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采用可回收方法构建 GO 或 CNTs 表面的双金属 ZIF-衍生 Co-Ni LDHs:降低不饱和聚酯树脂气态热分解产物的毒性。

Construction of Bimetallic ZIF-Derived Co-Ni LDHs on the Surfaces of GO or CNTs with a Recyclable Method: Toward Reduced Toxicity of Gaseous Thermal Decomposition Products of Unsaturated Polyester Resin.

机构信息

State Key Laboratory of Fire Science , University of Science and Technology of China , Hefei , Anhui 230026 , PR China.

出版信息

ACS Appl Mater Interfaces. 2018 May 30;10(21):18359-18371. doi: 10.1021/acsami.8b04340. Epub 2018 May 16.

DOI:10.1021/acsami.8b04340
PMID:29732887
Abstract

This work proposed an idea of recycling in preparing Co-Ni layered double hydroxide (LDH)-derived flame retardants. A novel and feasible method was developed to synthesize CO-Ni LDH-decorated graphene oxide (GO) and carbon nanotubes (CNTs), by sacrificing bimetal zeolitic imidazolate frameworks (ZIFs). Organic ligands that departed from ZIFs were recyclable and can be reused to synthesize ZIFs. ZIFs, as transitional objects, in situ synthesized on the surfaces of GO or CNTs directly suppressed the re-stacking of the carbides and facilitated the preparation of GO@LDHs and CNTs@LDHs. As-prepared hybrids catalytically reduced toxic CO yield during the thermal decomposition of unsaturated polyester resin (UPR). What is more, the release behaviors of aromatic compounds were also suppressed during the pyrolysis process of UPR composites. The addition of GO@LDHs and CNTs@LDHs obviously inhibited the heat release and smoke emission behaviors of the UPR matrix during combustion. Mechanical properties of the UPR matrix also improved by inclusion of the carbides derivatives. This work paved a feasible method to prepare well-dispersed carbides@Co-Ni LDH nanocomposites with a more environmentally friendly method.

摘要

本工作提出了在制备 Co-Ni 层状双氢氧化物 (LDH) 衍生阻燃剂时进行回收的想法。通过牺牲双金属沸石咪唑酯骨架 (ZIFs),开发了一种新颖且可行的方法来合成 CO-Ni LDH 修饰的氧化石墨烯 (GO) 和碳纳米管 (CNTs)。从 ZIFs 中脱离的有机配体是可回收的,可重复用于合成 ZIFs。ZIFs 作为过渡物体,直接在 GO 或 CNTs 的表面原位合成,抑制了碳化物的再堆积,并有利于制备 GO@LDHs 和 CNTs@LDHs。所制备的混合物在不饱和聚酯树脂 (UPR) 的热分解过程中催化还原了有毒的 CO 产率。更重要的是,在 UPR 复合材料的热解过程中,芳香族化合物的释放行为也得到了抑制。GO@LDHs 和 CNTs@LDHs 的添加明显抑制了 UPR 基体在燃烧过程中的放热和发烟行为。包含碳化物衍生物还提高了 UPR 基体的力学性能。这项工作为用更环保的方法制备分散良好的碳化物@Co-Ni LDH 纳米复合材料铺平了道路。

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