Showing 401 - 420 results of 540 for search '"Hot electron"', query time: 0.36s Refine Results
  1. 401

    Femtosecond surface plasmon interferometry by Temnov, Vasily V., Nelson, Keith Adam, Armelles, Gaspar, Cebollada, Alfonso, Thomay, Tim, Leitenstorfer, Alfred, Bratschitsch, Rudolf

    Published 2011
    “…The performance is demonstrated by monitoring the sub-picosecond dynamics of hot electrons in gold.…”
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    Article
  2. 402

    Preparation and photocatalytic applications of plasmonic metal nanostructures by Eng, Jia Wen

    Published 2020
    “…Titanium coating allows hot electrons generated from silver to have a longer life span by trapping them within its metallic portion. …”
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    Final Year Project (FYP)
  3. 403

    Visible-light-driven reversible shuttle vicinal dihalogenation using lead halide perovskite quantum dot catalysts by Yonglong Li, Yangxuan Gao, Zhijie Deng, Yutao Cao, Teng Wang, Ying Wang, Cancan Zhang, Mingjian Yuan, Wei Xie

    Published 2023-08-01
    “…Ultrafast laser transient absorption spectroscopy have unveiled the energy matching of the hot electrons with the high reduction potential of 1,2-dihaloethane, via two consecutive photoexcitation process. …”
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    Article
  4. 404

    Macroscopic assembled graphene nanofilms based room temperature ultrafast mid‐infrared photodetectors by Li Peng, Lixiang Liu, Sichao Du, Srikrishna Chanakya Bodepudi, Lingfei Li, Wei Liu, Runchen Lai, Xiaoxue Cao, Wenzhang Fang, Yingjun Liu, Xinyu Liu, Jianhang Lv, Muhammad Abid, Junxue Liu, Shengye Jin, Kaifeng Wu, Miao‐Ling Lin, Xin Cong, Ping‐Heng Tan, Haiming Zhu, Qihua Xiong, Xiaomu Wang, Weida Hu, Xiangfeng Duan, Bin Yu, Zhen Xu, Yang Xu, Chao Gao

    Published 2022-06-01
    “…Abstract Graphene with linear energy dispersion and weak electron–phonon interaction is highly anticipated to harvest hot electrons in a broad wavelength range. However, the limited absorption and serious backscattering of hot‐electrons result in inadequate quantum yields, especially in the mid‐infrared range. …”
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    Article
  5. 405

    Plasmonic hot carriers-controlled second harmonic generation in WSe2 bilayers by Wen, Xinglin, Xu, Weigao, Zhao, Weijie, Khurgin, Jacob B., Xiong, Qihua

    Published 2020
    “…Transient absorption measurement further substantiate the plasmonic hot electrons injection and allow us to measure a rise time of ∼120 fs and a fall time of 1.9 ps. …”
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    Journal Article
  6. 406

    Estimation of electron temperature in heated metallic nanoparticle by N.I. Grigorchuk

    Published 2017-12-01
    “…A method is proposed for determining the temperature of hot electrons in a metallic nanoparticle embedded in a dielectric matrix under ultrashort laser pulses irradiation. …”
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    Article
  7. 407

    Synergistic visible light plasmonic photocatalysis of bi-metallic Gold-Palladium nanoparticles supported on graphene by Bulti Pramanick, Prem Felix Siril

    Published 2023-01-01
    “…Visible light photocatalysis using plasmonic nanoparticles is gaining currency due to the possibility of using freely available sun light to generate high energy ‘hot’ electrons. However, effective strategies have to be developed for the generation and stabilization of hot electrons and hot holes. …”
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    Article
  8. 408

    Surface Plasmon Resonance Effect of Noble Metal (Ag and Au) Nanoparticles on BiVO<sub>4</sub> for Photoelectrochemical Water Splitting by Rui Liu, Difu Zhan, Dong Wang, Changcun Han, Qian Fu, Hongxun Zhu, Zhuxiang Mao, Zhao-Qing Liu

    Published 2023-05-01
    “…The mechanism of the SPR effect can be explained as NM NPs are excited by light generating “hot electrons”, and the hot electrons can directly enter the conduction band (CB) of BiVO<sub>4</sub> through an electron transfer mechanism. …”
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    Article
  9. 409

    Effect of quantized conductivity on the anomalous photon emission radiated from atomic-size point contacts by Buret Mickaël, Smetanin Igor V., Uskov Alexander V., Colas des Francs Gérard, Bouhelier Alexandre

    Published 2020-02-01
    “…We treat photon emission as a Bremsstrahlung process resulting from hot electrons colliding with the metal boundary, and find qualitative accord with the experimental data.…”
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    Article
  10. 410

    Solvent-controlled plasmon-assisted surface catalysis reaction of 4-aminothiophenol dimerizing to p,p'-dimercaptoazobenzene on Ag nanoparticles by Yu Liu, Dongqi Yang, Yuanchun Zhao, Yanqiu Yang, Shiwei Wu, Jing Wang, Lixin Xia, Peng Song

