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Featured researches published by Yang Junxiao.


Journal of Materials Chemistry | 2012

Aluminum–organophosphorus hybrid nanorods for simultaneously enhancing the flame retardancy and mechanical properties of epoxy resin

Ma Jiajun; Yang Junxiao; Huang Yawen; Cao Ke

New aluminum–organophosphorus hybrid nanorods (AOPH-NR) have been prepared by reacting aluminum hydroxide (ATH) with dibenzylphosphinic acid (DBPA) with aluminum hydroxide (ATH) and used to prepare nanocomposites with epoxy resin. In order to determine the structure–property relationship of these composites, several other phosphinic acids of the general formula (R(CH2)n)2POOH (R = ester, allyl, nitrile, n = 1 or 2), and corresponding AOPHs were synthesized. FTIR, Raman, TGA, and XRD examinations showed that only AOPH-NR possesses a highly hybrid structure and high thermostability. SEM and TEM confirmed the nanorod morphology of AOPH-NR. The formation mechanism can be described as a decomposing–reforming process. This characteristic causes AOPH-NR to exhibit superior properties. Limiting oxygen index (LOI) determination and cone calorimeter analysis showed that the incorporation of only 4.25 wt% AOPH-NR remarkably improved the LOI value to as much as 28.0 and led to a 23% reduction in peak heat release rate (PHRR). Dynamic mechanical analysis (DMA) indicated that the mechanical properties of epoxy resin were also improved by incorporating AOPH-NR. In this way, the aluminum–organophosphorus hybridization via reacting ATH with specific organophosphinic acids shows promise as a means of improving flame retardancy and mechanical properties simultaneously. The thermal and anti-flaming properties of composites, combined with the properties of AOPHs, allowed us to discover the important role that the release and migration of phosphorus species plays in fire-retarding materials. This provides a new insight into the design of high-performance flame retardants.


Archive | 2013

Method for preparing phosphorus silicate hybridization flame retardant from organic silicon waste liquid

Cao Ke; Song Shiqiang; Yang Junxiao; Huang Yawen; Chang Guanjun; Yang Yu


Archive | 2014

Preparation method and application of lauramide concrete foaming agent

Liu Cailin; Zhang Yurong; Ren Xianyan; Yang Haijun; Yang Junxiao


Archive | 2013

N-substituted bisindole compound and preparation method thereof

Chang Guanjun; Yang Li; Yang Junxiao; Huang Yawen; Cao Ke; Lin Run-xiong; Zhang Lin


Archive | 2013

Benzocyclobutene polycarbosilane polymeric monomer or resin and preparation method thereof

Huang Yawen; Zhang Shengbo; Yang Junxiao; Li Xian; Fan Li


Archive | 2013

Alkyl-substituted disilane and preparation method thereof

Yang Junxiao; Liu Tianyang; Cao Ke; Huang Yawen


Archive | 2013

Benzocyclobutene silicone oil resin and preparation method thereof

Yang Junxiao; Li Huiling; Huang Yawen; Cao Ke


Archive | 2013

Method for preparing nano silver/polystyrene composite material by microemulsion polymerization

Liu Cailin; Li Junjiang; Yang Haijun; Ren Xianyan; Yang Junxiao


Archive | 2017

Hyper-branched heat-crosslinked polycarbosilane benzocyclobutene resin and preparation method thereof

Li Xian; Yang Junxiao; Zhong Nan; Fan Li; Hu Huan; Huang Yawen


Archive | 2017

Preparation method of ultra-low dielectric nano-composite polymer material

Huang Yawen; Yang Junxiao; Wei Xiaonan

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Huang Yawen

Southwest University of Science and Technology

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Cao Ke

Southwest University of Science and Technology

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Chang Guanjun

Qingdao University of Science and Technology

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Liu Cailin

Southwest University of Science and Technology

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Lin Run-xiong

Qingdao University of Science and Technology

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Zhang Lin

China Academy of Engineering Physics

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Li Bo

China Academy of Engineering Physics

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Liu Meifang

China Academy of Engineering Physics

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Ma Jiajun

Southwest University of Science and Technology

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Zhang Zhanwen

China Academy of Engineering Physics

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