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解吸电喷雾电离质谱揭示受阻胺光稳定剂原位发生直接 N-O 键断裂导致的修饰。

Desorption electrospray ionisation mass spectrometry reveals in situ modification of a hindered amine light stabiliser resulting from direct N-OR bond cleavage.

机构信息

ARC Centre of Excellence for Free Radical Chemistry and Biotechnology, School of Chemistry, University of Wollongong, Wollongong, NSW 2522, Australia.

出版信息

Analyst. 2011 Mar 7;136(5):904-12. doi: 10.1039/c0an00656d. Epub 2010 Dec 13.

Abstract

Detection and characterisation of structural modifications of a hindered amine light stabiliser (HALS) directly from a polyester-based coil coating have been achieved by desorption electrospray ionisation mass spectrometry (DESI-MS) for the first time. In situ detection is made possible by exposing the coating to an acetone vapour atmosphere prior to analysis. This is a gentle and non-destructive treatment that allows diffusion of analyte to the surface without promoting lateral migration. Using this approach a major structural modification of the HALS TINUVIN®123 (bis(1-octyloxy-2,2,6,6-tetramethyl-4-piperidyl) sebacate) was discovered where one N-ether piperidine moiety (N-OC(8)H(17)) is converted to a secondary piperidine (N-H). With the use of 2-dimensional DESI-MS imaging the modification was observed to arise during high curing temperatures (ca. 260 °C) and under simulated physiological conditions (80 °C, full solar spectrum). It is proposed that the secondary piperidine derivative is a result of a highly reactive aminyl radical intermediate produced by N-O homolytic bond cleavage. The nature of the bond cleavage is also suggested by ESR spin-trapping experiments employing α-phenyl-N-tert-butyl nitrone (PBN) in toluene at 80 °C. The presence of a secondary piperidine derivative in situ and the implication of N-OR competing with NO-R bond cleavage suggest an alternative pathway for generation of the nitroxyl radical-an essential requirement in anti-oxidant activity that has not previously been described for the N-ether sub-class of HALS.

摘要

首次通过解吸电喷雾电离质谱(DESI-MS)实现了受阻胺光稳定剂(HALS)的结构修饰的直接检测和特征化,该 HALS 直接来自聚酯基卷钢涂料。通过在分析之前将涂层暴露于丙酮蒸气气氛中,可以实现原位检测。这是一种温和且非破坏性的处理方法,允许分析物扩散到表面而不会促进横向迁移。使用这种方法,发现 HALS TINUVIN®123(双(1-辛氧基-2,2,6,6-四甲基-4-哌啶基)癸二酸酯)的主要结构修饰,其中一个 N-醚哌啶部分(N-OC(8)H(17))被转化为仲哌啶(N-H)。通过使用二维 DESI-MS 成像,观察到在高固化温度(约 260°C)和模拟生理条件(80°C,全太阳光谱)下发生修饰。据推测,仲哌啶衍生物是由 N-O 均裂键裂解产生的高反应性氨自由基中间体的结果。ESR 自旋捕获实验也表明了键裂解的性质,该实验在 80°C 的甲苯中使用α-苯基-N-叔丁基硝酮(PBN)进行。仲哌啶衍生物的存在以及 N-OR 与 NO-R 键裂解竞争的暗示表明,生成氮氧自由基的替代途径是抗氧化剂活性的基本要求,这在以前的 HALS 的 N-醚亚类中没有描述过。

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