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基于胶体量子点自组装的柔性衬底激光器
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作者 陈伟国 刘瑞祥 樊逢佳 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2023年第6期679-684,I0056,共7页
凭借着波长可调、窄的光谱线宽以及高的光强,胶体量子点激光器在柔性光电器件中具有广阔的应用前景.然而,柔性衬底量子点激光器的制备面临很大挑战,这主要是由于基于微纳加工工艺的光学谐振腔通常只能在刚性衬底中加工。本文提出了一种... 凭借着波长可调、窄的光谱线宽以及高的光强,胶体量子点激光器在柔性光电器件中具有广阔的应用前景.然而,柔性衬底量子点激光器的制备面临很大挑战,这主要是由于基于微纳加工工艺的光学谐振腔通常只能在刚性衬底中加工。本文提出了一种简单的液相自组装方法来制备柔性衬底胶体量子点超颗粒激光器.由于没有添加表面活性剂,该量子点超颗粒具有光滑的球型表面,能够作为高质量的回音壁模式谐振腔提供光反馈.在飞秒脉冲激光的激发下,该量子点激光器的激光阈值低至54μJ/cm^(2).而且,该激光谐振腔的品质因子(Q=963)是采用表面活性剂组装的量子点激光器的两倍.此外,作为不依赖衬,底的发光光源,该量子点激光器能够很方便地沉积在柔性衬底中,如纸或者布等,并实现激光.而且,量子点激光器具有非常高的激光稳定性:在被高能量飞秒脉冲光连续激发400分钟之后,该量子点激光器的激光强度依然能够保持在初始值的85.7%.作为一种具有高强度、能够沉积在柔性衬底中且性能稳定的激光光源,胶体量子点超颗粒激光器在可穿戴设备和医疗诊断中具有潜在的应用前景. 展开更多
关键词 胶体量子点 超颗粒 激光 柔性器件
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Anti-photocorrosive photoanode with RGO/PdS as hole extraction layer 被引量:1
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作者 Guo-Qiang Liu Yi Li +8 位作者 Yuan Yang Feng-Jia Fan Guang-Hao Ding Liang Wu Jun Hu Jin-Lan Peng Qian Xu Jun-Fa Zhu Shu-Hong Yu 《Science China Materials》 SCIE EI CSCD 2020年第10期1939-1947,共9页
Photoelectrochemical(PEC)hydrogen production is of great interest as an ideal avenue towards clean and renewable energy.However,the instability and low energy conversion efficiency of photoanodes hinder their practica... Photoelectrochemical(PEC)hydrogen production is of great interest as an ideal avenue towards clean and renewable energy.However,the instability and low energy conversion efficiency of photoanodes hinder their practical applications.Here we address these issues by introducing a hole extraction layer(HEL)which could rapidly transfer and consume photogenerated holes.The HEL is constructed by reduced graphene oxide(RGO)and other cocatalysts that enable rapid transfer and subsequent consumption of holes,respectively.Specifically,we showcase a high-stability photoanode composed of CdSeTe nanowires(CST NWs)and RGO/PdS nanoparticles(PdS NPs)based HEL.The photoanode achieves excellent photocorrosion resistance,which allows stable hydrogen evolution for>2 h at 0.5 VRHE. 展开更多
关键词 CdSeTe PHOTOELECTROCHEMISTRY hole extraction layer PHOTOCORROSION PHOTOANODE
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