首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Synthesis of organo cobalt-aluminum layered double hydroxide via a novel single-step self-assembling method and its use as flame retardant nanofiller in PP
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Synthesis of organo cobalt-aluminum layered double hydroxide via a novel single-step self-assembling method and its use as flame retardant nanofiller in PP

机译:一种新颖的一步自组装法合成有机钴铝层状双氢氧化物及其在PP中的阻燃纳米填料的应用

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摘要

Synthesis of polypropylene/organo-layered double hydroxide (PP/OLDH) has been carried out based on selfassembled organocobalt-aluminum LDH (O-CoAl-LDH). The novel method of synthesizing self-assembled CoAl-LDH and its characterization have also been reported in details. This method is proven to be very efficient way of producing OLDH in a single step with homogeneous composition and structure. As flame-retardant nanofiller, O-CoAl-LDH shows significant decrease in heat release rate (HRR), the total heat release (THR) and the heat release capacity (HRC) of the PP composites, though the thermal stability of the compounds decreases slightly compared to the base polymer. Morphological analyses show that the LDH particles are dispersed in PP matrix in a partially exfoliated form. The activation energy calculation based on the Kissinger method reveals thatO-CoAl-LDHhas a positive effect on the activation energy of thermal decomposition of PP. However, in the presence of this filler, decomposition of the composites starts at an earlier stage than that of pure PP.
机译:基于自组装的有机钴铝LDH(O-CoAl-LDH)进行了聚丙烯/有机层状双氢氧化物(PP / OLDH)的合成。还已经详细报道了合成自组装CoAl-LDH的新方法及其表征。事实证明,该方法是一步生产具有相同组成和结构的OLDH的非常有效的方法。作为阻燃纳米填料,O-CoAl-LDH的PP复合材料的热释放速率(HRR),总热释放(THR)和热释放容量(HRC)显着降低,尽管化合物的热稳定性降低与基础聚合物相比形态分析表明,LDH颗粒以部分剥落的形式分散在PP基质中。基于基辛格方法的活化能计算表明,O-CoAl-LDH对PP的热分解活化能具有积极的影响。但是,在这种填料的存在下,复合材料的分解开始于纯PP分解的早期阶段。

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