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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Polysiloxane Nanofibers via Surface Initiated Polymerization of Vapor Phase Reagents: A Mechanism of Formation and Variable Wettability of Fiber-Bearing Substrates
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Polysiloxane Nanofibers via Surface Initiated Polymerization of Vapor Phase Reagents: A Mechanism of Formation and Variable Wettability of Fiber-Bearing Substrates

机译:通过气相试剂的表面引发聚合的聚硅氧烷纳米纤维:含纤维基材的形成机理和可变润湿性

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摘要

A detailed study of polysiloxane nanofiber formation by surface initiated polymerization of vapor phase organotrichlorosilane reagents is presented. Substrate composition, substrate activation, reagent quantity, reaction pressure, and reaction time are parameters shown to influence nanofiber synthesis. Stepwise variation of the parameters isolates the role of each on polysiloxane nanofiber growth, and a mechanism for fiber formation is proposed based on these findings. Tunable aqueous wettability of the fibers is also demonstrated in this report, with contact angles varying from 85 degrees to 130 degrees +/- 2 degrees depending upon fiber surface density and length. Aqueous contact angles are further increased to > 150 degrees by either solution functionalization of calcined fibers or copolymerization with an organofluorosilane reagent.
机译:提出了通过气相有机三氯硅烷试剂的表面引发聚合形成聚硅氧烷纳米纤维的详细研究。底物组成,底物活化,试剂量,反应压力和反应时间是影响纳米纤维合成的参数。参数的逐步变化隔离了每种对聚硅氧烷纳米纤维生长的作用,并基于这些发现提出了纤维形成的机理。该报告还证明了纤维的可调水润湿性,接触角根据纤维表面密度和长度在85度至130度+/- 2度之间变化。通过煅烧纤维的溶液官能化或与有机氟硅烷试剂的共聚,水接触角进一步增加至> 150度。

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