Tripathy Suraj Prakash, Subudhi Satyabrata, Ray Asheli, Behera Pragyandeepti, Parida Kulamani
Centre for Nanoscience and Nanotechnology, S'O'A deemed to be university, Bhubaneswar, Odisha, Pin-751030, India.
Dalton Trans. 2022 Apr 5;51(14):5352-5366. doi: 10.1039/d1dt04380c.
Janus nanoparticles (JNPs) with dual segments comprising chemically distinct compositions have garnered the attention of researchers in the past few years. The combination of different materials with diversified morphology, topology, and distinct physico-chemical characteristics into the single Janus nanocrystal has yielded multifarious capabilities for a myriad of emerging applications involving catalysis, gas separation, electro-catalysis, adsorption and energy storage. However, the traditional Janus entities significantly lack the need for populous active sites and high surface area. To overcome the textural hurdles and improve the functionalities of JNPs, porous MOFs were eventually introduced into Janus particles. MOFs are well endowed with varied pore apertures, structures, large surface areas and tailored characteristics, making them potentially invaluable for Janus fabrication. Depending upon the usage, MOFs can be explored to design Metal@MOF, polymetalic@MOF, MOF@MOF and MOF-derived JNPs. In this regard, we have represented a holistic summarization of the design, synthesis and emerging applications of a rising class of multi-functionalized MOF-based Janus nanomaterials. Moreover, this article will significantly aid researchers with a vision of creating dual-composition porous nanomaterials as the MOF-based Janus nanoparticles is at infancy.
由化学组成不同的双段组成的Janus纳米颗粒(JNPs)在过去几年中引起了研究人员的关注。将具有多样化形态、拓扑结构和独特物理化学特性的不同材料组合到单个Janus纳米晶体中,为涉及催化、气体分离、电催化、吸附和能量存储等众多新兴应用带来了多种功能。然而,传统的Janus实体明显缺乏大量活性位点和高比表面积。为了克服结构障碍并改善JNPs的功能,最终将多孔金属有机框架(MOFs)引入Janus颗粒中。MOFs具有各种孔径、结构、大比表面积和定制特性,使其在Janus制备中具有潜在的重要价值。根据用途,MOFs可用于设计金属@MOF、多金属@MOF、MOF@MOF和MOF衍生的JNPs。在这方面,我们对一类新兴的多功能MOF基Janus纳米材料的设计、合成和新兴应用进行了全面总结。此外,由于基于MOF的Janus纳米颗粒尚处于起步阶段,本文将极大地帮助研究人员创建双组分多孔纳米材料。