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4篇 您的检索式:作者名="LIN RunXiong"
    题名 作者 年代 出处 被引量
1Synthesis and properties of novel soluble poly(aryl amine ketone)s as high-performance polymers显示文摘A series of poly(aryl amine ketone)s have been obtained by the condensation polymerization of different aromatic dibromides with different primary aromatic diamines via palladium-catalyzed aryl amination reaction. The structures of polymers are characterized by means of FT-IR, 1H NMR spectroscopy, and elemental analysis. The results show an agreement with the proposed structures. DSC and TG measurements show that polymers possess high glass transition temperature (Tg>170℃) and good thermal stability with high decomposition temperatures (TD>450℃). These novel polymers also exhibit good mechanical behaviors and good solubility.CHANG GuanJun TANG ShiZhen LUO Xuan WANG Qiang XU Zhe ZHANG Lin LIN RunXiong 2008Science China Chemistry2008,51,3:2
2显示文摘Lin Runxiong Huang Yuli 1999Polymeric Materials Science & Engineering1999,15,7:1
3Mechanical properties and crystallization of Poly(L-lactide) films with several percents of ACR nanoparticles显示文摘Ningjing Wu Meichun Ding Jianming Zhang Runxiong Lin 2012Materials Letters2012,,:1
4Heat Resistant Fluorenone-based Polyimines as Novel Light-emitting Polymers显示文摘Fluorenone-based polyamines, as novel light-emitting polymers, were synthesized by the condensation polymerization of 3,6-dibromo-9-fluorenone with different aromatic diamines by palladiumcatalyzed aryl amination reaction. The structures of the polymers were characterized by means of FT-IR, 1H NMR spectroscopy and elemental analysis. The experimental results show a good agreement with the proposed structures. TGA measurement exhibits that the polymers possess good thermal stabilities with high decomposition temperatures(T5 400 ℃). Due to the photo-induced intramolecular charge-transfer(ICT) of fluorenone-based polyimines, these polymers show significantly strong photonic luminescence in N,Ndimethylacetamide.焦娅 ZHANG Lin LIN Runxiong 2017Journal of Wuhan University of Technology(Materials Science)2017,32,2:0
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