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具有优异机械性能的抗湿性聚碳硅烷薄膜。

Moisture-insensitive polycarbosilane films with superior mechanical properties.

机构信息

Department of Materials Science and Engineering, Stanford University, 496 Lomita Mall, Durand Building, Stanford, California 94305, USA.

出版信息

ACS Appl Mater Interfaces. 2012 May;4(5):2659-63. doi: 10.1021/am300312y. Epub 2012 Apr 21.

Abstract

We report cross-linked polycarbosilane (CLPCS) films with superior mechanical properties and insensitivity to moisture. CLPCS are prepared by spin-coating and thermal curing of hexylene-bridged disilacyclobutane (DSCB) rings. The resulting films are siloxane-free and hydrophobic, and present good thermal stability and a low dielectric constant of k = 2.5 without the presence of supermicropores and mesopores. The elastic stiffness and fracture resistance of the films substantially exceed those of traditional porous organosilicate glasses because of their unique molecular structure. Moreover, the films show a remarkable insensitivity to moisture attack, which cannot be achieved by traditional organosilicate glasses containing siloxane bonds. These advantages make the films promising candidates for replacing traditional organosilicate glasses currently used in numerous applications, and for use in emerging nanoscience and energy applications that need protection from moisture and harsh environments.

摘要

我们报告了具有优异机械性能和抗湿性的交联聚碳硅烷 (CLPCS) 薄膜。CLPCS 是通过螺涂和六亚甲基桥联二硅环丁烷 (DSCB) 环的热固化制备的。得到的薄膜无硅氧烷且疏水性好,具有良好的热稳定性和低介电常数 k = 2.5,不存在超微孔和中孔。由于其独特的分子结构,薄膜的弹性刚度和抗断裂性大大超过了传统的多孔有机硅酸盐玻璃。此外,与含有硅氧烷键的传统有机硅酸盐玻璃不同,该薄膜对湿气侵蚀具有显著的不敏感性。这些优势使该薄膜有望取代目前在众多应用中使用的传统有机硅酸盐玻璃,并用于新兴的纳米科学和能源应用,这些应用需要防止湿气和恶劣环境的影响。

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