Pecunia Vincenzo, Occhipinti Luigi G, Cloutier Sylvain G, Sun Shuhui, Grace Andrews Nirmala, Leong Wei Lin
School of Sustainable Energy Engineering, Simon Fraser University, 5118 - 10285 University Drive, Surrey V3T 0N1, BC, Canada.
Cambridge Graphene Centre, Department of Engineering, University of Cambridge, 9 J J Thomson Avenue, Cambridge CB3 0FA, United Kingdom.
Nanotechnology. 2023 Nov 6;35(4). doi: 10.1088/1361-6528/ad0410.
In the dynamic landscape of the Internet of Things (IoT), where smart devices are reshaping our world, nanomaterials can play a pivotal role in ensuring the IoT's sustainability. These materials are poised to redefine the development of smart devices, not only enabling cost-effective fabrication but also unlocking novel functionalities. As the IoT is set to encompass an astounding number of interconnected devices, the demand for environmentally friendly nanomaterials takes center stage. Thisspotlights cutting-edge research that explores the intersection of nanomaterials and sustainability. The collection delves deep into this critical nexus, encompassing a wide range of topics, from fundamental properties to applications in devices (e.g. sensors, optoelectronic synapses, energy harvesters, memory components, energy storage devices, and batteries), aspects concerning circularity and green synthesis, and an array of materials comprising organic semiconductors, perovskites, quantum dots, nanocellulose, graphene, and two-dimensional semiconductors. Authors not only showcase advancements but also delve into the sustainability profile of these materials, fostering a responsible endeavour toward a green IoT future.
在物联网(IoT)的动态格局中,智能设备正在重塑我们的世界,纳米材料在确保物联网的可持续发展方面可以发挥关键作用。这些材料有望重新定义智能设备的发展,不仅能够实现具有成本效益的制造,还能解锁新功能。随着物联网将涵盖数量惊人的互联设备,对环境友好型纳米材料的需求成为核心关注点。这突出了探索纳米材料与可持续性交叉领域的前沿研究。该文集深入探讨了这一关键联系,涵盖了广泛的主题,从基本特性到在设备(如传感器、光电突触、能量收集器、记忆组件、能量存储设备和电池)中的应用,关于循环利用和绿色合成的方面,以及包括有机半导体、钙钛矿、量子点、纳米纤维素、石墨烯和二维半导体在内的一系列材料。作者不仅展示了进展,还深入探讨了这些材料的可持续性概况,推动朝着绿色物联网未来的负责任努力。