Details

Journal


Title
Materials Futures
TitleAddition
中文刊名*
材料展望
TitleJCR
Materials Futures
TitleScopus
TitleCrossref
TitleSemanticScholar
TitleOpenalex
TitleOpenCitation
期刊缩写
JCRAbbr
MATER FUTURES
ISOAbbr
Mater. Futures
ISSN
EISSN
2752-5724
CN*
主管单位*(多个机构使用;隔开)
东莞市科学技术局
主办机构*(多个机构使用;隔开)
松山湖材料实验室
所有权机构*(多个机构使用;隔开)
创刊年份*
2023
SCIE
SSCI
AHCI
ESCI
Scopus
EI
Inspec
OAJ
GoldOA
联系地址所在省份*
广东省
联系地址所在城市*
东莞市
期刊收录范围*
Materials Futures is an international multidisciplinary gold open access journal focusing on publishing original works, perspectives, reviews, articles in all areas of basic and applied materials science and technology. Topic of interests include but are not limited to the following: Structural Materials: Materials whose mechanical properties, such as elasticity, hardness, and strength etc. are focus of study. Examples include but not limited to: Metals and ceramics. Alloys including high entropy alloys, shape memory alloys etc. Non-crystalline materials and glasses. Composite materials. Materials in the extreme. Energy Materials: Materials and devices for energy storage and conversion. Examples include but not limited to: Photovoltaic devices & materials, including materials for perovskite, organic, silicon solar cells etc. Artificial photosynthesis materials. Energy harvesting technologies and materials, including nanogenerators etc. Thermoelectric devices and materials. Batteries and supercapacitor materials, including electrode, separator, binder and electrolyte materials. Flow batteries and related electrode & electrolyte materials. Fuel cell technology and related electrode & catalyst materials. Electrolysis related materials. Catalytic materials and processes for energy generation, conversion and storage. Nanomaterials: Nanoscale materials with novel properties. Examples include but not limited to: Nanocomposites. Granular materials. 2D materials and coatings. Nanomaterial and nanodevice applications, such as in magnetic devices, optics, catalysis, microelectronics, pharmaceutics, and energy technologies. Nanomaterial synthesis, processing, treatment, characterizations, and engineering. Biomaterials: Bio and bioinspired materials, polymers, colloids, gels etc. Examples include but not limited to: Bioactive materials, including nanomaterials, hydrogels, 2D materials, biopolymers, composites, biohybrids, biomimetics, as well as inorganic materials for biomedical applications. Nanomedical biomaterials, with applications in drug delivery, imaging, theranostics, gene therapy, and immunotherapy, and for therapy of infectious diseases, cancer, metabolic diseases, and cardiovascular diseases, as well as for vaccines and precision medicine. Tissue engineering and regenerative medicine biomaterials, including scaffolds and scaffold-free approaches. For example, for bone, ligament, and muscle tissue engineering, skin regeneration and wound healing, nerve grafts, cardiac patches and tissue vascularization. Bio-fabrication-relative materials, including (bio)inks and technologies, toward generation of functional tissues and organs. Quantum Materials: Materials and devices where quantum physics plays an essential role in describing their emergent properties. Examples include but not limited to: Exotic correlated materials: Synthesis and characterization of materials like superconductors, topological insulators, Van der Waals magnets, Weyl semimetals, spin-orbit coupling compounds, etc. Materials for photonics and electromechanical devices where quantum physics is clearly demonstrated (spin, quantum confinement, entanglement, quantum statistics, quantum coherence). Condensed matter exhibiting quantum entanglement. Low-dimensional magnetic materials, stripes, ladders and molecular magnets etc. Technologically relevant magnets, including bulk hard and soft magnetic materials, spintronic materials, magnetoelastic/striction, magnetic recording materials, magnetocaloric, multiferroic and magnetoelectric materials. Growth and characterization of heterostructures. Fabrication and characterization of materials and interfaces for quantum technology applications and quantum devices. Materials for qubits. Emergent properties of quantum materials (magnetic monopoles, spin-ice, Skyrmions, vortex lattice etc.) Information Materials: Materials and devices for information technology. Topics of interest include, but are not limited to, the following: Materials for next-generation, low power and high-speed transistors. Materials for ultra-high density interconnect and advanced packaging fabrication. Materials with unique electrical, optical and magnetic properties. Materials for quantum computing applications. Information device physics and engineering. Smart sensing devices and systems for various applications. Optical and optoelectronic devices. Materials Theories and Computation: Examples include but not limited to: Materials theory. Materials property prediction. Materials design. Materials genome including high throughput computation. Artificial intelligence and machine learning applications in materials science. Materials simulation, including quantum mechanical, atomistic, microstructural, continuum-based simulations. Thermodynamic and phase diagram calculations. Interatomic potentials/force fields.
期刊介绍
Publisher
IOP Publishing Ltd
Language
English
官网地址
数据库地址
https://iopscience.iop.org/journal/2752-5724
数据库地址2
中科院
科协
高校
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