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首页> 外文期刊>Macromolecules >Polymeric nitrons. 2. Synthesis, irradiation and waveguide mode spectroscopy of polymeric nitrons derived from polymeric benzaldehydes and N-isopropylhydroxylamine
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Polymeric nitrons. 2. Synthesis, irradiation and waveguide mode spectroscopy of polymeric nitrons derived from polymeric benzaldehydes and N-isopropylhydroxylamine

机译:聚合氮。 2.衍生自聚合苯甲醛和N-异丙基羟胺的聚合硝酮的合成,辐照和波导模式光谱

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摘要

Various vinylbenzaldehydes were prepared using the Heck reaction: 4-vinylbenzaldehyde (14), 3-vinylbenzaldehyde (15), 2-vinylbenzaldehyde (18a), 2-hydroxy-4-vinylbenzaldehyde (16) and 4-[(4-vinylbenzyl)oxy]benzaldehyde (6). The four monomers (6, 14, 15, 16) were polymerized using AIBN as initiator at 70 degreesC for 24 h to yield the corresponding homopolymers (7, 19, 23, 25) and a copolymer (20) with styrene. The molecular weights are about 10 000. The polymer analogous condensation of the aldehyde groups with an excess of N-isopropylhydroxylamine (8) at room temperature produces polymeric nitrons (9, 21, 22, 24, 26) in almost quantitative yields. All nitron functions were irradiated, and the intramolecular cyclization of the nitrons to the corresponding oxaziridines was examined. Waveguide mode spectroscopy of poly(4-vinylbenzaldehyde-N-isopropylnitron) (21) shows that the changes in film thickness are low but the changes in refractive indices are significant after irradiation. Oxaziridine 10 has high thermal stability with respect to ring opening. No structural change was detected after irradiation of the hydroxyphenyl-modified polynitron (26). A low molecular weight model compound (2-hydroxybenzaldehyde-N-methylnitron, 28) was prepared in order to examine this abnormal photochemical behavior and also showed that it is highly resistant to UV irradiation. [References: 17]
机译:使用Heck反应制备各种乙烯基苯甲醛:4-乙烯基苯甲醛(14),3-乙烯基苯甲醛(15),2-乙烯基苯甲醛(18a),2-羟基-4-乙烯基苯甲醛(16)和4-[((4-乙烯基苄基))氧基]苯甲醛(6)。使用AIBN作为引发剂,在70℃下将四种单体(6、14、15、16)聚合24小时,得到相应的均聚物(7、19、23、25)和与苯乙烯的共聚物(20)。分子量约为10000。在室温下,醛基与过量的N-异丙基羟胺(8)的聚合物类似的缩合反应以几乎定量的产率产生聚合的腈(9、21、22、24、26)。辐照所有的硝酮官能团,并检查了硝酮在分子内的环化成相应的恶唑烷。聚(4-乙烯基苯甲醛-N-异丙基硝基)(21)的波导模式光谱表明,辐照后膜厚度变化很小,但折射率变化却很明显。恶唑烷10相对于开环具有高的热稳定性。羟苯基改性的聚亚硝基辐照后未检测到结构变化(26)。制备了低分子量模型化合物(2-羟基苯甲醛-N-甲基硝基,28),以检查这种异常的光化学行为,并显示出对紫外线的高度耐受性。 [参考:17]

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