Viewpoint: Atomic-Scale Design Protocols toward Energy, Electronic, Catalysis, and Sensing Applications

Viewpoint: Atomic-Scale Design Protocols toward Energy, Electronic, Catalysis, and Sensing Applications
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DOI:
10.1021/acs.inorgchem.9b01785
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发表时间:
2019-11-18
影响因子:
4.6
通讯作者:
Cammarata,Antonio
Cammarata,Antonio
中科院分区:
化学2区
文献类型:
--
作者:
Belviso,Florian;Claerbout,Victor E. P.;Cammarata,Antonio

文献摘要

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纳米结构材料是制造用于能量收集/存储、传感、催化、磁性和光电应用的新器件的基本构件。然而,由于技术需求的增加,必须识别新的功能材料并改善现有材料的性能。本观点的目的是研究原子尺度的模拟和实验方案,旨在设计新型功能纳米结构材料的最新技术水平,并在相关领域提出新的观点。这是2018年欧洲材料研究学会秋季会议期间举行的研讨会I“能源,电子,催化和传感应用的原子尺度设计协议”辩论的结果。
Nanostructured materials are essential building blocks for the fabrication of new devices for energy harvesting/storage, sensing, catalysis, magnetic, and optoelectronic applications. However, because of the increase of technological needs, it is essential to identify new functional materials and improve the properties of existing ones. The objective of this Viewpoint is to examine the state of the art of atomic-scale simulative and experimental protocols aimed to the design of novel functional nanostructured materials, and to present new perspectives in the relative fields. This is the result of the debates of Symposium I “Atomic-scale design protocols towards energy, electronic, catalysis, and sensing applications”, which took place within the 2018 European Materials Research Society fall meeting.