Shams Mehnaz, Mansukhani Nikhita, Hersam Mark C, Bouchard Dermont, Chowdhury Indranil
Civil and Environmental Engineering, Washington State University, Pullman, WA, United States.
Departments of Materials Science and Engineering, Chemistry and Medicine, Northwestern University, Evanston, IL, United States.
Front Chem. 2023 Mar 3;11:1132233. doi: 10.3389/fchem.2023.1132233. eCollection 2023.
Rapid advancement in nanotechnology has led to the development of a myriad of useful nanomaterials that have novel characteristics resulting from their small size and engineered properties. In particular, two-dimensional (2D) materials have become a major focus in material science and chemistry research worldwide with substantial efforts centered on their synthesis, property characterization, and technological, and environmental applications. Environmental applications of these nanomaterials include but are not limited to adsorbents for wastewater and drinking water treatment, membranes for desalination, and coating materials for filtration. However, it is also important to address the environmental interactions and implications of these nanomaterials in order to develop strategies that minimize their environmental and public health risks. Towards this end, this review covers the most recent literature on the environmental implementations of emerging 2D nanomaterials, thereby providing insights into the future of this fast-evolving field including strategies for ensuring sustainable development of 2D nanomaterials.
纳米技术的迅速发展催生了无数有用的纳米材料,这些材料因其小尺寸和工程特性而具有新颖的特性。特别是,二维(2D)材料已成为全球材料科学和化学研究的主要焦点,大量工作集中在其合成、性能表征以及技术和环境应用方面。这些纳米材料的环境应用包括但不限于用于废水和饮用水处理的吸附剂、用于海水淡化的膜以及用于过滤的涂层材料。然而,为了制定将纳米材料对环境和公众健康的风险降至最低的策略,研究这些纳米材料与环境的相互作用及其影响也很重要。为此,本综述涵盖了有关新兴二维纳米材料环境应用的最新文献,从而深入了解这个快速发展领域的未来,包括确保二维纳米材料可持续发展的策略。