ジャーナル情報

Journal of Alloys and Compounds

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インパクトファクター:
6.7
出版社:
Elsevier
ISSN:
0925-8388
閲覧:
19
フォロー:
0

論文募集

Journal of Alloys and Compounds is an academic journal published by Elsevier. (ISSN 0925-8388, impact factor 6.7).

Aims & Scope An Interdisciplinary Journal of Materials Science and Solid–State Chemistry and Physics General Perspective - The Journal of Alloys and Compounds is an international peer-reviewed medium that disseminates original work for the advance of the science of materials comprising compounds and alloys. Its great strength lies in the diversity of disciplines that the journal encompasses, drawing together results from materials science, physical metallurgy, solid-state chemistry, and condensed matter physics. The interdisciplinary nature of the journal is evident in many subject areas, including experimental and theoretical approaches to materials problems that require an active interplay between a variety of traditional and emerging scientific disciplines. - The Journal of Alloys and Compounds provides a unique international forum where materials scientists, chemists, and physicists present their results both to researchers in their own fields and to others active in related areas. The work published in the journal should comprise studies on synthesis and structure combined with investigations of chemical and physical properties of alloys and compounds, contributing to the development of areas of current scientific interests. Manuscripts submitted for publication should contain new experimental and/or theoretical results and their interpretation. Submissions of timely, authoritative, and comprehensive reviews commensurate with the scope of the journal require pre-approvals by the members of the Editorial Board that have relevant expertise. - The Journal of Alloys and Compounds does not consider topics on liquid alloys, steels, wear, creep, welding and joining, organic materials and polymers, coordination chemistry, ionic liquids, catalysis (unless combined with microstructural analysis and other materials properties), and biochemistry. Manuscripts describing only syntheses and characterization without any properties, devices and/or their performance, purely computational results (including CALPHAD) without sufficient experimental validation, or technical reports are out of the journal scope. The submission of articles related to technology of materials and materials processing is discouraged. First-principles calculations may only be considered if a material has already been proven in experiment, or if predictions have a clear potential to advance a dedicated application.
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Special Issues

