期刊信息

Solid State Ionics

登录查看期刊网址
免费注册:查看官网链接、跟踪截稿日期,并接收邮件提醒。
用 API 获取这条数据
搜索与榜单列表完全无需凭证;本页的完整详情需要一把免费 API 密钥。详见开发者接入页
影响因子:
3.7
出版商:
Elsevier
ISSN:
0167-2738
浏览:
954
关注:
0

征稿

Solid State Ionics is an academic journal published by Elsevier. (ISSN 0167-2738, impact factor 3.7).

Aims & Scope Diffusion and Reactions This interdisciplinary journal is devoted to the physics, chemistry and materials science of diffusion, mass transport, and reactivity of solids. The major part of each issue is devoted to articles on: (i) physics and chemistry of defects in solids; (ii) reactions in and on solids, e.g. intercalation, corrosion, oxidation, sintering; (iii) ion transport measurements, mechanisms and theory; (iv) solid state electrochemistry; (v) ionically-electronically mixed conducting solids. Related technological applications are also included, provided their characteristics are interpreted in terms of the basic solid state properties. Review papers and relevant symposium proceedings are welcome.
Admin Agent 最后更新于

Special Issues

Special Issue on Diffusion and Reactions in Solids - Honoring Paul Heitjans on the occasion of his 80th birthday 截稿日期: 2026-10-15 This Special Issue covers diffusion, transport, and reaction phenomena in solids, from fundamental ion dynamics and correlated motion to interfaces, solid-state reactions, and functional materials for energy and electrochemical applications. Guest editors: Prof. H. Martin R. Wilkening Graz University of Technology, Graz, Austria Dr. Thomas Bredow University of Bonn, Bonn, Germany Prof. Dr. Harald Schmidt Clausthal University of Technology, Clausthal-Zellerfeld, Germany Special issue information: Solid State Ionics is pleased to announce a forthcoming special issue dedicated to diffusion, transport, and reaction processes in solids. Ionic motion and reactivity in condensed matter are of central importance not only for modern applications such as solid-state batteries, fuel cells, sensors, electrochemical devices, electrolysis systems, and memristive technologies, but also for fundamental research addressing atomic-scale dynamics, disorder, correlation effects, interfaces, non-equilibrium phenomena, and structure–property relationships. The aim of this special issue is to bring together experimental, theoretical, and computational contributions that advance our understanding of ionic transport and solid-state reactivity across a broad range of materials. Topics of interest include ion dynamics and diffusion in crystalline, amorphous, glassy, nanostructured, and composite materials; mixed ionic-electronic conductors; defect chemistry and defect-mediated transport; interface and space-charge phenomena; grain-boundary effects; coupled transport processes; diffusion mechanisms; transport dimensionality (1D, 2D, and 3D diffusion); ion correlation effects; collective and cooperative transport; dynamic heterogeneity; hopping dynamics; and solid-state reaction kinetics. Contributions addressing advanced characterization and modeling approaches are particularly welcome. Relevant methodologies include, but are not limited to, solid-state NMR spectroscopy and relaxometry, pulsed-field-gradient NMR, impedance and dielectric spectroscopy, tracer diffusion techniques, neutron and X-ray scattering, synchrotron-based methods, electron microscopy, operando and in situ techniques, as well as density functional theory, molecular dynamics simulations, kinetic Monte Carlo approaches, machine-learning-assisted materials discovery, and multiscale modeling. The issue further seeks contributions exploring concepts for enhancing ionic conductivity, chemical and electrochemical stability, interfacial charge transfer, and functional performance. Particular emphasis is placed on understanding the interplay between structure, defects, disorder, dynamics, and reactivity, and on identifying the microscopic mechanisms governing ion transport and reaction processes. Studies addressing diffusion pathways, activation processes, transport anisotropy, correlated ion motion, dynamic structure–property relationships, and ion transport across interfaces are especially encouraged. We welcome contributions from both experimentalists and theoreticians that provide new insights into diffusion and reaction phenomena in solids and their wider implications for materials science, electrochemistry, energy technologies, solid-state physics, and related disciplines. Manuscript submission information: You are invited to submit your manuscript at any time before the submission deadline. For any inquiries about the appropriateness of contribution topics, please contact guest editors. Please submit your special issue manuscript via Editorial Manager®. Please refer to the Guide for Authors to prepare your manuscript and select the article type of "VSI: Honoring P. Heitjans" when submitting your manuscript online. Submission Open Date: July 01, 2026 Submission Deadline: Oct 15, 2026 Keywords: Ionic transport; Diffusion mechanisms; Correlated ion motion; Solid-state reactions; Interface phenomena; Solid electrolytes https://www.sciencedirect.com/special-issue/334759/diffusion-and-reactions-in-solids-honoring-paul-heitjans-on-the-occasion-of-his-80th-birthday
Admin Agent 最后更新于

相关期刊

相关会议

评论 0

暂无评论。

登录后发表评论