Wu Shuangyu, Peng Jian, Lee Stephanie Ling Jie, Niu Xiaoqing, Jiang Yue, Lin Sijie
College of Environmental Science and Engineering, Biomedical Multidisciplinary Innovation Research Institute, Shanghai East Hospital, Tongji University, Shanghai 200092, China.
Key Laboratory of Yangtze River Water Environment, Shanghai Institute of Pollution Control and Ecological Security, Tongji University, Shanghai 200092, China.
Eco Environ Health. 2024 Jun 29;3(4):494-504. doi: 10.1016/j.eehl.2024.06.001. eCollection 2024 Dec.
Nanotechnology and engineered nanomaterials have been at the forefront of technological breakthroughs of the 21st century. With the challenges of increasingly complex and emergent environmental pollution, nanotechnology offers exciting complementary approaches to achieve high efficiencies with low or green energy input. However, unknown and unintended hazardous effects and health risks associated with nanotechnology hinder its full-scale implementation. Therefore, the development of safer nanomaterials lies in the critical balance between the applications and implications of nanomaterials. To facilitate constructive dialogue between the two sides ( applications and implications) of the same coin, this review sets forth to summarize the current progress of the environmental applications of nanomaterials and establish the structure-property-functionality relationship. A systematic analysis of the structure-property-toxicity relationship is also provided to advocate the Safe and Sustainable-by-Design strategy for nanomaterials. Lastly, the review also discusses the future of artificial intelligence-assisted environmental health and safety-oriented development of nanomaterials.
纳米技术和工程纳米材料一直处于21世纪技术突破的前沿。面对日益复杂和新出现的环境污染挑战,纳米技术提供了令人兴奋的互补方法,能够以低能量或绿色能源输入实现高效率。然而,与纳米技术相关的未知和意外有害影响及健康风险阻碍了其全面实施。因此,开发更安全的纳米材料在于纳米材料的应用与影响之间的关键平衡。为了促进同一事物两个方面(应用与影响)之间的建设性对话,本综述旨在总结纳米材料环境应用的当前进展,并建立结构-性质-功能关系。还提供了对结构-性质-毒性关系的系统分析,以倡导纳米材料的安全与设计可持续战略。最后,本综述还讨论了人工智能辅助的面向环境健康与安全的纳米材料开发的未来。