Showing 21 - 40 results of 109 for search '"nanowire"', query time: 0.05s Refine Results
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    Vertical Silicon Nanowire Platform for Low Power Electronics and Clean Energy Applications by D.-L. Kwong, X. Li, Y. Sun, G. Ramanathan, Z. X. Chen, S. M. Wong, Y. Li, N. S. Shen, K. Buddharaju, Y. H. Yu, S. J. Lee, N. Singh, G. Q. Lo

    Published 2012-01-01
    “…This paper reviews the progress of the vertical top-down nanowire technology platform developed to explore novel device architectures and integration schemes for green electronics and clean energy applications. …”
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    Article
  3. 23

    Capillary condensation-driven growth of perovskite nanowire arrays for multi-functional photodetector by Gangjian Hu, Jiajun Guo, Jizhong Jiang, Lei Wang, Jiaqi Zhang, Hongxu Chen, Gangning Lou, Wei Wei, Liang Shen

    Published 2025-01-01
    “…However, the limited wettability of liquids poses challenges for achieving large-scale and high-quality perovskite nanowire arrays. To address this issue, we develop a facile method utilizing capillary condensation to grow high-quality centimeter-scale perovskite nanowire arrays. …”
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  4. 24

    Formation and Device Application of Ge Nanowire Heterostructures via Rapid Thermal Annealing by Jianshi Tang, Chiu-Yen Wang, Faxian Xiu, Yi Zhou, Lih-Juann Chen, Kang L. Wang

    Published 2011-01-01
    “…We reviewed the formation of Ge nanowire heterostructure and its field-effect characteristics by a controlled reaction between a single-crystalline Ge nanowire and Ni contact pads using a facile rapid thermal annealing process. …”
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    Article
  5. 25

    Metal-Enhanced Fluorescence of Chlorophylls in Light-Harvesting Complexes Coupled to Silver Nanowires by Dorota Kowalska, Bartosz Krajnik, Maria Olejnik, Magdalena Twardowska, Nikodem Czechowski, Eckhard Hofmann, Sebastian Mackowski

    Published 2013-01-01
    “…The results indicate that for the peridinin-chlorophyll complexes placed in the vicinity of the silver nanowires we observe higher intensities of fluorescence emission as compared to the reference sample, where no nanowires are present. …”
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    Article
  6. 26

    THz Scattering and Tunable Plasmonic Resonances from Graphene-Coated Gold Nanowires by Faroq Razzaz, M. N. Akram, M. Z. Yaqoob

    Published 2024-01-01
    “…The Qext under different parameters of graphene, diameter of metallic nanowire (R) and angle of incidence θi, has been computed. …”
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    Article
  7. 27

    Ultrafast Probe of Carrier Diffusion and Nongeminate Processes in a Single CdSSe Nanowire by Peter S. Eldridge, Jolie C. Blake, Lars Gundlach

    Published 2015-01-01
    “…We measure ultrafast carrier dynamics in a single CdSSe nanowire at different excitation fluences using an ultrafast Kerr-gated microscope. …”
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    Tungsten/Platinum Hybrid Nanowire Growth via Field Emission Using Nanorobotic Manipulation by Zhan Yang, Masahiro Nakajima, Yasuhito Ode, Toshio Fukuda

    Published 2011-01-01
    “…By independently employing trimethylcyclopentadienyl platinum (CpPtMe3) and tungsten hexacarbonyl (W(CO)6) as precursors, the platinum nanowire grew on the tip of the MWCNT emitter. Tungsten nanowires then grew on the tip of the platinum nanowire. …”
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    Silicon Powder-Based Wafers for Low-Cost Photovoltaics: Laser Treatments and Nanowire Etching by G. Jia, J. Plentz, A. Gawlik, A. S. Azar, G. Stokkan, M. Syvertsen, P. A. Carvalho, J. Dellith, A. Dellith, G. Andrä, A. Ulyashin

