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  • HUST|唐江教授课题组|高效稳定发光的锑掺杂Cs2SnCl6材料
    HUST|唐江教授课题组|高效稳定发光的锑掺杂Cs2SnCl6材料 2020-01-15

    铅基钙钛矿具有良好的光致发光性能,在显示、照明等方面具有潜在应用。然而,铅的毒性和环境敏感性阻碍了它们的发展。本文设计合成了一种新型无铅锑掺杂无机钙钛矿变体Cs2SnCl6: Sb。Cs2SnCl6:Sb材料表现出宽光谱的橙红色荧光,光致发光量子产率(PLQY)为37%,并且浸泡在纯水中依旧表现出优异的光谱稳定性。本文是华中科技大学武汉光电国家研究中心唐江教授课题组在Frontiers of Optoelectronics期刊2019年第4期上发表的一篇关于...

  • 【JIOHS】Virtual Issue on Phototherapy
    【JIOHS】Virtual Issue on Phototherapy 2020-01-14

    Phototherapy1) Zhifang Li, Haiyu Chen, Feifan Zhou, Hui Li and Wei R. Chen. Interstitial photoacoustic technique and computational simulation for temperature distribution and tissue optical properties in interstitial laser photothermal interaction. Journal of Innovative Optical Health Sciences20 Nov 20172) Xiaoju Men and Zhen Yuan. Multifunctional conjugated polymer nanoparticles for photoacous...

  • HUST|韩宏伟教授课题组|可印刷介观钙钛矿太阳能电池二氧化钛层的丝网印刷工艺控制
    HUST|韩宏伟教授课题组|可印刷介观钙钛矿太阳能电池二氧化钛层的丝… 2020-01-13

    可印刷介观钙钛矿太阳能电池因具有制备工艺简单、原材料成本低廉和稳定性优异等技术特点而倍受关注。其特点是在透明的导电基底上通过丝网印刷工艺逐层沉积二氧化钛纳米晶层、二氧化锆间隔层和碳对电极层,然后填充钙钛矿活性材料,完成器件制备。其中,二氧化钛纳米晶层的厚度约500~600纳米,其厚度和均匀度的控制,直接影响所制备器件的光电转换效率。本文是华中科技大学武汉光电国家研究中心韩宏伟教授课题组在Frontiers of O...

  • 【FOE】Call for papers: the special issue of Frontiers of Optoelectroncs on Biomedical Optics
    【FOE】Call for papers: the special issue of Frontiers of Opto… 2020-01-09

       Special Issue Editors: Dan Zhu, Huazhong University of Science and Technology, China (Lead Editor)Walter Blondel, Université de Lorraine, FranceJunle Qu, Shenzhen University, ChinaXueding Wang, University of Michigan, USASihua Yang, South China Normal University, ChinaBiomedical optics is a highly interdisciplinary field where physicists, chemists, biologists, physicians and engineer...

  • 【FOE】2019年第四期文章目录
    【FOE】2019年第四期文章目录 2020-01-08

    COMMENT 最小的纳米线光谱仪Review on partially coherent vortex beamsJianji DONG摘要:剑桥大学的Yang Z等人设计并制作了一种超小型显微光谱仪,能够在可见光范围内进行精确的计算光谱重建,研究成果发表在Science, 2019, 365(6457): 1017–1020。这项工作将为许多小型光谱仪的应用创造新的机遇。Cite this article: Jianji DONG. The smallest nanowire spectrometers[J]. Frontiers of Optoelectronics, 2019, 12(4):...

  • 【FOE】 Call for Papers: Special Issue on Halide Perovskites: from Materials to Optoelectronic Devices
    【FOE】 Call for Papers: Special Issue on Halide Perovskites: … 2020-01-07

       客座编辑: 唐江教授,华中科技大学,中国李德慧教授,华中科技大学,中国钙钛矿化合物的研究已有几十年的历史,在钙钛矿太阳能电池的提出之后则引起了人们的广泛关注。钙钛矿具有典型的ABX3结构,具有可调谐的带隙、高的载流子迁移率、长的载流子扩散长度、强的光吸收和高的光致发光效率。这些优异的特性、简单的薄膜制备工艺和可用溶液法加工的特性,使得钙钛矿不仅可以作为太阳能电池的新材料,还可以应用于光电探测器、...

  • 【JIOHS】Call for papers:Special Issue on the International Conference on Nanophotonics (ICNP)
    【JIOHS】Call for papers:Special Issue on the International Co… 2019-12-27

    special issue:The International Conference on Nanophotonics (ICNP) Junle Qu Anderson S. L. Gomes Liwei Liu Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education andGuangdong Province, College of Physics and Optoelectronic Engineering, Shenzhen University,Shenzhen 518060, P. R. China jlqu@szu.edu.cn andersonslgomes@gmail.com liulw@szu.edu.cnCall for Papers: The Internat...

  • 【JIOHS】Call for papers:Special Issue on Terahertz Technologies and Their Biomedical Applications
    【JIOHS】Call for papers:Special Issue on Terahertz Technologi… 2019-12-25

    Call for PapersSpecial Issue onTerahertz Technologies and Their Biomedical ApplicationsThis special issue is in connection with the International Symposium on Ultrafast Phenomena and Terahertz Waves (ISUPTW) 2020. Established in 2002, this biennial conference is devoted to strengthening collaboration among researchers and promoting development in the science, technology and application of terah...

  • 【JIOHS】Call for Papers:Special Issue on Two-Dimensional Materials and Their Bio-photonic Applications
    【JIOHS】Call for Papers:Special Issue on Two-Dimensional Mat… 2019-12-25

    Call for PapersSpecial Issue onTwo-Dimensional Materials and Their Bio-photonic ApplicationsEmerging two-dimensional (2D) materials have attracted considerable attention on applications in electronics, optoelectronics, batteries as well as biomedicine in recent years, due to their unique physicochemical properties. With the intrinsic fluorescence and photoacoustic properties, 2D materials have ...

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