搜索结果: | 55 条记录 |
SCIE外文期刊 中科分区:4区 期发文量:36 国人占比:13.76% 影响因子:0.0000
Adsorption-Journal of the International Adsorption Society《吸附:国际吸附学会杂志》(一年8期). The journal Adsorption provides authoritative information on adsorption and allied fields to scientists, engineers, and technologists throughout the world. The information takes the form of peer-reviewed articles, R&D notes, topical review papers, tutorial papers, book reviews, meeting announcements, and news.
SCIE外文期刊 中科分区:4区 期发文量:94 国人占比:21.35% 影响因子:0.0000
Adsorption Science & Technology《吸附科学技术》(一年1卷). Adsorption Science & Technology is a peer-reviewed, open access journal devoted to studies of adsorption and desorption phenomena, which publishes original research papers and critical review articles, with occasional special issues relating to particular topics and symposia.
53 ACS Nano《美国化学学会纳米杂志》(官网投稿)
SCIE外文期刊 中科分区:1区 期发文量:45 国人占比:54.81% 影响因子:0.0000
ACS Nano《美国化学学会纳米杂志》(周刊). Published monthly, ACS Nano is an international forum for the communication of comprehensive articles on nanoscience and nanotechnology research at the interfaces of chemistry, biology, materials science, physics, and engineering. Moreover, the journal helps facilitate communication among scientists from these research communities in developing new research opportunities, advancing the field through new discoveries, and reaching out to scientists at all levels.
54 ACS Energy Letters《美国化学学会能源快报》(官网投稿)
SCIE外文期刊 中科分区:1区 期发文量:51 国人占比:38.96% 影响因子:0.0000
ACS Energy Letters《美国化学学会能源快报》(月刊). ACS Energy Letters publishes papers that report new scientific advances in all aspects of energy research that are of interest to scientists working in the fundamental, and applied sciences. A central criterion to acceptance is that the paper reports sufficiently urgent results such that rapid publication is essential. ACS Energy Letters is published monthly.
SCIE外文期刊 中科分区:3区 期发文量:26 国人占比:51.95% 影响因子:0.0000
CALPHAD-COMPUTER COUPLING OF PHASE DIAGRAMS AND THERMOCHEMISTRY《相图计算:相图计算机耦合与热化学》(季刊). CALPHAD (Computer Coupling of Phase Diagrams and Thermochemistry) aims to promote computational thermodynamics through development of models to represent thermodynamic properties for various phases which permit prediction of properties of multicomponent systems from those of binary and ternary subsystems, critical assessment of data and their incorporation into self-consistent databases, development of software to optimize and derive thermodynamic parameters and the development and use of databanks for calculations to improve understanding of various industrial and technological processes. This work is disseminated through the CALPHAD journal and its annual conference. Contributions of high quality in these and related fields, especially the fields of first-principles calculations, experimental measurements of thermochemical and phase equilibrium data, phase transformations, and the process and materials designs that the CALPHAD works are based on or used for, are welcome.