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Magnetic filed effect on sensitized photocrosslinking reaction of azidomethylated polytsyrene

机译:磁场效应对叠氮甲基化聚苯乙烯敏化光交联反应的影响

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AbstractCharacteriscs curves for the lithographic sensitivity of poly(styrene‐co‐vinylblenzyl azide) (AZMA) with such sensitizer as 2,4‐diisopentvlthioxanthone (DITX), 2‐chlorothioxanthone (CTX), and Michier's ketone wer emeasured in the basence and in the presence of a magnetic filed. By the application of a magnetic field, the get fraction increases, and efficiency of photocrosslink formation increases by ≈ 45 (at 0.1 T) for AZMA/DITX and by ≈ 20 (at 0.5 T) for AZMS/CTX. Senstization mechanism was investigated by measuring UV, IR, and FT‐IR spectra, and AZMS is found to be sensitized effectively by DITX and CTX through the triplet energy transfer, and to produce the triplet nitrene as an intermediate. The magnetic field effect on photocrosslink formation of AZMS/sensitizer systems is interpreted in term of the radical pair model of intermediate species which is formed by hydrogen abstraction of the nitrene from t
机译:摘要在碱和磁性锉存在下测量聚(苯乙烯-co-乙烯基苯基苯基叠氮化物)(AZMA)与2,4-二异戊烯硫杂蒽酮(DITX)、2-氯硫杂蒽酮(CTX)和Michier酮等敏化剂的光刻灵敏度曲线。通过施加磁场,AZMA/DITX的get分数增加,光交联形成效率提高≈45%(0.1 T时),AZMS/CTX≈20%(0.5 T时)。通过测量紫外、红外和傅里叶变换红外光谱研究了AZMS的传感机理,发现AZMS通过三重态能量转移被DITX和CTX有效敏化,并产生三重态硝烯作为中间体。磁场对AZMS/敏化剂系统光交联形成的影响用中间物质的自由基对模型来解释,中间物质是通过从t中提取亚硝烯的氢而形成的。

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