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《LANGMUIR》杂志封面
  • 所属分类:首页 > SCI期刊 > 化学
  • 期刊名: LANGMUIR
  • 期刊名缩写:LANGMUIR
  • 期刊ISSN:0743-7463
  • E-ISSN:1520-5827
  • 2024年影响因子/JCR分区:3.7/Q2 查看近年IF趋势图
  • 学科与分区:CHEMISTRY, MULTIDISCIPLINARY - SCIE(Q2); CHEMISTRY, PHYSICAL - SCIE(Q2); MATERIALS SCIENCE, MULTIDISCIPLINARY - SCIE(Q2)
  • 出版国家或地区:UNITED STATES
  • 出版周期:Weekly
  • 出版年份:1985
  • 年文章数:查看近年文章发表趋势图
  • 论著文章占比:99.13% [论著 ÷(论著 + 综述)]
  • 是否OA开放访问:Transformative
  • Gold OA文章占比:7.69%
  • 官方网站:pubs.acs.org/journal/langd5
  • 投稿网址:acs.manuscriptcentral.com/acs
  • 编辑部地址:AMER CHEMICAL SOC, 1155 16TH ST, NW, WASHINGTON, USA, DC, 20036
  • 文章目录:LANGMUIR最新文章目录

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《LANGMUIR》中科院JCR分区

  • 2025年3月升级版:
  • 大类小类学科Top综述期刊
    化学 2区
    CHEMISTRY, MULTIDISCIPLINARY
    化学:综合
    3区
    MATERIALS SCIENCE, MULTIDISCIPLINARY
    材料科学:综合
    3区

  • 2023年12月升级版:
  • 大类小类学科Top综述期刊
    化学 2区
    CHEMISTRY, MULTIDISCIPLINARY
    化学:综合
    3区
    CHEMISTRY, PHYSICAL
    物理化学
    3区
    MATERIALS SCIENCE, MULTIDISCIPLINARY
    材料科学:综合
    3区

    《LANGMUIR》期刊简介:

    Langmuir专注于界面主导结构及功能的系统和材料,是该领域科学和应用的领先期刊。期刊欢迎就界面的理解及合理设计提出原创进展的文章。
    Langmuir is the leading journal focusing on the science and application of systems and materials in which the interface dominates structure and function. Submissions on original advances in the understanding and particularly the rational design of interfaces, including novel concepts and emerging areas, are welcome. The following topics are examples within the scope of Langmuir.

    Surfaces and interfaces (synthetic and natural): adsorption, wetting, adhesion, forces and dynamics, surfactants, emulsions, foams, gels, and ultrathin films.
    Surface chemistry and forces of interface-rich systems and nanoparticles/colloids.
    Interface-driven stability: response, organization and self-organization of (nano)particle suspensions and structures, rheology and mechanics and non-equilibrium thermodynamics.
    Charge regulation and transfer at interfaces, electrochemistry, photocatalysis.
    Interfacial materials (synthesis/characterization) and processes for energy storage and transduction, and catalysis.
    Surface properties and applications of 1D, 2D and layered Van der Waals materials
    Single molecule and particle dynamics under confinement.
    Bio-interfaces: synthetic surfaces in vivo and in vitro, synthetic or membrane surface dynamics or biofouling, anti-microbial membrane interactions, and hydrophobic/hydrophilic interfaces.
    Transformed biointerfaces, such as nanocellulose and adaptive nanoparticles for drug delivery and diagnostics.
    Advanced surface and interface characterization techniques.
    Advanced microscopy.
    Theory & computations of interfacial properties.

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