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  1. Nanometric Semiconductors

    ReducingNanometric Semiconductors the size of materials -and semiconductors are no exception- to nanoscale dimensions, changes extremely their bulk...
    Chapter 2024
  2. Fracture in Semiconductors

    Most semiconductors are crystalline inorganic solids, and usually they are classified according to their location in the periodic table. Generally,...
    Chapter 2024
  3. Semiconductors

    Without question, semiconductors represent the most utilized and under-appreciated class of materials in our society. From our cell phones that keep...
    Bradley D. Fahlman in Materials Chemistry
    Chapter 2023
  4. Basic Concepts of Semiconductors

    Two main types of semiconductors are the n-type and p-type semiconductors, but other classification is usually used to define the wide range of...
    Chapter 2024
  5. Two-dimensional alkali auride bimetallene semiconductors

    Alloying different metal elements to form two-dimensional (2D) materials (metallenes) holds great significance for both fundamental research and...

    Kai Zhang, Haifeng Lv, ... **long Yang in Science China Materials
    Article 12 March 2024
  6. Deformation in Semiconductors

    Generally, deformationDeformation in semiconductors refers to alteration of the shape and/or size of a material due to applied force. Also,...
    Chapter 2024
  7. Mechanical Properties of Semiconductors Exploring Elemental, Binary, and Ternary Systems

    This book is a comprehensive guide to understanding the mechanical behavior of specific semiconductors: Elemental Semiconductors: Si, Ge; Binary...

    Joshua Pelleg
    Book 2024
  8. Prediction of high-temperature ferromagnetic semiconductors in tetrahedral superlattices

    Ferromagnetic (FM) semiconductors combine the advantages of semiconductors (e.g., logic devices) and magnetic materials (e.g., memories) and have...

    Yaqi Wang, Huasheng Sun, ... Chengxi Huang in Science China Materials
    Article 20 March 2024
  9. Flexo-photocatalysis in centrosymmetric semiconductors

    The separation of photogenerated electron–hole pairs is vitally important for photocatalysis, which can be effectively promoted by polarization...

    Kang Liu, Tong Wu, ... Zhong Lin Wang in Nano Research
    Article 01 August 2023
  10. The future of two-dimensional semiconductors beyond Moore’s law

    The primary challenge facing silicon-based electronics, crucial for modern technological progress, is difficulty in dimensional scaling. This stems...

    Ki Seok Kim, Junyoung Kwon, ... Jeehwan Kim in Nature Nanotechnology
    Article 01 July 2024
  11. Low-dimensional wide-bandgap semiconductors for UV photodetectors

    Accurate UV light detection is a crucial component in modern optoelectronic technologies. Current UV photodetectors are mainly based on wide-bandgap...

    Ziqing Li, Tingting Yan, **aosheng Fang in Nature Reviews Materials
    Article 18 August 2023
  12. Nanoscale do** of polymeric semiconductors with confined electrochemical ion implantation

    Nanoresolved do** of polymeric semiconductors can overcome scaling limitations to create highly integrated flexible electronics, but remains a...

    Lanyi **ang, Zihan He, ... Daoben Zhu in Nature Nanotechnology
    Article 22 April 2024
  13. Synthesis, Properties, and Applications of Graphene and 2D Semiconductors

    This book chapter provides an inclusive outline of the synthesis methodologies, unique properties, and applications of graphene and two-dimensional...
    Asif Rasool, Shahnaz Kossar, ... Umar Rasool in Handbook of Emerging Materials for Semiconductor Industry
    Reference work entry 2024
  14. Defects in Amorphous Semiconductors: Amorphous Silicon

    Defects in disordered (amorphous) semiconductors are discussed, with an emphasis on hydrogenated amorphous silicon. The general differences between...
    D.A. Drabold, T.A. Abtew in Theory of Defects in Semiconductors
    Chapter
  15. Quantum Monte Carlo Techniques and Defects in Semiconductors

    The continuum variational and diffusion quantum Monte Carlo (VMC and DMC) techniques are stochastic methods for obtaining expectation values of...
    Chapter
  16. Transiently delocalized states enhance hole mobility in organic molecular semiconductors

    Evidence shows that charge carriers in organic semiconductors self-localize because of dynamic disorder. Nevertheless, some organic semiconductors...

    Samuele Giannini, Lucia Di Virgilio, ... David Beljonne in Nature Materials
    Article 14 September 2023
  17. Semiconductors

    TheDefects in semiconductors electrical and optical properties of a pure semiconductor can be modified by addition of a small amount of impurities...
    Vimal Kumar Jain in Solid State Physics
    Chapter 2022
  18. Zeolite-like molecules: Promising dielectrics for two-dimensional semiconductors

    Two-dimensional (2D) semiconductors have opened opportunities for the development of next-generation semiconductor devices and the continuation of...

    Lixin Liu, Pengyu Li, ... Tianyou Zhai in Science China Materials
    Article 25 August 2022
  19. Comment on photoconduction measurements of semiconductors: the effect of temperature rises

    Photoconductive methods have been widely employed for evaluating photo-electronic responses in semiconductors, while those are likely to be affected...

    Keiji Tanaka, Norimitsu Yoshida in Journal of Materials Science: Materials in Electronics
    Article 09 June 2023
  20. Boosting the mobility of organic semiconductors through strain engineering

    Organic semiconductors (OSCs) are pivotal for advancing flexible electronics. However, their application has been severely hindered by their poor...

    Zhaofeng Wang, ** Hu in Science China Materials
    Article 11 January 2024
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