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Desorption electrospray ionisation mass spectrometry of stabilised polyesters reveals activation of hindered amine light stabilisers

机译:稳定聚酯的解吸电喷雾电离质谱显示受阻胺光稳定剂的活化

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摘要

The use of hindered amine light stabilizers (HALS) to retard thermo- and photo-degradation of polymers has become increasingly common. Proposed mechanisms of polymer stabilisation involve significant changes to the HALS chemical structure; however, reports of the characterisation of these modified chemical species are limited. To better understand the fate of HALS and determine their in situ modifications, desorption electrospray ionisation mass spectrometry (DESI-MS) was employed to characterise ten commercially available HALS present in polyester-based coil coatings. TINUVIN® 770, 292, 144, 123, 152, and NOR371; HOSTAVIN® 3052, 3055, 3050, and 3058 were separately formulated with a pigmented, thermosetting polyester resin, cured on metal at 262 C and analysed directly by DESI-MS. High-level ab initio molecular orbital theory calculations were also undertaken to aid the mechanistic interpretation of the results. For HALS containing N-substituted piperidines (i.e., N-CH3, N-C(O)CH3, and N-OR) a secondary piperidine (N-H) analogue was detected in all cases. The formation of these intermediates can be explained either through hydrogen abstraction based mechanisms or direct N-OR homolysis with the former dominant under normal service temperatures (ca. 25-80 C), and the latter potentially becoming competitive under the high temperatures associated with curing (ca. 230-260 C). © 2013 Elsevier Ltd. All rights reserved.
机译:使用受阻胺光稳定剂(HALS)来阻止聚合物的热降解和光降解已变得越来越普遍。拟议的聚合物稳定机制涉及HALS化学结构的显着变化。但是,有关这些改性化学物质的表征的报道十分有限。为了更好地了解HALS的命运并确定其原位修饰,采用了脱附电喷雾电离质谱(DESI-MS)来表征聚酯基卷材涂料中存在的十种商用HALS。 TINUVIN®770、292、144、123、152和NOR371;将HOSTAVIN®3052、3055、3050和3058与着色的热固性聚酯树脂分别配制,在262°C的金属上固化,然后直接通过DESI-MS分析。还进行了高级从头计算分子轨道理论的计算,以帮助对结果进行机械解释。对于包含N-取代的哌啶(即N-CH3,N-C(O)CH3和N-OR)的HALS,在所有情况下均检测到仲哌啶(N-H)类似物。这些中间体的形成可以通过基于氢提取的机理或直接的N-OR均解来解释,在正常使用温度下(约25-80 C),前者占主导地位,而后者在与固化相关的高温下可能具有竞争力。 (约230-260℃)。 ©2013 ElsevierLtd。保留所有权利。

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