2D Materials? (2DM) aims to curate the most significant and cutting-edge research being undertaken in the field of two-dimensional materials science and engineering. Serving an expanding multidisciplinary community of researchers and technologists, our goal is to develop a selective journal dedicated to bringing together the most important new results and perspectives from across the discipline. Submissions should be essential reading for a particular sub-field and should also be of multidisciplinary interest to the wider community, with the expectation that published work will have significant impact.Submissions that do not meet 2DM's strict acceptance criteria may be transferred at the discretion of the journal's editors (with author approval) to other relevant journals in the IOP portfolio, for further consideration.2DM is a multidisciplinary journal devoted to publishing original research of the highest quality and impact covering all aspects of two-dimensional materials, including fundamental properties (experiments, theory and simulations), novel applications (electrical, mechanical, chemical and biomedical) and synthesis/fabrication techniques. Specific materials of interest will include, but are not limited to:Graphene and graphene-derived materials (such as graphene oxides, graphene quantum dots etc)Silicene and germanene/silicane and germananeBoron nitrideTransition metal dichalcogenidesTwo-dimensional topological insulatorsComplex oxidesComposite materialsOther novel two-dimensional layered structuresIn addition to publishing research articles that report urgent breakthrough results of significant importance to the field of two-dimensional materials, this journal also publishes Perspectives and invited-only Topical Reviews on themes of particular current interest to the community.
二维材料(2DM)旨在策划二维材料科学和工程领域最重要和最前沿的研究。我们的目标是为不断扩大的多学科研究人员和技术人员社区服务,开发一本选择性的杂志,致力于汇集各学科最重要的新成果和观点。提交材料应是某一特定子领域的基本读物,对更广泛的社区也应具有多学科的兴趣,并期望出版的作品将产生重大影响。不符合2DM严格验收标准的提交文件可由期刊编辑(经作者批准)自行转交给IOP投资组合中的其他相关期刊,以供进一步考虑。2DM是一本多学科期刊,致力于出版高质量和冲击力的原始研究,涵盖二维材料的各个方面,包括基本特性(实验、理论和模拟)、新应用(电气、机械、化学和生物医学)和合成/制造技术。感兴趣的具体材料包括但不限于:石墨烯和石墨烯衍生材料(如石墨烯氧化物、石墨烯量子点等)硅质和锗/硅质和锗氮化硼过渡金属二盐类二维拓扑绝缘体复合氧化物复合材料其他新型二维层状结构除了发表对二维材料领域具有重要意义的紧急突破性成果的研究文章外,本杂志还发表观点,并仅就社区当前特别感兴趣的主题邀请专题评论。
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