工学 >>> 材料科学 >>> 材料科学其他学科 >>>
搜索结果: 1-15 共查到材料科学其他学科 Materials相关记录54条 . 查询时间(0.343 秒)
生物神经系统中痛觉感受器、神经元和突触的整合与协作,使人类能够有效感知和处理有害信息,从而规避危险。受生物神经系统的启发,目前人工神经电子器件包括电解液基晶体管、依赖外来离子的忆阻器、卤化物钙钛矿忆阻器。这些器件在一定程度上存在重复性、可控性、稳定性和集成困难等问题。
本站讯(记者 潘锭钰 通讯员 李建林)近日,海南大学材料科学与工程学院李建林教授课题组联合国内其他研究组,在高性能石墨陶瓷研究中再次取得突破性进展。其研究论文“Nanoburl Graphites”于2021年3月在材料领域国际顶级期刊《Advanced Materials》发表。
A collaborative group of researchers including Petr Kral, professor of chemistry at the University of Illinois at Chicago, describe a new technique for creating novel nanoporous materials with unique ...
Desirable properties including increased electrical conductivity, improved mechanical properties, or magnetism for memory storage or information processing may be possible because of a theoretical met...
The National Science Foundation (NSF) has issued eight new 2017 Materials Research Science and Engineering Center (MRSEC) awards that will drive cutting-edge science and engineering.Totaling $145 mill...
The SCINT2017 conference is closely related to the SCINT Summer School (Septembre 14-17) oriented to the young researchers willing to obtain an educational-oriented overview of the various topics of t...
近日,南京理工大学材料科学与工程学院袁国亮教授课题组在柔性透明阻变存储器研究方面取得突破性进展,相关研究成果“Flexible, Semitransparent, and Inorganic Resistive Memory based on BaTi0.95Co0.05O3 Film”于2017年4月发表在《Advanced Materials》(DOI: 10.1002/adma.201700...
Thinning a material down to a single-atom thickness can dramatically change that material's physical properties. For example, graphene, the best-known 2D material, has unparalleled strength and electr...
The possibilities for the new field of two-dimensional, one-atomic-layer-thick materials, including but not limited to graphene, appear almost limitless. In new research, Penn State material scientist...
Multi-scale modeling and simulation have become major tools in the design and optimization of novel materials and their processing. Since the establishment of the Computational Materials Science Branc...
Materials science researchers have developed a model that can account for irregularities in how atoms arrange themselves at the so-called “grain boundaries” – the interface where two materials meet. B...
Material scientists have predicted and built two new magnetic materials, atom-by-atom, using high-throughput computational models. The success marks a new era for the large-scale design of new magneti...

中国研究生教育排行榜-

正在加载...

中国学术期刊排行榜-

正在加载...

世界大学科研机构排行榜-

正在加载...

中国大学排行榜-

正在加载...

人 物-

正在加载...

课 件-

正在加载...

视听资料-

正在加载...

研招资料 -

正在加载...

知识要闻-

正在加载...

国际动态-

正在加载...

会议中心-

正在加载...

学术指南-

正在加载...

学术站点-

正在加载...