Chen, Y., Fang, F. & Zhang, N. Advance in additive manufacturing of 2D materials at the atomic and close-to-atomic scale. npj 2D Mater. Appl., 2024. 10.1038/s41699-024-00456-x。
成果简介 为此,柏林大学学院机械与材料工程学院Nan Zhang教授团队在npj-2D Materials and Applications期刊发题为“Advance in additive manufacturing of 2D materials at the atomic and close-to-atomic scale”的研究成果。这项研究旨在开发新的制造技术,使二维材料的制造过程更加高效、简化和可控。通过这些新方法,科...
国际简称:NPJ 2D MATER APPL 出版国家或地区:ENGLAND 研究方向:Engineering - Mechanics of Materials 是否预警:否 创刊时间:2017 H-index:暂无数据 出版周期:Continuous publication 出版语言:English 年发文量:72 文章自引率:0.02... 投稿咨询加急服务
Dresden Technische Universität Dresden (TU Dresden) This journal is a member of and subscribes to the principles of the Committee on Publication Ethics. npj 2D Materials and Applications(npj 2D Mater Appl) ISSN2397-7132(online)
国际简称:NPJ 2D MATER APPL 出版周期:Continuous publication 研究方向:Engineering - Mechanics of Materials 出版语言:English 创刊时间:2017 是否预警:否 出版地区:ENGLAND 是否OA:开放 期刊介绍 《Npj 2d Materials And Applications》(《Npj 2d 材料和应用》)是一本由Springer Nature出版的Engineering-Mechanics of...
NPJ 2D MATER APPL ISSN:2397-7132 E-ISSN:2397-7132 投稿咨询学术服务 基本信息 BASIC INFORMATION 审稿时间:15 weeks 出版周期:Continuous publication 出版国家或地区:ENGLAND 创刊:2017 影响因子:9.1 是否预警:否 语言:English 是否OA开放访问:开放 研究方向:Engineering - Mechanics of Materials ...
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npj 2D Mater Appl 7, 18 (2023). https://doi.org/10.1038/s41699-023-00379-z Download citation Received17 June 2022 Accepted10 March 2023 Published27 March 2023 DOIhttps://doi.org/10.1038/s41699-023-00379-z Springer Nature Limited Share this article Anyone you share the following link with...
et al. High throughput data-driven design of laser-crystallized 2D MoS2 chemical sensors: a demonstration for NO2 detection. ACS Appl. Nano Mater. 5, 7549–7561 (2022). Article CAS Google Scholar Lee, C. et al. Anomalous lattice vibrations of single- and few-layer MoS2. ACS Nano 4, ...
为此,柏林大学学院机械与材料工程学院Nan Zhang教授团队在npj-2D Materials and Applications期刊发题为“Advance in additive manufacturing of 2D materials at the atomic and close-to-atomic scale”的研究成果。这项研究旨在开发新的制造技术,使二维材料的制造过程更加高效、简化和可控。通过这些新方法,科学家们希望...