    Published 2019-04-01
    “…Our conclusion is that the solvent in the system can quickly capture the hot electrons generated by the decay of the plasmon, so that the remaining holes can oxidize PATP to form DMAB. …”
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    Article
  11. 411

    Study of HCI Reliability for PLDMOS by Deivasigamani Ravi, Sheu Gene, Aanand, Wei Lu Shao, Sarwar Imam Syed, Lai Chiu-Chung, Yang Shao-Ming

    Published 2018-01-01
    “…The lower gate current and the IDsat degradation at low gate voltage (VGS) and high drain voltage (VDS) is investigated. Hot Electrons, generated by impact ionization during stress, are injected into the gate oxide, creating negative fixed oxide charges and interface-states above the accumulation region and the channel. …”
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    Article
  12. 412

    Ion Acoustic Breathers in Electron-Beam Plasma by Manveet Kaur, Sunidhi Singla, Nareshpal Singh Saini, Fateh Singh Gill

    Published 2023-08-01
    “…The nonlinear excitations of ion acoustic (IA) structures in an electron beam embedded plasma composed of Vasyliunas–Cairns (VC) distributed hot electrons has been studied. The nonlinear Schrödinger equation (NLSE) from the Kadomtsev–Petviashvili (KP) equation with suitable transformation has been derived from rational solutions of NLSE; breathers have been studied. …”
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    Article
  13. 413

    Hot Photoluminescence in &#947;-In<sub>2</sub>Se<sub>3</sub>Nanorods by Chen LC, Lan SM, Chen KH, Huang PJ, Chi GC, Lin TY, Yang MD, Hu CH, Shen JL

    Published 2008-01-01
    “…From the high-energy tail of PL, we determine the electron temperature (<it>T</it> <sub>e</sub>) of the hot electrons. The<it>T</it> <sub>e</sub>variation can be explained by a model in which the longitudinal optical (LO)-phonon emission is the dominant energy relaxation process. …”
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    Article
  14. 414

    Effect of relativistic plasma on extreme-ultraviolet harmonic emission from intense laser-matter interactions by Krushelnick, K, Rozmus, W, Wagner, U, Beg, F, Bochkarev, S, Clark, E, Dangor, A, Evans, R, Gopal, A, Habara, H, Mangles, S, Norreys, P, Robinson, A, Tatarakis, M, Wei, MS, Zepf, M

    Published 2008
    “…The spectral modifications are shown to be due to the laser absorption into hot electrons and the subsequent sharply increasing relativistic electron component within the dense plasma. © 2008 The American Physical Society.…”
    Journal article
  15. 415

    Structure of the low-latitude magnetopause: MAGION-4 observations by Z. Nemecek, A. Fedorov, J. Safrankova, G. Zastenker

    Published 1997-05-01
    “…Deeper in the magnetosphere, the encounter of a layer of hot electrons and high-energy ions was interpreted as low-latitude boundary layer.…”
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    Article
  16. 416

    On the origin of the electron blocking effect by an n-type AlGaN electron blocking layer by Zhang, Zi-Hui, Ji, Yun, Liu, Wei, Kyaw, Zabu, Ju, Zhengang, Zhang, Xueliang, Hasanov, Namig, Lu, Shunpeng, Zhang, Yiping, Zhu, Binbin, Volkan Demir, Hilmi, Tan, Swee Tiam, Sun, Xiao Wei

    Published 2014
    “…It is found that the strong polarization induced electric field within the n-EBL reduces the thermal velocity and correspondingly the mean free path of the hot electrons. As a result, the electron capture efficiency of the multiple quantum wells is enhanced, which significantly reduces the electron overflow from the active region and increases the radiative recombination rate with holes.…”
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    Journal Article
  17. 417

    Dual‐Enhanced Doping in ReSe2 for Efficiently Photoenhanced Hydrogen Evolution Reaction by Ran Wang, Jiecai Han, Ping Xu, Tangling Gao, Jun Zhong, Xianjie Wang, Xinghong Zhang, Zhijun Li, Lingling Xu, Bo Song

    Published 2020-05-01
    “…However, the catalytic performance is still restricted by their low concentration of electrocatalytic activity sites and poor injection of hot electrons. Herein, dual‐enhancement in ReSe2 nanosheets (NSs) with high concentration of active sites and efficient use of hot electrons is simultaneously achieved with moderate Mo doping. …”
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    Article
  18. 418

    Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty Plasma by I Driouch, H Chatei

    Published 2013-01-01
    “…The properties of magnetized dusty plasma sheath with finite ion temperature are studied using a fluid model. Hot electrons, fluid ions, neutral particles and cold fluid dust grains are taken into account in this system. …”
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    Article
  19. 419

    Broadband plasmon photocurrent generation from Au nanoparticles/mesoporous TiO2 nanotube electrodes by Wu, Xu, Centeno, Anthony, Zhang, Xuemei, Darvill, Daniel, Ryan, Mary P., Riley, D. Jason, Alford, Neil M., Xie, Fang

    Published 2015
    “…Plasmonic induced photocurrent due to hot electrons is observed over a broad wavelength range (~500 to 1000 nm). …”
    Article
  20. 420