Purbia Rahul, Paria Santanu
Interfaces and Nanomaterials Laboratory, Department of Chemical Engineering, National Institute of Technology, Rourkela-769008, India.
Nanoscale. 2015 Dec 21;7(47):19789-873. doi: 10.1039/c5nr04729c. Epub 2015 Nov 16.
Core/shell nanoparticles were first reported in the early 1990s with a simple spherical core and shell structure, but the area is gradually diversifying in multiple directions such as different shapes, multishells, yolk/shell etc., because of the development of different new properties of the materials, which are useful for several advanced applications. Among different sub-areas of core/shell nanoparticles, yolk/shell nanoparticles (YS NPs) have drawn significant attention in recent years because of their unique properties such as low density, large surface area, ease of interior core functionalization, a good molecular loading capacity in the void space, tunable interstitial void space, and a hollow outer shell. The YS NPs have better properties over simple core/shell or hollow NPs in various fields including biomedical, catalysis, sensors, lithium batteries, adsorbents, DSSCs, microwave absorbers etc., mainly because of the presence of free void space, porous hollow shell, and free core surface. This review presents an extensive classification of YS NPs based on their structures and types of materials, along with synthesis strategies, properties, and applications with which one would be able to draw a complete picture of this area.
核/壳纳米粒子最早于20世纪90年代初被报道,具有简单的球形核壳结构,但由于材料不同新特性的发展,该领域正逐渐在多个方向上多样化,如不同形状、多层壳、蛋黄/壳等,这些特性对多种先进应用很有用。在核/壳纳米粒子的不同子领域中,蛋黄/壳纳米粒子(YS NPs)近年来因其独特的性质而备受关注,如低密度、大表面积、易于对内部核进行功能化、在空隙空间中良好的分子负载能力、可调节的间隙空隙空间以及中空的外壳。在包括生物医学、催化、传感器、锂电池、吸附剂、染料敏化太阳能电池、微波吸收剂等在内的各个领域,YS NPs比简单的核/壳或中空纳米粒子具有更好的性能,这主要是由于存在自由空隙空间、多孔中空壳和自由的核表面。本文综述基于YS NPs的结构和材料类型进行了广泛分类,并介绍了其合成策略、性质和应用,以便读者能够全面了解该领域。