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18篇 您的检索式:作者名="Yuwaraj"
    题名 作者 年代 出处 被引量
1Understanding the multifunctionality in Cu-doped BiVO_4 semiconductor photocatalyst显示文摘A visible light-induced, Cu-doped BiVO_4 photocatalyst was synthesized by a microwave hydrothermal method. The photocatalytic efficiency was investigated in the degradation of model water pollutants like Methylene Blue(dye) and ibuprofen(pharmaceuticals), as well as the inactivation of Escherichia coli(bacteria). The Cu-doped BiVO4 samples showed better efficiency than undoped BiVO_4, and the 1 wt.% Cu-doped BiVO_4 sample showed the best efficiency. The degradation of Methylene Blue reached 95%, while the degradation of ibuprofen reached 75%, and the inactivation of E. coli reached 85% in irradiation with visible light. The appearance of additional absorption band shoulders and widening of the optical absorption in the visible range makes the prepared powder an efficient visible light-driven photocatalyst. Moreover, the formation of an in-gap energy state just above the valance band as determined by density functional theory(DFT) first principle calculation, facilitates the wider optical absorption range of the doped system. Similarly, this in-gap energy state also acts as an electron trap, which is favorable for the efficient separation and photoexcited charge carriers' transfer process. The formation of oxygen vacancies due to doping also improved the separation of the charge carrier, which promoted the trapping of electrons and inhibited electron hole recombination, thus increasing the photocatalytic activity. No decrease in the efficiency of the 1 wt.% Cu-doped BiVO_4 photocatalyst in the degradation of ibuprofen over three consecutive cycles revealed the stability of the photocatalyst towards photocorrosion. These findings highlight the multifunctional applications of Cu-doped BiVO_4 in wastewater containing multiple pollutants.Chhabilal Regmi Yuwaraj K.Kshetri Ramesh Prasad PANDey Tae-Ho Kim Gobinda Gyawali Soo Wohn Lee 2019Journal of Environmental Sciences2019,31,1:12
2Genomic Characterization, Localization, and Functional Expression of FGL2, the Human Gene Encoding Fibroleukin: A Novel Human Procoagulant显示文摘Sivashankary Yuwaraj JinWen Ding Mingfeng Liu Philip A. Marsden Gary A. Levy 2001Genomics2001,,3:1
3On the free vibration analysis of laminated composite and sandwich plates: a review of recent literature with some numerical results 显示文摘Atteshamuddin S Sayyad Yuwaraj M Ghugal 2015Composite Structures2015,129,:1
4Genomic characterization,localization,and functional expression of FGL2,the human gene encoding fibroleukin:a novel human procoagulant显示文摘YUWARAJ S DING J W LIU M F 2001Genomics2001,71,3:1
5The effect of various stresses, corticosteroids and adrenergic agents on phagocytosis in the rainbowtrout Oncorhynchus mykiss 显示文摘Narnaware Yuwaraj K Baker I Bridget TomLinson G Mike 1994Fish Physiology and Biochemistry1994,13,1:1
6Brain regulation of feeding behavior and food intake in fish显示文摘LIN X W HELENE V YUWARAJ N 2000Comparative Biochemistry and Physiology Part A2000,126,:1
7Genomic characterization, localization, and functional expression of fgl2, the human gene encoding fibroleukin: a novel human procoagulant显示文摘Yuwaraj S Ding J Liu M 2001Genomics2001,71,3:1
8Genomic characterization,localization and functional expression of FGL2,the human gene encoding fibroleukin:a novel human procoagulant显示文摘YUWARAJ S DING JW LIU MF 2001Genomics2001,71,3:1
9Performance of alkali - resistant glass fiber reinforced concrete显示文摘Yuwaraj M Ghugal Santosh B Deshmukh 2006Journal of Reinforced Plastics and Composites2006,25,6:1
10Genomic characterization,localization,and functional expression of FGL2,the human gene encoding fibroleukin:a novel human procoagulant显示文摘Yuwaraj S Ding J Liu M 2001Genomics2001,71,3:1
11Genomic characterization, localization, and functional expression of fgl 2, the human gene encoding fibroleukin: a novel human procoagulant显示文摘Yuwaraj S Ding JW Liu MF 2001Genomics2001,71,3:1
12Genomic characterization,localization,and functional expression of FGL2,the human gene encoding fibroleukin:a novel human procoagulant显示文摘 Ding J W Liu M F 2001Genomics2001,71,:1
13Expression of MTAP inhibits tumor-related phenotypes in HT1080cells via a mechanism unrelated to its enzymatic function显示文摘Baiqing Tang Yuwaraj Kadariya 2015G3(Bethesda)2015,5,1:1
14IR to visible upconversion luminescence of transparent(Mg Er)-c~-Sialon ceramics 显示文摘Bhupendra Joshi Kshetri Yuwaraj K Rajesh Adhikari 2015Ceramics International2015,41,5:1
15Genomic characterization, localization, and functional expression of fgl2, the human gene encoding fibroleukin: A novel human procoagulant显示文摘YUWARAJ S DING J LIU M F 2001Genomics2001,71,:1
16Influence of diet composition on food intake and neuropeptide Y(NPY)gene expression in goldfish brain显示文摘Yuwaraj K N Richard E P 2002Regulatory Peptides2002,103,:1
17Genomic characterization localization,and functional expression of fgl2,the human gene encoding fibroleukin:a novel human procoagulant显示文摘Yuwaraj S Ding JW Liu MF 2001Genomics2001,71,3:1
18Spectroscopic properties of Er^(3+)/Ho^(3+)/Tm^(3+)dopedα-SiAlON ceramics under 793 nm excitation显示文摘This paper reports the first demonstration of super broadband infrared downshifting emission extending from1640 nm to 2200 nm with the full width at half maximum of~417 nm in lanthanides(Er^(3+),Ho^(3+),andTm^(3+))-dopedα-SiAlON ceramics upon 793 nm excitation.Usingα-Si;N;ceramic as a precursor the lanthanides-dopedα-SiAlON ceramics were synthesized by the hot-press method.The lanthanides induced no significant secondary phases in the sinteredα-SiAlON ceramics.Strong two-photon upconversion emission bands centered at 547,671 and 694 nm have also been observed upon 793 nm excitation.The time-resolved measurements of the upconversion emissions confirm that the efficient energy transfer among the Er^(3+),Ho^(3+)and Tm^(3+)ions as well as the ground state absorption in Er^(3+)and Tm^(3+)are responsible for the observed spectroscopic properties.Bina Chaudhary Dhani Ram Dhakal Tae-Ho Kim Soo Wohn Lee Yuwaraj K.Kshetri 2021Progress in Natural Science:Materials International2021,31,6:0
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