Special Issue on Advanced Materials for Next-Generation Batteries, Supercapacitors, and Flexible Electronics 投稿締切日: 2026-08-10 This Special Issue is dedicated to recent advances in functional materials for next-generation batteries, supercapacitors, and flexible electronics. We solicit high-quality contributions that address rational material design, advanced synthesis, cutting-edge characterization, and theoretical or data-driven modeling within these interconnected domains. This collection endeavors to provide a comprehensive and forward-looking perspective on the emerging technologies underpinning sustainable and efficient electrochemical energy storage and conversion. Guest editors: Prof. Shude Liu, PhD Donghua University, Shanghai, China Prof. Jiang Zhou, PhD Central South University, Changsha, China Manuscript submission information: Guest Editor Invitation Only Keywords: Advanced materials; Batteries; Supercapacitors; Flexible electronics; Electrode materials; Electrochemical interfaces https://www.sciencedirect.com/special-issue/331511/advanced-materials-for-next-generation-batteries-supercapacitors-and-flexible-electronics
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Special Issue on Microstructural Design and Properties of Advanced Structural Materials: Honoring Prof. Nobuhiro Tsuji on his 60th Birthday 投稿締切日: 2026-10-08 The Journal of Alloys and Compounds is pleased to announce a Special Issue honoring the 60th birthday (Kanreki) of Nobuhiro Tsuji, a globally recognized leader in physical metallurgy and microstructure-based alloy science. A central theme of Professor Tsuji’s research has been addressing the long-standing challenge of achieving simultaneous high strength and high ductility in structural alloys, a key objective in modern materials design. Guest editors: Assist. Prof. Avala Lavakumar, PhD (Executive Guest Editor) Department of Metallurgical and Materials Engineering, Indian Institute of Technology Ropar, Rupnagar, Punjab, India Dr. Yan Chong, PhD Structural Materials Division, Suzhou National Laboratory, Suzhou, China Assist. Prof. Shuhei Yoshida, PhD Department of Materials Science and Engineering, Kyoto University, Kyoto, Japan Prof. Mitsuhiro Murayama, PhD Department of Materials Science and Engineering, Virginia Tech, Blacksburg, Virginia, USA Special issue information: Through pioneering work on accumulative roll bonding and related severe plastic deformation techniques, Professor Tsuji established fundamental principles governing bulk nanostructured and ultrafine-grained metals. His studies have significantly advanced the understanding of how grain refinement, microstructural heterogeneity, and phase stability influence deformation behavior, dynamic phase transformations, and strain-hardening mechanisms across a wide range of alloy systems, including ferrous, non-ferrous, and complex concentrated alloys. These findings demonstrated that the conventional strength–ductility trade-off can be mitigated through microstructural design enabling the controlled activation of multiple deformation modes. To provide deeper insight into deformation initiation in refined microstructures, the plaston concept was proposed as a unifying atomistic framework in which localized collective atomic excitations at stress or energy singularities act as precursors to defect-mediated plasticity, including dislocation slip, deformation twinning, and martensitic transformation. This Special Issue aims to present state-of-the-art experimental and mechanistic studies linking alloy chemistry, microstructure, and properties, with emphasis on fundamental deformation physics and microstructure-based alloy design. Original research articles and authoritative reviews are invited. Alloy design and phase stability under severe plastic deformation: Fundamental studies on phase stability, metastability, dynamic phase transformations, and solute–defect interactions governing mechanical and physical properties in ferrous, non-ferrous and complex concentrated alloys. Microstructure evolution and Heterogeneity Development: Mechanisms of grain refinement, subdivision, and heterogeneity formation, including gradient and bimodal microstructures, and their thermal and mechanical stability. Deformation-Controlled Structure–Property Relationships: Origin of strength–ductility synergy in ultrafine-grained and nanostructured alloys, including strain partitioning, fatigue resistance, and damage evolution. Fundamental mechanisms governing dislocation activity, TWIP, TRIP, slip–twin interactions, recovery, recrystallization, and grain growth. Thermo-mechanical processing of ferrous, non-ferrous and complex concentrated alloys: Role of accumulative roll bonding, severe plastic deformation, and hybrid thermo-mechanical routes in tailoring microstructures of ferrous, non-ferrous and complex concentrated alloy systems. Mechanism-Driven Advanced Characterization: In-situ and correlative experimental techniques including X-ray and neutron diffraction, electron microscopy, digital image correlation, and atom probe tomography applied to elucidate microstructure evolution and deformation mechanisms. Manuscript submission information: This SI is invite-only. Submissions without prior confirmation from the Executive GE Avala Lavakumar ([email protected]) will be rejected. Keywords: Severe plastic deformation; Accumulative roll bonding; Ultrafine-grained metals; Strength–ductility synergy; Microstructure heterogeneity; Phase stability; Deformation mechanisms; TRIP and TWIP; Complex concentrated alloys; Advanced characterization. https://www.sciencedirect.com/special-issue/331324/microstructural-design-and-properties-of-advanced-structural-materials-honoring-prof-nobuhiro-tsuji-on-his-60th-birthday
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Special Issue on Emerging Directions in Materials Science: Fundamental and Applied Physics of Advanced Materials Systems 投稿締切日: 2026-10-15 This Special Issue, Emerging Directions in Advanced Materials Physics, aims to provide a comprehensive platform for the latest developments at the intersection of fundamental and applied materials science. It focuses on advancing our understanding of the physics governing alloys, intermetallic compounds, non-metallic materials, composites, and submicrocrystalline to nanocrystalline systems. Guest editors: Dr. Daria Drozdenko, PhD Department of Physics of Materials, Faculty of Mathematics and Physics, Charles University, Prague, Czech Republic Dr. František Chmelík, PhD Department of Physics of Materials, Faculty of Mathematics and Physics, Charles University, Prague, Czech Republic Dr. Robert Král, PhD Department of Physics of Materials, Faculty of Mathematics and Physics, Charles University, Prague, Czech Republic Dr. Ladislav Havela, PhD Department of Physics of Materials, Faculty of Mathematics and Physics, Charles University, Prague, Czech Republic Prof. Andreas Mortensen, PhD Laboratory of Mechanical Metallurgy, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland Special issue information: The issue welcomes contributions addressing structure–property relationships across multiple length scales, from atomic-level defects to macroscopic performance. Particular emphasis is placed on modern experimental and computational approaches, including diffraction-based methods, advanced microscopy, and modeling techniques that enable quantitative insight into microstructural evolution and functional behavior. A key theme is the role of defects—such as dislocations, stacking faults, and interfaces—in determining mechanical, thermal, and functional properties. The Special Issue also highlights materials under extreme or technologically relevant conditions, where microstructural changes critically influence performance and lifetime. By bridging fundamental theory with practical applications, this collection aims to reflect current trends and stimulate further progress in the design and optimization of advanced materials. Ongoing and upcoming contributions will cover both methodological advances and case studies, offering a valuable resource for researchers working across physics, materials science, and engineering disciplines. Manuscript submission information: Registered participants of International Symposium on Physics of Materials (ISPMA 2026) are invited to submit a manuscript before Oct 15, 2026. For any inquiries about the appropriateness of contribution topics, please contact Executive Guest Editor Daria Drozdenko ([email protected]). The journal’s submission platform (Editorial Manager®) is available for receiving submissions to this Special Issue. Please refer to the Guide for Authors to prepare your manuscript. To submit your manuscript, please select the article type “VSI: Advanced Materials System” from the dropdown list. Keywords: Materials science, Advanced materials, Structure–property relationships, Materials characterization, Microstructure, Functional materials https://www.sciencedirect.com/special-issue/334619/emerging-directions-in-materials-science-fundamental-and-applied-physics-of-advanced-materials-systems
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