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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
Shuchen Zhang,Linrui Jin,Yuan Lu et al. Shuchen Zhang et al.
Moiré superlattices have emerged as a new platform for studying strongly correlated quantum phenomena, but these systems have been largely limited to van der Waals layer two-dimensional materials. Here we introduce moiré superlattices lev...
Gwangmin Kim,Jae Hyun In,Younghyun Lee et al. Gwangmin Kim et al.
Heat dissipation is a natural consequence of operating any electronic system. In nearly all computing systems, such heat is usually minimized by design and cooling. Here, we show that the temporal dynamics of internally produced heat in ele...
Jack Griffiths,Ana F Suzana,Longlong Wu et al. Jack Griffiths et al.
Material functionality can be strongly determined by structure extending only over nanoscale distances. The pair distribution function presents an opportunity for structural studies beyond idealized crystal models and to investigate structu...
Jun Meng,Md Sariful Sheikh,Ryan Jacobs et al. Jun Meng et al.
New highly oxygen-active materials may enhance many energy-related technologies by enabling efficient oxygen-ion transport at lower temperatures, for example, below ~400 °C. Interstitial oxygen conductors have the potential to realize such...
Ruth Theresia Arwani,Sherwin Chong Li Tan,Archana Sundarapandi et al. Ruth Theresia Arwani et al.
Continuous and in situ detection of biomarkers in biofluids (for example, sweat) can provide critical health data but is limited by biofluid accessibility. Here we report a sensor design that enables in situ detection of solid-state biomark...
Dongqi Li,Wenhao Zheng,Sai Manoj Gali et al. Dongqi Li et al.
Surface terminations profoundly influence the intrinsic properties of MXenes, but existing terminations are limited to monoatomic layers or simple groups, showing disordered arrangements and inferior stability. Here we present the synthesis...