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4篇 您的检索式:作者名="W.Tsang"
    题名 作者 年代 出处 被引量
1Long‐term outcome in localized extranodal mucosa‐associated lymphoid tissue lymphomas treated with radiotherapy显示文摘Jayant S.Goda MaryGospodarowicz MelaniaPintilie WoodrowWells David C.Hodgson AlexanderSun MichealCrump Richard W.Tsang 2010Cancer2010,,16:1
2Gastrointestinal symptoms in Chinese patients with Type 2 diabetes mellitus显示文摘G. T. C.Ko W. ‐B.Chan J. C. N.Chan L. W. W.Tsang C. S.Cockram 2001Diabetic Medicine2001,,8:1
3The Effects of Transport Density on Cortisol Levels in Juvenile Winter Flounder, Pseudopleuronectes americanus显示文摘James A.Sulikowski Elizabeth A.Fairchild NathanRennels W.HunttingHowell Paul C. W.Tsang 2006Journal of the World Aquaculture Society2006,,1:1
4Controllable optical emission wavelength in all-inorganic halide perovskite alloy microplates grown by two-step chemical vapor deposition显示文摘All-inorganic halide perovskites(IHP),CsPbX_(3)(X=Cl,Br,I)exhibiting efficient optical emissions within the spectral range of 410 to 730 nm are potential candidates for many optoelectronic devices.Anion alloying of these IHPs is expected to achieve tunable emission wavelength covering the entire visible spectrum.Here,we developed a two-step chemical vapor deposition(CVD)process for growing quaternary IHP CsPbX_(3)(X=Cl/Br and Br/I)alloys.By exploiting the fast diffusion of halide anions in IHPs,the alloy composition can be precisely controlled by the growth time of the respective layers once the growth of the individual ternary IHP is optimized.Hence complexities in the multi-parameter optimization in the conventional CVD growth of quaternary alloys can be mitigated.Using this process,we synthesized single crystalline,homogeneous and thermally stable CsPbCl3_((1−X))Br_(3x)and CsPbBr3_((1−X))I_(3x)perovskites alloy microplates and demonstrated continuously tunable emission covering the spectrum from 428 to 715 nm by varying the halide compositions in the alloys.These alloy microplates also exhibit room temperature amplified spontaneous emissions(ASE)along with strong photonic discharges from the microplate’s edges and hence are potentially useful as a gain medium as well as optical cavities for emissions with wavelengths covering the visible spectrum.Mohammad K.Hossain Pengfei Guo Wayesh Qarony Yuen H.Tsang Chaoping Liu Sai W.Tsang Johnny C.Ho Kin M.Yu 2020Nano Research2020,13,11:0
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