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  1. 21

    Investigation on the Effect of Underwater Acoustic Pressure on the Fundamental Mode of Hollow-Core Photonic Bandgap Fibers by Adel Abdallah, Zhang Chaozhu, Zhong Zhi

    Published 2015-01-01
    “…One of the recent areas of research is to enhance the normalized responsivity (NR) to acoustic pressure of the optical fiber hydrophones by replacing the conventional single mode fibers (SMFs) with hollow-core photonic bandgap fibers (HC-PBFs). However, this needs further investigation. …”
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  2. 22

    Recent Advanced Ultra‐Wide Bandgap β‐Ga2O3 Material and Device Technologies by Sihan Sun, Chenlu Wang, Sami Alghamdi, Hong Zhou, Yue Hao, Jincheng Zhang

    Published 2025-01-01
    “…Abstract Gallium oxide (Ga2O3) is an emerging ultra‐wide bandgap (UWBG) semiconductor material that has gained significant attention in the field of high voltage and high frequency power electronics. …”
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  3. 23

    Design of UWB Monopole Antenna with Dual Notched Bands Using One Modified Electromagnetic-Bandgap Structure by Hao Liu, Ziqiang Xu

    Published 2013-01-01
    “…A modified electromagnetic-bandgap (M-EBG) structure and its application to planar monopole ultra-wideband (UWB) antenna are presented. …”
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    Enhancing efficiency in double perovskite solar cells through bandgap reduction via organic polymer doping by Ihtisham-ul-Haq, M.I. Khan, Ali Mujtaba, Asad Ullah, Badriah Ali, Muhammad Atif, M.S. Hasan

    Published 2025-01-01
    “…Optical analysis revealed the absorption in the visible region and bandgap energy (Eg) is reduced from 1.89 eV to 1.85 eV with PPy doping. …”
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    Oriented wide-bandgap perovskites for monolithic silicon-based tandems with over 1000 hours operational stability by Yuxin Yao, Biao Li, Degong Ding, Chenxia Kan, Pengjie Hang, Daoyong Zhang, Zechen Hu, Zhenyi Ni, Xuegong Yu, Deren Yang

    Published 2025-01-01
    “…Abstract The instability of hybrid wide-bandgap (WBG) perovskite materials (with bandgap larger than 1.68 eV) still stands out as a major constraint for the commercialization of perovskite/silicon tandem photovoltaics, yet its correlation with the facet properties of WBG perovskites has not been revealed. …”
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  8. 28

    Device Modeling of the Performance of Cu(In,Ga)Se2 Solar Cells with V-Shaped Bandgap Profiles by Shou-Yi Kuo, Ming-Yang Hsieh, Dan-Hua Hsieh, Hao-Chung Kuo, Chyong-Hua Chen, Fang-I Lai

    Published 2014-01-01
    “…The effect of Cu(In,Ga)Se2 (CIGS) with V-shaped bandgap on device performance is investigated in detail. …”
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  9. 29

    A Simple Method to Differentiate between Free-Carrier Recombination and Trapping Centers in the Bandgap of the p-Type Semiconductor by Megersa Wodajo Shura

    Published 2021-01-01
    “…In this research, the ranges of the localized states in which the recombination and the trapping rates of free carriers dominate the entire transition rates of free carriers in the bandgap of the p-type semiconductor are described. …”
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    Effect of Codoping Zinc Oxide Nanoparticles with Sulfur and Nitrogen on Its Energy Bandgap, Antioxidant Properties, and Antibacterial Activity by Diriba Yadesa, Jabessa Nagasa Guyasa, Tamene Tadesse Beyene

    Published 2024-01-01
    “…However, their ability to absorb visible light is limited due to their high-energy bandgap and fast electron-hole recombination, which restricts their use. …”
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    Revised direct bandgap and band parameters for AlP: hybrid-functional first-principles calculations vs experiment by Cónal Murphy, Eoin P. O’Reilly, Christopher A. Broderick

    Published 2025-01-01
    “…Critically, using hybrid-functional first-principles calculations, we find that the Γ6c–Γ8v bandgap is ∼1 eV larger than the widely assumed value of 3.63 eV. …”
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