Showing 61 - 80 results of 349 for search 'materials low array', query time: 0.12s Refine Results
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    Nano-seeding catalysts for high-density arrays of horizontally aligned carbon nanotubes with wafer-scale uniformity by Ying Xie, Yue Li, Zhisheng Peng, Chengyu Wang, Zanlin Qiu, Xinyi Cai, Tinglu Song, Jia Si, Xiaoxu Zhao, Liu Qian, Ziqiang Zhao, Jin Zhang

    Published 2025-01-01
    “…Abstract In the realm of modern materials science, horizontally aligned carbon nanotube arrays stand as promising materials for the development of next-generation integrated circuits. …”
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  4. 64

    Fabrication of Radial Array Transducers Using 1-3 Composite via a Bending and Superposition Technique by Chong Li, Jing Zhu, Ruimin Chen

    Published 2024-11-01
    “…PZT-5H/epoxy 1-3 composite was used as an active material because it exhibits an ultrahigh electromechanical coupling coefficient (<i>k<sub>t</sub></i> = 0.74), a very low mechanical quality factor (<i>Q<sub>m</sub></i> = 11), and relatively low acoustic impedance (<i>Z<sub>c</sub></i> = 13.43 MRayls). …”
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    A One-bit Transmit Phased Array with Spatial Excitation for Sub-6 GHz Wireless Systems by V. V. Kirillov, I. V. Munina, P. A. Turalchuk

    Published 2022-11-01
    “…The design simplicity, low losses, and acceptable cross-polarization levels of the developed one-bit transmit phased antenna array with spatial excitation confirm its feasibility for modern communication systems.…”
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  7. 67

    Application of a Multi Tube Array Phase Change Thermal Energy Storage Device in Solar Greenhouses by Li Weizhao, Zhang Chong, Wei Juan, Yang Luwei, Sheng Wei, Pan Hongmin

    Published 2023-01-01
    “…This study proposed a multi-tube (polyvinyl chloride, PVC) array thermal energy storage structure based on butyl stearate phase change material, aiming to develop a simple and low-cost thermal energy storage device for solar greenhouses. …”
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    Heterogeneous integration of 2D memristor arrays and silicon selectors for compute-in-memory hardware in convolutional neural networks by Samarth Jain, Sifan Li, Haofei Zheng, Lingqi Li, Xuanyao Fong, Kah-Wee Ang

    Published 2025-03-01
    “…Abstract Memristor crossbar arrays (CBAs) based on two-dimensional (2D) materials have emerged as a potential solution to overcome the limitations of energy consumption and latency associated with conventional von Neumann architectures. …”
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    Efficient Photothermoelectric Conversion of CSS@BP/Bi2Te3 Array for Innovative Aircraft Attitude Recognition by Liangshutong Zhang, Yupu Zhang, Xinyu Li, Donghao Han, Wei Zhai, Jianyuan Wang

    Published 2025-05-01
    “…Thus, this work offers an innovative solution for advancing photothermal materials and low‐cost high‐precision flight attitude sensing technologies.…”
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    Low Profile EBG Resonator Antennas by R. Chantalat, L. Moustafa, M. Thevenot, T. Monediere, B. Jecko

    Published 2009-01-01
    “…These periodic metallic arrays are employed in the design of a low profile EBG antenna which has a directivity of 10 dBi. …”
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    Nanoporous CuAuPtPd Quasi-High-Entropy Alloy Prism Arrays for Sustainable Electrochemical Nitrogen Reduction by Shuping Hou, Ziying Meng, Weimin Zhao, Zhifeng Wang

    Published 2025-05-01
    “…Electrochemical nitrogen reduction reaction (NRR) has emerged as a promising approach for sustainable ammonia synthesis under ambient conditions, offering a low-energy alternative to the traditional Haber–Bosch process. …”
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    Fabrication of carbon nanotube neuromorphic thin film transistor arrays and their applications for flexible olfactory-visual multisensory synergy recognition by Nianzi Sui, Kaixiang Kang, Min Li, Dan Zhang, Benxiang Li, Shuangshuang Shao, Hua Wang, Jianwen Zhao

    Published 2024-01-01
    “…In this work, we have designed and constructed a novel olfactory-visual bimodal neuromorphic carbon nanotube thin film transistor (TFT) arrays for artificial olfactory-visual multisensory synergy recognition with a very low power consumption of 25 aJ for a single pulse, employing semiconducting single-walled carbon nanotubes (sc-SWCNTs) as channel materials and gas sensitive materials, and poly[[4,8-bis[5-(2-ethylhexyl)-2-thienyl]benzo[1,2-b:4,5-b0]dithiophene-2,6-diyl]-2,5-thiophenediyl-[5,7-bis(2-ethylhexyl)-4,8-dioxo-4H,8H-benzo[1,2-c:4,5-c0]dithio-phene-1,3-diyl]] (PBDB-T) as the photosensitive material. …”
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