Silvestri Alessandro, Criado Alejandro, Prato Maurizio
Center for Cooperative Research in Biomaterials (CIC BiomaGUNE), Basque Research and Technology Alliance (BRTA), 20014 Donostia-San Sebastián, Spain.
Faraday Discuss. 2021 Apr 1;227:383-395. doi: 10.1039/d1fd00007a. Epub 2021 Feb 24.
Since graphene was exfoliated in 2004, two-dimensional (2D) materials have received great attention due to their physical and chemical properties associated with their nanosized thickness and the correlated quantum size effect. 2D planes allow the confinement of charge carriers, heat, and photons, leading to the remarkable electronic and optical properties of these materials. The Faraday Discussion"Chemistry of 2-dimensional materials: beyond graphene" has been an incredible showcase for a variety of highly interesting contributions in the field. This conference comprised a large number of aspects of the topic: from their synthesis and the study of their optical and physical properties to their numerous applications. These concluding remarks aim to capture the recent developments in 2D materials chemistry and physics that were presented and debated during this Faraday Discussion, and more generally in the research field in recent years. Particular attention will be paid to aspects like the synthesis of the materials, their toxicity and biodegradation, and some of their major applications in catalysis, as well as Li-ion batteries, water filtration and sensing. In addition we aim to highlight future challenges that still need to be addressed.
自2004年石墨烯被剥离以来,二维(2D)材料因其与纳米尺寸厚度相关的物理和化学性质以及相关的量子尺寸效应而备受关注。二维平面允许对电荷载流子、热量和光子进行限制,从而导致这些材料具有卓越的电子和光学性质。《法拉第讨论》“二维材料的化学:超越石墨烯”为该领域各种极具趣味性的贡献提供了一个精彩的展示平台。本次会议涵盖了该主题的诸多方面:从它们的合成、光学和物理性质的研究到它们的众多应用。这些结束语旨在总结在本次法拉第讨论期间以及近年来该研究领域中所展示和讨论的二维材料化学和物理的最新进展。将特别关注材料的合成、它们的毒性和生物降解,以及它们在催化、锂离子电池、水过滤和传感等方面的一些主要应用。此外,我们旨在突出仍需解决的未来挑战。