ACS Nanoscience AuACS 纳米科学 Au

ACS Nanoscience Au(英文缩写 ACS NANOSCI AU),ISSN 2694-2496,eISSN 2694-2496,中文译名:ACS 纳米科学 Au 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
7.500
JCR 分区
Q2
CAS 分区
B3
近一年发文量
90
本站 PubMed 收录统计

发文量统计区间:2025-09-24 至 2026-09-24,按本站收录文献的发表日期统计。

ISSN: 2694-2496 · eISSN: 2694-2496 · 缩写: ACS NANOSCI AU ·中文: ACS 纳米科学 Au

期刊介绍

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期刊简介

ACS Nanoscience Au 是 American Chemical Society 旗下的开放获取期刊,聚焦纳米科学与技术的前沿研究,涵盖纳米材料合成、表征、器件与应用等多个方向。该刊面向化学、材料、物理、生物医学及工程领域的科研人员,强调跨学科视角与严谨的实验与理论工作,为纳米尺度的基础发现与技术创新提供交流平台。

研究方向

主要发表纳米材料与纳米结构的合成、组装、表征及性能研究,涉及能源、催化、电子、光子、传感和生物医学应用等主题。论文类型包括原创研究论文、综述、展望及方法类文章,鼓励报道新现象、新机制和具有转化潜力的纳米技术成果。

期刊特色

研究取向偏重机理探索与性能验证并重,要求数据扎实、表征充分,并体现纳米尺度特有的科学问题。论文通常具有较强的跨学科性,适合材料化学、凝聚态物理、纳米生物医学等方向的研究者阅读与投稿,也适合关注纳米技术应用进展的工业界读者。

投稿难度

投稿难度中等偏上,对创新性和数据完整性要求较高。建议在投稿前明确纳米尺度的新意,补充对照实验与统计信息,完善表征和机理讨论,并针对跨学科读者清晰组织引言与结论,以提升送审与录用机会。

ACS Nanoscience Au 最新收录文献

  1. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    1. Aligning van der Waals Heterostructures Using Electron Backscatter Diffraction.

    作者:
    Ramachandra Bangari, Mehdi Mosayebi, John E Buchner, Joshua D Caldwell, Nabil D Bassim, Thomas G Folland
    日期:
    2026-08-19

    Precise and accurate determination of crystallographic orientation is crucial for engineering van der Waals heterostructures, where the twist angle between layers controls emergent electronic and opti…

  2. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    2. {"_":"Solar Hydrogen Evolution Boosted by Cu and Pt Single-Atom Sites Anchored on g‑CN via Magnetron Sputtering Deposition.","sub":["3","4"]}

    作者:
    Niqab Khan, Erick Jo Prada, Mohammed A M Bajiri, Washington Santa Rosa, Flavio L Souza, Gazi N Aliev, Wolfgang Theis, Heberton Wender, Valmor R Mastelaro, Jesum Alves Fernandes, Renato V Gonçalves
    日期:
    2026-08-19

    Photocatalytic hydrogen (H) evolution offers a promising solution to environmental pollution and the global energy crisis. Among different photocatalysts, graphitic carbon nitride (g-CN), most known a…

  3. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    3. High-Throughput SWCNT NIR-II Spectroscopy Enables Cell and In Vivo Applications.

    作者:
    Atara R Israel, Zachary Cohen, Nazifa Rahman, Anastasiia Vasylaki, Amelia K Ryan, Syeda Rahman, Pratyusha Ghosh, Ryan M Williams
    日期:
    2026-08-19

    Diagnostic sensor development and clinical translation lag, in part, due to a lack of rapid, high-throughput screening methodologies. Optimization of high-throughput sensor development and deployment …

  4. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    4. Introduction of Tunneling Oxide and Oxidation Process Effects for Reliable Si-Compatible Resistive-Switching Random-Access Memory.

    作者:
    Yeji Lee, Soomin Kim, Seongmin Kim, Sungjun Kim, Seongjae Cho
    日期:
    2026-08-19

    Resistive-switching random-access memory (RRAM) has gained a great deal of attention as an emerging memory suitable for massive data storage media and synaptic device applications. For low-power opera…

  5. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    5. Removable Nanopore Sealing and In Situ Iron Oxide Nanoparticle Synthesis on Thin Silicon Nitride Membranes.

    作者:
    Zehui Xia, Pia Bhatia, Celia Morral, Brian DiPaolo, Iryna Golovina, Adriana Buvač-Drndić, Chih-Yuan Lin, David Niedzwiecki, Marija Drndić
    日期:
    2026-08-19

    We report in situ synthesis of iron oxide particles inside silicon nitride nanopores via a chemical reaction, monitored by current readout. Nanopores were formed by electroporation on glass chips (dia…

  6. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    6. Combating Antimicrobial Resistance with Hydrophilic and Eco-Friendly Membrane-Active Antibiotics Derived from Biological Nanoparticles.

    作者:
    Wan Zheng, Hairong Ma, John R Dutcher, Hongjun Liang
    日期:
    2026-08-19

    The ever-increasing use of antibiotics and the accumulation of antibiotic waste in ecosystems are expediting antimicrobial resistance (AMR). Our next-generation antibiotics should aim for a different …

  7. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    7. Atomic-Scale Characterization of Impurity Enrichment to High-Purity Alumina Lattice Defects.

    作者:
    Tommaso Tacchetto, Allan Costine, Mark Pearce, Zakaria Quadir, Steven M Reddy, David Saxey, Denis Fougerouse, Xiao Sun, Dimitrios Dimitriou, Martijn Woltering
    日期:
    2026-08-19

    High-purity alumina (HPA) is a cornerstone material in advanced energy and electronic technologies necessary for the global energy transition. Traditionally, HPA is routinely studied using bulk analyt…

  8. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    8. Mismatch-Tuned Plasmonic Nanogap Networks on Block Copolymers for Ultrasensitive Nucleic Acid Quantification.

    作者:
    Yizhou Zhang, Ying Du, Martin Spillmann, Kazuto Akagi, Jiukai Tang, Shivaprakash N Ramakrishna, Guangyu Qiu, Jing Wang
    日期:
    2026-08-19

    In localized surface plasmon resonance (LSPR), rational nanogap engineering in metallic nanostructures enables strong plasmonic coupling and efficient confinement of incident electromagnetic fields, t…

  9. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    9. Hydrophobic Ion Pairing Improves Protein Thermal Stability and Lipid Nanocarrier Integration through Controlled Surface Modification.

    作者:
    Jiaming Mu, Daniel Sedough-Abbasian, Leran Mao, Sheiliza Carmali
    日期:
    2026-08-19

    Integrating therapeutic proteins into lipid-based nanocarriers remains challenging due to fundamental incompatibilities between hydrophilic protein surfaces and lipophilic carrier matrices. Here, we d…

  10. JCR分区: Q2 CAS分区: B3 影响因子: 7.5

    10. Mapping Emission Directionality of Color Centers in Silicon Carbide Microparticles.

    作者:
    Erlend Lemva Ousdal, Marianne Etzelmüller Bathen, Anna Stray Rongve, Benedicte Allum Pedersen, Gard Momrak Selnesaunet, Snorre Braathen Kjeldby, Anne Marie Moen, Andrej Kuznetsov, Lasse Vines
    日期:
    2026-08-19

    Color centers in semiconductors constitute a promising platform for developing quantum technology applications. To fully mature the platform, strict requirements on controlling the directionality of p…

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