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期刊名:Nature materials

缩写:NAT MATER

ISSN:1476-1122

e-ISSN:1476-4660

IF/分区:38.5/Q1

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共收录本刊相关文章索引4848
Clinical Trial Case Reports Meta-Analysis RCT Review Systematic Review
Classical Article Case Reports Clinical Study Clinical Trial Clinical Trial Protocol Comment Comparative Study Editorial Guideline Letter Meta-Analysis Multicenter Study Observational Study Randomized Controlled Trial Review Systematic Review
Alexander J Sredenschek,David Emanuel Sanchez,Jiayang Wang et al. Alexander J Sredenschek et al.
Non-layered transition metal carbides (TMCs) and layered transition metal dichalcogenides (TMDs) are two well-studied material families that have individually received considerable attention over the past century. In recent years, with the ...
Xinshu Zhang,Tyler Carbin,Adrian B Culver et al. Xinshu Zhang et al.
In a solid, the electronic subsystem can exhibit incipient order with lower point group symmetry than the crystal lattice. Ultrafast external fields that couple exclusively to electronic order parameters have rarely been investigated, howev...
R Stanley Williams,Sreebrata Goswami,Sreetosh Goswami R Stanley Williams
We are at an inflection point in computing where traditional technologies are incapable of keeping up with the demands of exploding data collection and artificial intelligence. This challenge demands a leap to a new platform as transformati...
Seok Hwan Choi,Ju Hee Kim,Jiyong Ahn et al. Seok Hwan Choi et al.
Liquid crystal elastomers hold promise in various fields due to their reversible transition of mechanical and optical properties across distinct phases. However, the lack of local phase patterning techniques and irreversible phase programmi...
Yuting Luo,Joseph V Handy,Tisita Das et al. Yuting Luo et al.
Limitations in electrochemical performance as well as supply chain challenges have rendered positive electrode materials a critical bottleneck for Li-ion batteries. State-of-the-art Li-ion batteries fall short of accessing theoretical capac...
Yunfeng He,Yu Cheng,Canhui Yang et al. Yunfeng He et al.
Artificial pressure sensors often use soft materials to achieve skin-like softness, but the viscoelastic creep of soft materials and the ion leakage, specifically for ionic conductors, cause signal drift and inaccurate measurement. Here we ...