Nature Reviews Materials

Nature Reviews Materials(英文缩写 NAT REV MATER),ISSN 2058-8437,eISSN 2058-8437 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
83.300
JCR 分区
Q1
CAS 分区
B1
近一年发文量
0

指标来源:jcr_cas_ifqb

ISSN: 2058-8437 · eISSN: 2058-8437 · 缩写: NAT REV MATER

期刊简介

暂无简介。

历年影响因子趋势

年份影响因子JCR 分区
-Q1
-Q1
-Q1
-Q1
-Q1

Nature Reviews Materials 最新收录文献

※ 中文译文由 AI 辅助生成,仅供学术参考,请以英文原文为准。

  1. Can nanozymes achieve more than enzymes?

    Nanozymes have progressed from simple enzyme mimics to a versatile class of artificial catalysts that expand functionality beyond the reach of natural enzymes. Their unique compositional and structura…

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  2. Materials Advances for Distributed Environmental Sensor Networks at Scale.

    Historic and ongoing efforts in ecology and environmental science have highlighted the pressing need to monitor the health, sustainability, and productivity of global and local ecosystems. Interest in…

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  3. Next-generation materials for nucleic acid delivery.

    Efficient and targeted delivery of nucleic acids is critical for realizing the full therapeutic potential of gene editing, vaccines and RNA-based drugs, and emerging delivery platforms offer innovativ…

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  4. Materials and device strategies to enhance spatiotemporal resolution in bioelectronics. 提高生物电子学时空分辨率的材料和器件策略。

    [中文摘要] 时空分辨率是生物电子学的基石,能够在分子、细胞和组织水平上精确观察和控制生物事件。在这篇综述中,我们分析了神经假体、心脏监测和生物传感等应用所必需的时空分辨率的最新进展,重点是利用电、电化学和光电信号转导的设备。我们定义了空间和时间分辨率的内在和外在参数,并强调了驱动这些能力的高性能材料和器件架构,包括电极、晶体管和光电接口。评估了设备小型化、3D制造和多功能集成等策略提高分辨率的能力,特别是在生…

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  5. Delivering living medicines with biomaterials.

    The engineering of therapeutic living cells through genetic programming is poised to transform medicine. Diverse living medicines, including mammalian cells, fungi, bacteria, and viruses, are under de…

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  6. Atomically thin bioelectronics. 原子薄生物电子学。

    Tissue-like bioelectronics have emerged as practical, user-friendly and unobtrusive systems for seamless bidirectional integration with the human body. Two-dimensional materials, being led by the prot…

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  7. Untangling the chemical complexity of plastics to improve life cycle outcomes.

    A diversity of chemicals are intentionally added to plastics to enhance their properties and aid in manufacture. Yet, the accumulated chemical composition of these materials is essentially unknown eve…

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  8. Wound management materials and technologies from bench to bedside and beyond.

    Chronic wounds represent a major global health problem, causing staggering economic and social burdens. The pursuit of effective wound healing strategies demands a multidisciplinary approach, and adva…

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  9. Leveraging next generation materials for cancer neuroscience therapies in the central nervous system.
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  10. New Opportunities and Old Challenges in the Clinical translation of Nanotheranostics.

    Nanoparticle-based systems imbued with both diagnostic and therapeutic functions, known as nanotheranostics, have enabled remarkable progress in guiding focal therapy, inducing active responses to end…

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