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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4844
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
Qingsong Pan,Lei Lu Qingsong Pan
Fatigue failure in metals remains a concern across engineering disciplines, substantially influencing the design, reliability and economic viability of essential load-bearing structure components. Despite notable advances in materials scien...
Yunxuan Feng,Wanbo Tai,Pei Huang et al. Yunxuan Feng et al.
The advent of mRNA vaccines represents a breakthrough in the realm of cancer therapy and the prevention of infectious disease. Nevertheless, traditional lipid nanoparticle (LNP)-based mRNA vaccines can accumulate in the liver post-intramusc...
Ruihan Guo,Qixin Feng,Ke Ma et al. Ruihan Guo et al.
Integration between electronics and biology is often facilitated by iontronics, where ion migration in aqueous media governs sensing and memory. However, the Debye screening effect limits electric fields to the Debye length, the distance ov...
Mingze Li,Shaojie Wang,Allen Wood et al. Mingze Li et al.
The benign defect nature of iodide perovskites has gained strong momentum in understanding and application in perovskite devices; however, the understanding of defects in bromide perovskites remains elusive. Here we demonstrate that the bia...
Na Chen,Hanchao Teng,Hai Hu et al. Na Chen et al.
Hyperbolic polaritons facilitate nanoscale light manipulation, but strong field confinement limits their transmission across interfaces. Conversely, leaky waves can convert radiation from confined sources towards the far field. Here we comb...
Sanela Rankovic,Kenneth D Carr,Justin Decarreau et al. Sanela Rankovic et al.
Advances in computational methods have led to considerable progress in the design of protein nanomaterials. However, nearly all nanoparticles designed so far exhibit strict point group symmetry, which limits structural diversity and preclud...
Shunzhi Wang,Andrew Favor,Ryan D Kibler et al. Shunzhi Wang et al.
Directional interactions that generate regular coordination geometries are a powerful means of guiding molecular and colloidal self-assembly, but implementing such high-level interactions with proteins remains challenging due to their compl...