Multilayer Thin Films on Fine Particles

S. Habibzadeh, E. Rahmani, M. Saeb, M. Ganjali, J. Chaouki
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引用次数: 3

Abstract

The tunable construction of multilayer thin-film-based particulate has opened up new horizons in materials science and led to exciting new developments in many scientific areas during the past two decades. Indeed, to utilize the synergistic properties of thin film coatings and the core particles, the thin film immobilized on fine particles can be a promising approach. The interaction between the thin films and the core fine particles results in adjustable properties of the coated particles. Therefore, such coated systems have been considered as an important class of emerging powder technology for a wide range of applications. Namely, multilayer structural features can lead to designing a highly active and selective catalytic systems. In addition, multilayer-coated nano/micro particles (NMPs) can be employed in the development of many new properties, ease of functionalization, conjugation of biomolecules, etc. Such structure with multilayer coatings can also revolutionize the energy storage and conversion systems.
细颗粒上的多层薄膜
在过去的二十年里,多层薄膜颗粒的可调结构开辟了材料科学的新领域,并在许多科学领域取得了令人兴奋的新发展。事实上,为了利用薄膜涂层和核心颗粒的协同性能,将薄膜固定在细颗粒上是一种很有前途的方法。薄膜与核心细颗粒之间的相互作用导致涂层颗粒的性能可调。因此,这种涂层系统已被认为是一类重要的新兴粉末技术,具有广泛的应用。也就是说,多层结构的特点可以导致设计一个高活性和选择性的催化体系。此外,多层包覆纳米/微粒子(NMPs)可用于开发许多新的性能,易于功能化,缀合生物分子等。这种具有多层涂层的结构也可以彻底改变能量存储和转换系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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