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首页> 外文期刊>Journal of the European Ceramic Society >Phase separation induced macroporous SiOC ceramics derived from polysiloxane
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Phase separation induced macroporous SiOC ceramics derived from polysiloxane

机译:相分离诱导的聚硅氧烷衍生的大孔SiOC陶瓷

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摘要

Macroporous SiOC ceramics have been fabricated through crosslinking and pyrolysis of a two-component polysiloxane (PSO) precursor consisting polyhydrosiloxane (PHMS) and tetravinylcycletetrasiloxane (D(4)Vi) utilizing phase separation of linear polydimethylsiloxane (PDMS) in PSO. The crosslinking of PSO is initiated by Pt-catalyzed hydrosilylation between PHMS and D(4)Vi concurrently; and at the meantime phase separation also occurs, forming PSO-rich and PDMS-rich phases. The morphology of PDMS phase in the obtained PSO/PDMS gel can be easily tailored from isolated phase to continuous phase by tuning the initial PDMS concentration. Subsequent pyrolysis treatment yields macroporous SiOC ceramics in which pores arise from thermal depolymerization and evaporation of the PDMS phase. The obtained SiOC ceramics possess controllable morphologies with closed-pores structure, worm-like continuous structure or stacking-particulates structure, which perfectly resembles the morphology of respective PSO/PDMS gel. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过在PSO中使用线性聚二甲基硅氧烷(PDMS)的相分离,通过交联和热解由聚氢硅氧烷(PHMS)和四乙烯基环四硅氧烷(D(4)Vi)组成的双组分聚硅氧烷(PSO)前体来制造大孔SiOC陶瓷。 PSO的交联由PHMS和D(4)Vi之间的Pt催化氢化硅烷化同时引发;同时也会发生相分离,形成富含PSO和PDMS的相。通过调整初始PDMS浓度,可以轻松地将获得的PSO / PDMS凝胶中PDMS相的形态从分离相变为连续相。随后的热解处理产生大孔的SiOC陶瓷,其中的孔由于热解聚和PDMS相的蒸发而产生。所获得的SiOC陶瓷具有可控制的形态,具有闭合的孔结构,蠕虫状的连续结构或堆积的颗粒结构,完全类似于各自的PSO / PDMS凝胶的形态。 (C)2014 Elsevier Ltd.保留所有权利。

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