    Published 2018-01-01
    “…It is established that (i) Si powder-based wafers with thicknesses ~180 μm can be fully (from the front to back side) or partly (subsurface region) remelted by a diode laser and grain sizes in laser-treated regions can be increased; (ii) a high-quality top layer can be fabricated by crystallization of an additional a-Si layer deposited by e-beam evaporation on top of the pc-Si; and (iii) silicon nanowires can be formed by metal-assisted wet chemical etching (MAWCE) of polished Si powder-based wafers and as-cut wafers irradiated with medium laser power, while a surface texturing on the as-cut pc-Si wafers occur, and no nanowires can form in the region subject to a liquid phase crystallization (LPC) caused by high-power laser treatments.…”
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  13. 33

    Step-necking growth of silicon nanowire channels for high performance field effect transistors by Lei Wu, Zhiyan Hu, Lei Liang, Ruijin Hu, Junzhuan Wang, Linwei Yu

    Published 2025-01-01
    “…In this work, we demonstrate that ultrathin and short silicon nanowires channels can be created through a local-curvature-modulated catalytic growth, where a planar silicon nanowires is directed to jump over a crossing step. …”
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  14. 34

    Multi-gate neuron-like transistors based on ensembles of aligned nanowires on flexible substrates by João Neto, Abhishek Singh Dahiya, Ravinder Dahiya

    Published 2025-01-01
    “…The v-FETs are obtained by deterministic assembly of ZnO nanowires on a flexible substrate using contactless dielectrophoresis method, followed metallization using conventional microfabrication steps. …”
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    Investigation on the Tunable-Length Zinc Oxide Nanowire Arrays for Dye-Sensitized Solar Cells by Shou-Yi Kuo, Ming-Yang Hsieh, Hsin-I Lin

    Published 2014-01-01
    “…We had successfully fabricated ZnO-based nanowires by vapor transport method in the furnace tube. …”
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    Article
  16. 36

    Fabrication and Photovoltaic Characteristics of Coaxial Silicon Nanowire Solar Cells Prepared by Wet Chemical Etching by Chien-Wei Liu, Chin-Lung Cheng, Bau-Tong Dai, Chi-Han Yang, Jun-Yuan Wang

    Published 2012-01-01
    “…Experimental results reveal that the reflectance of the silicon nanowires (SNWs) declines as their length increases. …”
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  17. 37

    Interconnected TiO2 Nanowire Networks for PbS Quantum Dot Solar Cell Applications by Fan Xu, Jaime Benavides, Xin Ma, Sylvain G. Cloutier

    Published 2012-01-01
    “…We present a simple method for the fabrication of an interconnected porous TiO2 nanostructured film via dip coating in a colloidal suspension of ultrathin TiO2 nanowires followed by high-temperature annealing. The spheroidization of the nanowires and the fusing of the loosely packed nanowire films at the contact points lead to the formation of nanopores. …”
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  18. 38

    Fe + N Noncompensated Codoping TiO2 Nanowires: The Enhanced Visible Light Photocatalytic Properties by Zhongpo Zhou, Haiying Wang

    Published 2014-01-01
    “…The Fe + N codoped nanowire samples are prepared by hydro-thermal method and annealed in NH3 atmosphere. …”
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    Enhanced Photoactivity of Fe + N Codoped Anatase-Rutile Nanowire Film under Visible Light Irradiation by Kewei Li, Haiying Wang, Chunxu Pan, Jianhong Wei, Rui Xiong, Jing Shi

    Published 2012-01-01
    “…Rutile-anatase phase mixed codoped TiO2 nanowires were designed and prepared by a two-step anodic oxidation method. …”
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    Optimization of the Shell Thickness of the ZnO/CdS Core-Shell Nanowire Arrays in a CZTS Absorber by Chonge Wang, Boubacar Drame, Lucien Niare, Fu Yuegang

    Published 2022-01-01
    “…These are used as an absorber in the zinc oxide (ZnO)/cadmium sulfide (CdS) core-shell nanowire arrays, in order to improve the performance of solar cells. …”
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