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首页> 外文期刊>Journal of Materials Science >Sepiolite-PAN intercalation used as Si3N4 forming precursor
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Sepiolite-PAN intercalation used as Si3N4 forming precursor

机译:海泡石-PAN插层用作形成Si3N4的前体

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摘要

Silicon nitride (Si3N4) formation was investigated using sepiolite and polyacrylonitrile as silicon and carbon source, respectively. It was found that purified sepiolite could readily adsorb a sufficient amount of acrylonitrile (AN) reagent without pre-treatment. Polymerisation of sepiolite-AN mixtures and subsequent cyclization of the polymerised complex yielded a precursor, which was found ideal as a starting material in carbothermal reduction-nitridation (CRN) for the formation of silicon nitride powders. The quantity of silicon nitride, grain size and morphology were found to be dependent on the reaction conditions and starting reagent. Fine grain size, high surface area (up to approx. 12.4 m2/g) powders of mainly β-Si3N4 were obtained via pyrolysis of sepiolite-PAN complex after 4 h heating at 1400°C in 1000 ml/min nitrogen flow with a heating rate of 300°C/h. Mg retained in the molecular structure of the mineral must have promoted the formation of β-grains in CRN process.
机译:以海泡石和聚丙烯腈为硅和碳源分别研究了氮化硅(Si3 N4 )的形成。发现纯化的海泡石无需预处理即可容易地吸附足够量的丙烯腈(AN)试剂。海泡石-AN混合物的聚合反应和随后聚合产物的环化反应产生了一种前驱体,被发现是理想的碳热还原-氮化(CRN)起始原料,用于形成氮化硅粉末。发现氮化硅的量,晶粒尺寸和形态取决于反应条件和起始试剂。海泡石-PAN络合物在4℃加热4 h进行热解后,制得了以β-Si3 N4 为主的细晶粒,高表面积粉末(最高约12.4 m2 / g)。在氮气流量为1000 ml / min的情况下以1400°C的速度加热300°C / h。保留在矿物分子结构中的Mg必须在CRN过程中促进了β晶粒的形成。

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