化学视角下的AI驱动跨学科融合:机遇、路径与挑战OA
AI-driven interdisciplinary integration from a chemical perspective:opportunities,pathways,and challenges
随着全球经济的发展,现代化和城市化进程不断加快,各种各样的全球性问题接踵而至,环境、气候和医疗等诸多领域的研究面临着越来越多的挑战,单一学科的知识无法系统地解决这些错综复杂的问题.近年来,人工智能(AI)技术飞速发展,作为科学研究的核心学科,将AI技术应用于化学研究在打破学科界限、促进多学科融合方面以及解决各种全球性问题上展现出了极大的潜力.本文回顾了近 10年关于 AI辅助化学研究——"AI+Chem"应用的文献进展,系统介绍了AlphaFold、SynthReader、dZiner和AlphaFlow等在化学领域内适应应用场景的系统或模型,从阅读并深度学习和分析文献、设计合成路线到自主开展实验,探讨了通过构建跨学科实时融合平台和动态知识图谱来打破学科壁垒的机制,并进一步分析了AI+Chem+多学科协同创新路径存在的机遇和挑战.当前,不论是AI+Chem还是AI+Chem+多学科的研究都还是处于起步阶段,已有的初步研究表明,AI技术极可能是打破学科壁垒、连接知识孤岛的一个强有力工具,也为解决错综复杂的全球问题提供了极大的可能,而工具的发挥和问题的解决还需要所有科研工作者们一起探索.
As the global economy evolves,modernization and urbanization accelerate and various global problems followed.Research in many fields,such as environment,climate and healthcare,is facing increasing challenges.These problems are too complex to be systematically solved by a single discipline.In recent years,artificial intelligence(AI)technology has developed rapidly,as the core discipline of scientific research,when AI technology is applied into chemistry research,great potential will be shown in breaking disciplinary boundaries,promoting multidisciplinary integration and solving various global problems.This paper systematically reviews a number of literatures in the field of AI in the past decade,introduces some AI systems or models that have been applied to various application scenarios in the field of chemistry,such as AlphaFold,SynthReader,dZiner,and AlphaFlow,from reading,deeply learning and analyzing literature,designing synthesis routes,to conducting experiments independently.It predicts and discusses the mechanism of breaking down disciplinary barriers by building an interdisciplinary real-time fusion platform and dynamic knowledge graph,as well as the future path of AI assisted chemical research—"AI+Chem"and other disciplines.It also analyzes and looks forward to the possible development direction of AI and its challenges.At present,whether it is AI+Chem or AI+Chem+multidisciplinary research is still in its infancy,preliminary research has shown that AI technology is very likely to be a powerful tool to break down disciplinary barriers and connect knowledge islands,and also provides great possibilities for solving complex global problems,and the play of tools and problem solving still need to be explored by all scientific researchers.
陈欣;刘怡帆;黄嘉莉;彭浩南
陕西师范大学化学化工学院,陕西 西安 710119陕西师范大学化学化工学院,陕西 西安 710119陕西师范大学化学化工学院,陕西 西安 710119陕西师范大学化学化工学院,陕西 西安 710119
社会科学
化学研究人工智能跨学科融合AI+ChemAI+Chem+多学科
chemical researchartificial intelligenceinterdisciplinaryAI+ChemAI+Chem+multidisciplinary
《首都师范大学学报(自然科学版)》 2026 (3)
1-13,13
国家重点研发计划项目(2022YFA1205501)国家自然科学基金项目(22272101)高校学科人才引进计划项目(B14041)中央高校基础研究基金项目(GK202501003)
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