Loughney Patricia A, Cuillier Paul, Pruyn Timothy L, Doan-Nguyen Vicky
Materials Science and Engineering The Ohio State University Columbus OH43212 USA.
Materials and Manufacturing Directorate Air Force Research Laboratory Wright-Patterson Air Force Base OH45433 USA.
J Appl Crystallogr. 2024 Jun 18;57(Pt 4):945-954. doi: 10.1107/S1600576724003133. eCollection 2024 Aug 1.
Polymer-derived ceramics (PDCs) remain at the forefront of research for a variety of applications including ultra-high-temperature ceramics, energy storage and functional coatings. Despite their wide use, questions remain about the complex structural transition from polymer to ceramic and how local structure influences the final microstructure and resulting properties. This is further complicated when nanofillers are introduced to tailor structural and functional properties, as nanoparticle surfaces can interact with the matrix and influence the resulting structure. The inclusion of crystalline nanofiller produces a mixed crystalline-amorphous composite, which poses characterization challenges. With this study, we aim to address these challenges with a local-scale structural study that probes changes in a polysiloxane matrix with incorporated copper nanofiller. Composites were processed at three unique temperatures to capture mixing, pyrolysis and initial crystallization stages for the pre-ceramic polymer. We observed the evolution of the nanofiller with electron microscopy and applied synchrotron X-ray diffraction with differential pair distribution function (d-PDF) analysis to monitor changes in the matrix's local structure and interactions with the nanofiller. The application of the d-PDF to PDC materials is novel and informs future studies to understand interfacial interactions between nanofiller and matrix throughout PDC processing.
聚合物衍生陶瓷(PDC)在包括超高温陶瓷、能量存储和功能涂层等多种应用的研究中处于前沿地位。尽管它们被广泛使用,但关于从聚合物到陶瓷的复杂结构转变以及局部结构如何影响最终微观结构和所得性能的问题仍然存在。当引入纳米填料以调整结构和功能特性时,情况会更加复杂,因为纳米颗粒表面可以与基体相互作用并影响所得结构。包含结晶纳米填料会产生混合的结晶 - 非晶复合材料,这带来了表征挑战。通过这项研究,我们旨在通过局部尺度的结构研究来应对这些挑战,该研究探测了含有铜纳米填料的聚硅氧烷基体中的变化。复合材料在三个独特的温度下进行加工,以捕捉预陶瓷聚合物的混合、热解和初始结晶阶段。我们用电子显微镜观察了纳米填料的演变,并应用同步加速器X射线衍射和差分对分布函数(d - PDF)分析来监测基体局部结构的变化以及与纳米填料的相互作用。d - PDF在PDC材料中的应用是新颖的,并为未来研究理解整个PDC加工过程中纳米填料与基体之间的界面相互作用提供了信息。