从有机金属化学到基于多功能纳米粒子的气体检测和空气污染物降解设备

M. Jakoobi, K. Fajerwerg, Myrtil L. Kahn
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摘要

和纳米材料具有前所未有的特性,目的是开发功能性创新解决方案,以应对社会挑战(图 1)。为此,我们正在采用有机金属方法合成规格齐全的纳米粒子(NPs)和纳米材料[1]。这种自下而上的方法可以在温和的反应条件和安全的设计方法[2]下,借助巧妙设计的起始分子前体,在分子水平上控制 NPs 的合成(大小、形状、胶体稳定性)。报告将重点介绍我们团队在纳米粒子和纳米材料的合成和特性方面的研究,以及将这些粒子和材料应用于气体检测设备中的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Organometallic Chemistry to Multifunctional Nanoparticle-Based Devices for Gas Detection and Degradation of Air Pollutants
and nanomaterials with unprecedented properties, with the aim of developing functional and innovative solutions to societal challenges (Figure 1). To achieve this, we are applying an organometallic approach for the synthesis of well-defined nanoparticles (NPs) and nanomaterials [1]. This bottom-up approach allows control of the NPs synthesis (size, shape, colloidal stability) on a molecular level with the help of cleverly designed starting molecular precursor(s), under mild reaction conditions and in safe-by-design approaches [2]. The presentation will focus on our team’s research related to the synthesis and properties of NPs and nanomaterials, their implementation into devices for either gas detection (i
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