of a gamma radiation field. CMPO exhibits significantly enhanced radiation resistance in the presence of high nitric acid concentrations, compared to other ligands proposed for recovery of the trivalent actinides from spent nuclear fuel. The fundamental mechanism behind this activated radioprotection has been investigated using P NMR and other supporting analytical techniques (GCMS and LCMS) in conjunction with systematic gamma irradiation studies, covering solvent system formulation and structural effects through the use of the CMPO analogues, dioctylphenylphospine oxide (DOPPO) and trioctylphosphine oxide (TOPO). These experiments have demonstrated that the acid-dependent, radioprotection mechanism requires a protonated phenyl-phosphine oxide motif to activate. Further, contacting these three ligand loaded organic phases with a range of mineral acids (nitric, sulfuric, hydrochloric, and perchloric acids) shows specificity for nitric acid (HNO), and the formation of a distinct [ligand·HNO] complex for CMPO and DOPPO, as identified by P NMR, and predicted by DFT calculations. We propose that this complex is capable of sequential n-dodecane excited state quenching through the conjugated aromatic functionalities on the constituent CMPO and DOPPO molecules.

摘要

我们报告了一项关于在γ辐射场存在下,辛基苯基 - N,N - 二异丁基 - 氨基甲酰甲基氧化膦(CMPO)及其类似物的活化辐射防护机制的³¹P核磁共振研究。与其他用于从乏核燃料中回收三价锕系元素的配体相比,CMPO在高硝酸浓度存在下表现出显著增强的抗辐射性。利用³¹P核磁共振以及其他辅助分析技术(气相色谱 - 质谱联用仪和液相色谱 - 质谱联用仪),结合系统的γ辐照研究,通过使用CMPO类似物二辛基苯基氧化膦(DOPPO)和三辛基氧化膦(TOPO),研究了这种活化辐射防护背后的基本机制,研究内容涵盖溶剂体系配方以及结构效应。这些实验表明,酸依赖性辐射防护机制需要质子化的苯基氧化膦基序来激活。此外,使这三种负载配体的有机相与一系列无机酸(硝酸、硫酸、盐酸和高氯酸)接触,结果显示对硝酸(HNO₃)具有特异性,并且通过³¹P核磁共振鉴定以及密度泛函理论计算预测,CMPO和DOPPO会形成独特的[配体·HNO₃]配合物。我们提出,这种配合物能够通过组成CMPO和DOPPO分子上的共轭芳族官能团依次猝灭正十二烷激发态。

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