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海胆状微/纳米粒子的制备进展

Progress in Preparation of Sea Urchin-like Micro-/Nanoparticles.

作者信息

Ma Ruijing, Xiang Liqin, Zhao Xiaopeng, Yin Jianbo

机构信息

Smart Materials Laboratory, Department of Applied Physics, School of Physical Science and Technology, Northwestern Polytechnical University, Xi'an 710129, China.

Department of Physics and Electronic Engineering, Yuncheng University, Yuncheng 044000, China.

出版信息

Materials (Basel). 2022 Apr 13;15(8):2846. doi: 10.3390/ma15082846.

Abstract

Urchin-like microparticles/nanoparticles assembled from radial nanorods have a good appearance and high specific surface area, providing more exposed active sites and shortening the diffusion path of photoexcited carriers from the interior to the surface. The interfacial interaction and physical and chemical properties of the materials can be improved by the interfacial porous network induced by interlacing nano-branches. In addition, multiple reflections of the layered microstructure can absorb more incident light and improve the photocatalytic performance. Therefore, the synthesis and functionalization of three-dimensional urchin-like nanostructures with controllable size, shape, and hierarchy have attracted extensive attention. This review aims to provide an overview to summarize the structures, mechanism, and application of urchin-like microparticles/nanoparticles derived from diverse synthesis methods and decoration types. Firstly, the synthesis methods of solid urchin-like micro-/nanoparticles are listed, with emphasis on the hydrothermal/solvothermal method and the reaction mechanism of several typical examples. Subsequently, the preparation method of composite urchin-like micro-/nanoparticles is described from the perspective of coating and doping. Then, the research progress of urchin-like hollow microspheres is reviewed from the perspective of the step-by-step method and synchronous method, and the formation mechanism of forming urchin-like hollow microspheres is discussed. Finally, the application progress of sea urchin-like particles in the fields of photocatalysis, electrochemistry, electromagnetic wave absorption, electrorheological, and gas sensors is summarized.

摘要

由径向纳米棒组装而成的海胆状微粒/纳米粒子具有良好的外观和高比表面积,提供了更多暴露的活性位点,并缩短了光激发载流子从内部到表面的扩散路径。由交错纳米分支诱导的界面多孔网络可以改善材料的界面相互作用以及物理和化学性质。此外,层状微结构的多次反射可以吸收更多的入射光并提高光催化性能。因此,尺寸、形状和层级可控的三维海胆状纳米结构的合成与功能化引起了广泛关注。本综述旨在概述总结源自不同合成方法和修饰类型的海胆状微粒/纳米粒子的结构、机理及应用。首先,列出了固态海胆状微/纳米粒子的合成方法,重点介绍了水热/溶剂热法及几个典型例子的反应机理。随后,从包覆和掺杂的角度描述了复合海胆状微/纳米粒子的制备方法。然后,从分步法和同步法的角度综述了海胆状空心微球的研究进展,并讨论了形成海胆状空心微球的形成机理。最后,总结了海胆状粒子在光催化、电化学、电磁波吸收、电流变和气体传感器等领域的应用进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27c9/9029352/3e3808d55be1/materials-15-02846-g001.jpg

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