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无机颗粒的液-液萃取、表面改性和无团聚处理的新进展。

New developments in liquid-liquid extraction, surface modification and agglomerate-free processing of inorganic particles.

机构信息

Department of Materials Science and Engineering, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4L7, Canada.

Department of Materials Science and Engineering, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4L7, Canada.

出版信息

Adv Colloid Interface Sci. 2018 Nov;261:15-27. doi: 10.1016/j.cis.2018.09.005. Epub 2018 Sep 27.

Abstract

This review describes new methods for the particle extraction through liquid-liquid interface (PELLI). The discovery of new surface modification techniques, advanced extractors and new adsorption mechanisms enabled novel applications of PELLI in nanotechnology of metals, quantum dots, oxides and hydroxides. Colloidal and interface chemistry of PELLI is emerging as a new area of technological and scientific interest. The progress achieved in the understanding of particle behavior and interactions at the liquid-liquid interface, phase transfer and interface reactions allowed for the development of new extraction mechanisms. An important breakthrough was the development of surface modification techniques for extraction of functional oxides. Especially important is the possibility of particle transfer from the synthesis medium to the device processing medium, which facilitates agglomerate-free processing of functional nanoparticles. Multifunctional extractor molecules were discovered and used as capping and reducing agents for particle synthesis or dispersing and charging agents for colloidal processing. The progress achieved in the development of extractors and extraction mechanisms has driven the advances in the surface modification and functionalization of materials. New PELLI techniques were used for the development of advanced materials and devices for optical, photovoltaic, energy storage, electronic, biomedical, sensor and other applications.

摘要

这篇综述描述了通过液-液界面(PELLI)进行颗粒提取的新方法。新的表面改性技术、先进的萃取剂和新的吸附机制的发现,使得 PELLI 在金属、量子点、氧化物和氢氧化物的纳米技术中有了新的应用。PELLI 的胶体和界面化学正在成为一个新的技术和科学兴趣领域。对颗粒在液-液界面的行为和相互作用、相转移和界面反应的理解方面取得的进展,为新的萃取机制的发展提供了可能。一个重要的突破是开发了用于萃取功能氧化物的表面改性技术。特别重要的是,颗粒从合成介质转移到器件处理介质的可能性,这有利于无团聚的功能纳米颗粒的处理。人们发现了多功能萃取剂分子,并将其用作颗粒合成的封端和还原剂,或胶体处理的分散和充电剂。萃取剂和萃取机制的发展取得的进展,推动了材料的表面改性和功能化的发展。新的 PELLI 技术被用于开发用于光学、光伏、储能、电子、生物医学、传感器和其他应用的先进材料和器件。

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