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Properties of ultrahigh-Tg chromophoric polyimides and polyureas as high-performance nonlinear optical materials: architecture-processing-temporal stability relationships

机译:超高Tg发色聚酰亚胺和聚脲作为高性能非线性光学材料的性质:结构-处理-时间稳定性关系

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Abstract: Three complementary approaches to the construction of electric field polable high-Tg (glass transition temperature) polyimides and polyureas as second-order NLO materials are discussed. In the first approach, copolymerization of bismaleimides with o,o$PRM@- diallylbisphenol A followed by functionalization with high-$beta NLO chromophores using a Mitsunobu procedure yields, after poling and curing, a series of heavily crosslinked chromophoric polyimides with Tg values as high as approximately 260$DGR@C and $chi$+(2)$/ responses as high as 1.0 $MUL 10$+$MIN@7$/ esu (42 pm/V at $lambda$-o$/ $EQ 1064 nm, 1.17 eV). In the second two approaches, copolymerization of the chromophore 4,5-bis(4$PRM@aminophenyl)-2-(4'-nitrophenyl)imidazole with bismaleimides or diisocyanates yields polyimides and polyureas with Tg values as high as 292$DGR@C and partially resonant $chi$+(2)$/ values as high as 0.62 $MUL 10$+$MIN@7$/ esu (25 pm/V at $lambda$-o$/ $EQ 1064 nm). It is found that careful attention to the details of curing and crosslinking during poling results in NLO-active matrices exhibiting negligible decay in $chi$+(2)$/ on aging in air at 100$DGR@C for periods of 1000 - 4000 h. The imidazole- based materials exhibit only approximately 10% $chi$+(2)$/ decay on aging for 100 h at 200$DGR@C under N$-2$/. !44
机译:摘要:讨论了构建电场可极化的高Tg(玻璃化转变温度)聚酰亚胺和聚脲作为二阶NLO材料的三种补充方法。在第一种方法中,双马来酰亚胺与o,o $ PRM @-二烯丙基双酚A的共聚,然后使用Mitsunobu程序与高价ββNLO发色团进行官能化,经过极化和固化后,产生了一系列重交联的发色聚酰亚胺,其Tg值为高达约260 $ DGR @ C和$ chi $ +(2)$ /响应高达1.0 $ MUL 10 $ + $ MIN @ 7 $ / esu(42 pm / V at $ lambda $ -o $ / $ EQ 1064 nm,1.17 eV)。在后两种方法中,将发色团4,5-双(4 $ PRM @氨基苯基)-2-(4'-硝基苯基)咪唑与双马来酰亚胺或二异氰酸酯共聚可得到Tg值高达292 $ DGR @的聚酰亚胺和聚脲。 C和部分共振的$ chi $ +(2)$ /值高达0.62 $ MUL 10 $ + $ MIN @ 7 $ / esu(25 pm / V at $ lambda $ -o $ / $ EQ 1064 nm)。发现在极化过程中仔细注意固化和交联的细节会导致NLO活性基质在空气中在100 $ DGR @ C老化1000-4000时,$ chi $ +(2)$ /的衰减可忽略不计。 H。基于咪唑的材料在N $ -2 $ /下在200 $ DGR @ C老化100h时仅表现出约10%的ch $ +(2)$ /衰减。 !44

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