A simple hydrogenation treatment is used to synthesize unique oxygen-deficient TiO with a core/shell structure (TiO@TiOH), superior to the high H-pressure process (under 20 bar for five days). It is demonstrated that oxygen-deficient TiO nanoparticle film/Si heterojunction possesses improved photoresponse performance compared to the untreated TiO nanoparticle film/Si heterojunction. Particularly, under 900 nm of 0.5 μW cm, the oxygen-deficient TiO nanoparticle film (TiO@TiOH core-shell nanoparticle film)/Si heterojunction shows high responsivity (R) of 336 A W, prominent sensitivity (S) of 1.3 × 10 cm W, accompanied with a fast rise and decay time of 6 and 5 ms, respectively. Significantly, the detectivity (D*) of the photodetector is up to 1.17 × 10 cm Hz W, which is better than that reported in metal oxide nanomaterials/Si heterojunction photodetectors, and is 4-5 orders of magnitude higher than some 2D nanosheets/Si heterojunctions of 10-10 cm Hz W, indicating the excellent ability to detect weak signals. The oxygen vacancies generated in amorphous shell TiOH make the Fermi level of TiO shift near the conduction band minimum and can lead to reduced dark current. The high absorption and reduced dark current of the heterojunction ensure excellent photoresponse properties of oxygen-deficient TiO nanoparticle film/Si heterojunction. The H-reduced oxygen-deficient amorphous shell may be an excellent candidate to enhance the photoresponse performance of metal oxide/Si heterojunction.
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http://dx.doi.org/10.1088/1361-6528/ab2e32 | DOI Listing |
Dalton Trans
August 2021
College of Optical and Electronic Technology, China Jiliang University, Hangzhou 310018, P. R. China.
The homeostasis and imbalance of glutathione (GSH), an important antioxidant in organisms, are one of the key signals that reflect the health of organisms. In this paper, a novel SERS sensing platform based on Ag film@Si that self-assembled using silver nanospheres was proposed, which was used for the highly sensitive and selective detection of GSH. With the aid of an oil/water/oil three-phase system, the nano-silver film was self-assembled and finally deposited on silicon wafers.
View Article and Find Full Text PDFNanotechnology
October 2019
State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Qingdao 266580, Shandong, People's Republic of China. School of Materials Science and Engineering & College of Science, China University of Petroleum, Qingdao 266580, Shandong, People's Republic of China.
A simple hydrogenation treatment is used to synthesize unique oxygen-deficient TiO with a core/shell structure (TiO@TiOH), superior to the high H-pressure process (under 20 bar for five days). It is demonstrated that oxygen-deficient TiO nanoparticle film/Si heterojunction possesses improved photoresponse performance compared to the untreated TiO nanoparticle film/Si heterojunction. Particularly, under 900 nm of 0.
View Article and Find Full Text PDFStrong Coulomb interactions in monolayer transition metal dichalcogenides (TMDs) produce strongly bound excitons, trions, and biexcitons. The existence of multiexcitonic states has drawn tremendous attention because of its promising applications in quantum information. Combining different monolayer TMDs into van der Waals (vdW) heterostructures opens up opportunities to engineer exciton devices and bring new phenomena.
View Article and Find Full Text PDFSci Rep
August 2017
Institute of Fundamental and Frontier Science, University of Electronic Science and Technology of China, Chengdu, 610054, P. R. China.
To guide the design of plasmonic solar cells, theoretical investigation of core (metal)-shell (dielectric) nanoparticles for light absorption enhancement in thin film Si solar cells is performed. In contrast to the reported simulations and experimental results that rear-located surface plasmon on bare metallic nanoparticles is preferred, the core-shell nanoparticles demonstrate better performance when surface plasmon is located in front of a solar cell. This has been attributed to the enhanced forward scattering with vanishing backward scattering preserved over a wide spectral range in core-shell nanoparticles.
View Article and Find Full Text PDFPlasmonic resonances in metal nanoparticles are considered candidates for improved thin film Si photovoltaics. In periodic arrays the influence of collective modes can enhance the resonant properties of such arrays. We have investigated the use of periodic arrays of Al nanoparticles placed on the front of a thin film Si test solar cell.
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