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通过热机械分析和原位温度辅助小角 X 射线散射研究聚碳酸酯修饰的气相二氧化硅纳米复合材料的结构和热稳定性。

Structural and Thermal Stability of Polycarbonate Decorated Fumed Silica Nanocomposite via Thermomechanical Analysis and In-situ Temperature Assisted SAXS.

机构信息

Deakin University, Institute for Frontier Materials (IFM), Geelong, Australia.

Department of Materials Engineering, Defence Institute of Advanced Technology, Ministry of Defence, Girinagar, Pune, 411025, India.

出版信息

Sci Rep. 2017 Aug 9;7(1):7706. doi: 10.1038/s41598-017-08122-7.

Abstract

The inorganic and organic nanocomposites have enticed wide interest in the field of polymer-based composite systems to augment their physiochemical properties like mechanical strength and electrical conductivity. Achieving interfacial interaction between inorganic filler and polymer matrix is a recurring challenge, which has significant implications for mechanical properties of nanocomposites. In this context, the effect of "interfacial zone" on structural and thermal attributes of the melt blended pristine polycarbonate and polycarbonate (PC) decorated fumed silica nanocomposite have been examined from ambient temperature to the glass transition temperature. Thermomechanical characterization and in-situ temperature assisted small angle X-ray scattering technique (SAXS) were used for contemplating quantitative and qualitative molecular dynamics of developed nanocomposites. Though, the FT-IR spectra have demonstrated some extent of interaction between inorganic and organic groups of composite, the reduced glass transition temperature and storage modulus was ascertained in DMA as well as in DSC, which has been further confirmed by in-situ temperature assisted SAXS. It is envisioned that the utilization of in-situ SAXS in addition to the thermomechanical analysis will render the qualitative and quantitative details about the interfacial zone and its effect on thermal and mechanical properties of nanocomposite at varying temperature conditions.

摘要

无机-有机纳米复合材料在聚合物基复合材料系统领域引起了广泛的兴趣,以提高其物理化学性质,如机械强度和电导率。实现无机填料和聚合物基体之间的界面相互作用是一个反复出现的挑战,这对纳米复合材料的力学性能有重大影响。在这方面,从环境温度到玻璃化转变温度,研究了“界面区”对熔融共混原始聚碳酸酯和聚碳酸酯(PC)修饰的气相二氧化硅纳米复合材料的结构和热性能的影响。热机械特性和原位温度辅助小角 X 射线散射技术(SAXS)用于考虑所开发纳米复合材料的定量和定性分子动力学。尽管 FT-IR 光谱已经证明了复合材料的无机和有机基团之间存在一定程度的相互作用,但 DMA 和 DSC 中的玻璃化转变温度和储能模量降低得到了证实,原位温度辅助 SAXS 也进一步证实了这一点。可以预见的是,除了热机械分析之外,原位 SAXS 的使用将提供关于界面区及其对纳米复合材料在不同温度条件下的热性能和力学性能的定性和定量细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/722b/5550471/15490c578082/41598_2017_8122_Fig1_HTML.jpg

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