Materials Letters
基本情報
Materials Letters is an interdisciplinary journal devoted to rapid communications on the science, applications, and processing of materials. Materials Letters has an open access companion journal Materials Letters: X, which has the same aims and scope, editorial board and peer-review process. To submit to Materials Letters: X visit https://www.editorialmanager.com/MLBLUX/default.aspx. Materials Letters is dedicated to publishing novel, cutting edge reports of broad interest to the materials community. The journal provides a forum for materials scientists and engineers, physicists, and chemists to rapidly communicate on the most important topics in the field of materials. Contributions include, but are not limited to, a variety of topics such as: Materials - Metals and alloys, amorphous solids, ceramics, composites, polymers, semiconductors, biomaterials and biological materials, advanced materials, metamaterials, high-entropy alloys, nitrides, and oxides. Applications - Structural, opto-electronic, magnetic, biomedical, MEMS, sensors, electronics, smart materials, additive manufacturing, membranes, materials for energy systems, batteries, photocatalysis. Characterization - Analytical, microscopy, scanning probes, nanoscopic, optical, electrical, magnetic, acoustic, spectroscopic, diffraction. Novel Materials - Micro and nanostructures (nanowires, nanotubes, nanoparticles), nanocomposites, thin films, superlattices, quantum dots. Processing - Crystal growth, thin film processing, sol-gel processing, solvo-hydrothermal processing, mechanical processing, assembly, nanocrystalline processing, sustainable/green processing routes. Properties - Mechanical, magnetic, optical, electrical, ferroelectric/piezoelectric, thermal, interfacial, transport, thermodynamic, photoelectrochemical, photocatalytic, thermoelectric, biological, electrochemical. Synthesis - Quenching, solid state, mechano-chemical, solidification, solution synthesis, vapor deposition, high pressure, explosive, MOVPE and LPE epitaxial processes, single crystal growth. Machine Learning/Artificial Intelligence - Materials discovery, design of materials and digital materials science.
CiteScore
| 分野 | ランク | パーセンタイル |
|---|---|---|
EngineeringMechanical Engineering |
157 / 672 | 76% |
ジャーナル統計
投稿情報
投稿サイト:
https://www.editorialmanager.com/mlblue/default.aspx収録タイプ:
brief reports
reports
関連論文
Stability and spinodal decomposition of the solid-solution phase in the ruthenium–cerium–oxide electro-catalyst
Yanmei Li, Xin Wang, Yanqun Shao, Bo Wu, Zhongzhi Tang, Wei Lin
DOI: 10.1039/C4CP04131C
Adsorption of metal adatoms on single-layer phosphorene
Oleksandr I. Malyi, Ping Wu
DOI: 10.1039/C4CP03890H
Structure of palladium nanoparticles under oxidative conditions
Cristina Popa, Tianwei Zhu, Ionut Tranca, Payam Kaghazchi, Emiel J. M. Hensen
DOI: 10.1039/C4CP01761G
Water and polymer dynamics in a model polysaccharide hydrogel: the role of hydrophobic/hydrophilic balance
V. Venuti, F. D'Amico, A. Gessini, F. Castiglione, C. Punta, L. Melone, V. Crupi, D. Majolino, F. Trotta, C. Masciovecchio
DOI: 10.1039/C4CP04045G
Assessment of density-functionals for describing the X− + CH3ONO2 gas-phase reactions with X = F, OH, CH2CN
Yaicel G. Proenza, Elizete Ventura, Silmar A. do Monte, Ricardo L. Longo
DOI: 10.1039/C4CP03674C
Hydrocarbon growth via ion-molecule reactions: computational studies of the isomers of C4H2+, C6H2+ and C6H4+ and their formation paths from acetylene and its fragments
Timothy J. Lee
DOI: 10.1039/C4CP04480K
Bio-inspired fabrication of hierarchical Ni–Fe–P coated skin collagen fibers for high-performance microwave absorption
Xiaoling Wang, Wenhua Zhang
DOI: 10.1039/C4CP03909B
The isotope method for the determination of stoichiometry between compounds forming the polypyrrole and glucose oxidase composite
A. Popov, A. Ramanaviciene, V. Remeikis
DOI: 10.1039/C4CP04885G
Complex behaviour of vacancy point-defects in SrRuO3 thin films
Henning Schraknepper, Christoph Bäumer, Regina Dittmann, Roger A. De Souza
DOI: 10.1039/C4CP03632H
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