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《MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING》杂志封面

《MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING》中科院JCR分区

  • 2025年3月升级版:
  • 大类小类学科Top综述期刊
    材料科学 3区
    PHYSICS, CONDENSED MATTER
    物理:凝聚态物理
    2区
    ENGINEERING, ELECTRICAL & ELECTRONIC
    工程:电子与电气
    3区
    MATERIALS SCIENCE, MULTIDISCIPLINARY
    材料科学:综合
    3区
    PHYSICS, APPLIED
    物理:应用
    3区

  • 2023年12月升级版:
  • 大类小类学科Top综述期刊
    工程技术 3区
    ENGINEERING, ELECTRICAL & ELECTRONIC
    工程:电子与电气
    3区
    MATERIALS SCIENCE, MULTIDISCIPLINARY
    材料科学:综合
    3区
    PHYSICS, APPLIED
    物理:应用
    3区
    PHYSICS, CONDENSED MATTER
    物理:凝聚态物理
    3区

    《MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING》期刊简介:

    Materials Science in Semiconductor Processing provides a unique forum for the discussion of novel processing, applications and theoretical studies of functional materials and devices for (opto)electronics, sensors, detectors, biotechnology and green energy.

    Each issue will aim to provide a snapshot of current insights, new achievements, breakthroughs and future trends in such diverse fields as microelectronics, energy conversion and storage, communications, biotechnology, (photo)catalysis, nano- and thin-film technology, hybrid and composite materials, chemical processing, vapor-phase deposition, device fabrication, and modelling, which are the backbone of advanced semiconductor processing and applications.

    Coverage will include: advanced lithography for submicron devices; etching and related topics; ion implantation; damage evolution and related issues; plasma and thermal CVD; rapid thermal processing; advanced metallization and interconnect schemes; thin dielectric layers, oxidation; sol-gel processing; chemical bath and (electro)chemical deposition; compound semiconductor processing; new non-oxide materials and their applications; (macro)molecular and hybrid materials; molecular dynamics, ab-initio methods, Monte Carlo, etc.; new materials and processes for discrete and integrated circuits; magnetic materials and spintronics; heterostructures and quantum devices; engineering of the electrical and optical properties of semiconductors; crystal growth mechanisms; reliability, defect density, intrinsic impurities and defects.

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