Infrared and Laser Engineering, Volume. 50, Issue 7, 20200436(2021)

Long-distance recognition of infrared quantum dot materials

Rui Geng, Kang Zhao, and Qingshan Chen
Author Affiliations
  • School of Instrument Science and Optoelectronics Engineering, Beijing Information Science & Technology University, Beijing 100192, China
  • show less
    References(33)

    [1] Cheng Cheng, Jiang Huilv. Research progress of CdSe/ZnS and PbSe-quantum-dot fibers and fiber amplifiers[J]. Infrared and Laser Engineering, 40, 1873-1880(2011).

    [2] Wang Zihao, Fanto Michael L, Steidle Jeffrey A, et al. Passively mode-locked InAs quantum dot lasers on a silicon substrate by Pd-GaAs wafer bonding[J]. Applied Physics Letters, 110, 141110(2017).

    [3] Tang Jing, Sargent Edward H. Infrared colloidal quantum dots for photovoltaics: Fundamentals and recent progress[J]. Advanced Materials, 23, 12-29(2011).

    [4] Chen Qian, Gao Fangfang, Wang Huan, et al. Synthesis and characterization of PbS quantum dots sensitized sensitized titanium dioxide nanotubes solar cells[J]. Journal of the Chinese Ceramic Society, 46, 1169-1172(2018).

    [5] Song Xiaoxian, Zhang Yating, Zhang Haiting, et al. Graphene and PbS quantum dot hybrid vertical phototransistor[J]. Nanotechnology, 28, 145201(2017).

    [6] Yang Qi, Shen Jun, Wei Xingzhan, et al. Recent progress on the mechanism and device structure of graphene-based infrared detectors[J]. Infrared and Laser Engineering, 49, 0103003(2020).

    [7] Zhao Shuangyi, Wang Yue, Huang Wen, et al. Developing near-infrared quantum-dot light-emitting diodes to mimic synaptic plasticity[J]. Science China Materials, 62, 1470-1478(2019).

    [8] Wijaya Hadhi, Darwan Daryl, Zhao Xiaofei, et al. Efficient near-infrared light-emitting diodes based on ln(Zn)As-ln(Zn)P-CaP-ZnS quantum dots[J]. Advanced Functional Materials, 30, 1906483(2020).

    [9] Medintz Igorl, Uyeda H Tetsuo, Goldman Ellen R. Quantum dot bioconjugates for imaging, labelling and sensing[J]. Nature Materials, 4, 435-446(2005).

    [10] Chen Yongfen, Rosenzweig Zeev. Luminescent CdS quantum dots as selective ion probes[J]. Analytical Chemistry, 74, 5132-5138(2002).

    [11] You J Q, Yan D, He Y, et al. Polyethyleneimine-protected Ag2S quantum dots for near-infrared fluorescence-enhanced detection of trace-level Hg2+ in water[J]. Journal of Water Chemistry and Technology, 42, 36-44(2020).

    [12] Xing Xiaoxue, Wang Xianwei, Qin Hongwu, et al. CH4 detection based on near-infrared luminescence of PbSe quantum dots[J]. Chinese Optics, 11, 662-668(2018).

    [13] Yu Zhuangzhuang, Kang Tianfang, Lu Liping. An electro-chemical molecularly imprinted sensor for tetracycline based on gold nanoparticles and graphene quantum dots[J]. Journal of Instrumental Analysis, 39, 182-189(2020).

    [14] Zeng Yunlong, Zhao Min, Zhang Min, et al. A novel near-infrared fluorescence aptasensor assay for ochratoxin A in traditional chinese medicine[J]. Chinese Journal of Luminescence, 40, 115-121(2019).

    [15] Rahul S Tade, Pravin O Patil. Green synthesis of fluorescent graphene quantum dots and its application in selective curcumin detection[J]. Current Applied Physics, 20, 1226-1236(2020).

    [16] Li Wenshuai, Huang Saipeng, Wen Huiyun et al. Fluorescent recognition and selective detection of nitrite ions with carbon quantum dots[J]. Analytical and Bioanalytical Chemistry, 412, 993-1002(2020).

    [17] Zhang Dan, Yu Jinhai, Li Dongze, et al. Preparation of high quality Ag2S quantum dots with near-infrared emission and their applications in bioimaging[J]. Chemical Journal of Chinese Universities, 39, 623-628(2018).

    [18] Zhang Yan, Wei Yong, Dai Yiwen, et al. Targeted labeling and biological toxicity of Zn3In2S6-CEA quantum dot fluorescent probe to colon cancer cell line SW480[J]. Chinese Journal of Cancer Prevention and Treatment, 25, 615-621(2018).

    [19] Wang Juncheng, Yang Feifei, Gao Guanbin, et al. Ag doped HgS quantum dots: a pH-tunable near-infrared-II fluorescent nanoprobe[J]. Journal of Inorganic Materials, 34, 1156-1160(2019).

    [20] Kalkal Ashish, Pradhan Rangadhar, Kadian Sachin, et al. Biofunctionalized graphene quantum dots based fluorescent biosensor towards efficient detection of small cell lung cancer[J]. ACS Applied Bio Materials, 3, 4922-4932(2020).

    [21] Sarkar Suresh, Le Phuong, Geng Junlong, et al. Short-wave infrared quantum dots with compact sizes as molecular probes for fluorescence microscopy[J]. Journal of the American Chemical Society, 142, 3449-3462(2020).

    [22] Morgan Nicole Y, English Sean, Chen Wei, et al. Real time in vivo non-invasive optical imaging using near-infrared fluorescent quantum dots[J]. Academic Radiology, 12, 313-323(2005).

    [23] Michalet X, Pinaud F F, Bentolila L A, et al. Quantum dots for live cells, in vivo imaging, and diagnostics[J]. Science, 307, 538-544(2005).

    [24] Yao Jun, Li Pingfan, Li Lin, et al. Biochemistry and biomedicine of quantum dots: from biodetection to bioimaging, drug discovery, diagnostics, and therapy[J]. Acta Biomaterialia, 74, 36-55(2018).

    [25] Cai Xiaoli, Luo Yanan, Zhang Weiying, et al. pH-Sensitive ZnO quantum dots–doxorubicin nanoparticles for lung cancer targeted drug delivery[J]. ACS Applied Materials & Interfaces, 8, 22442-22450(2016).

    [26] Fakayode Olayemi J, Tsolekile Ncediwe, Songca Sandile P, et al. Applications of functionalized nanomaterials in photo-dynamic therapy[J]. Biophysical Reviews, 10, 49-67(2018).

    [27] Tong Liying, Fu Hao, Jia Zhijian, et al. Quantitative detection of dual miRNAs based on enzyme-sheared quantum dot fluorescence amplification[J]. Acta Photonica Sinica, 49, 0516001(2020).

    [28] Mohamed Abdel-Salam, Basma Omran, Kathryn Whitehead, et al. Superior properties and biomedical applications of microorganism-derived fluorescent quantum dots[J]. Molecules, 25, 4486(2020).

    [29] Xu Bo, Qian Zhiyu. Research of anti-counterfeiting technology based on near-infrared fluorescent quantum dots[J]. Computer Measurement & Control, 18, 878-880(2010).

    [30] Yan Lei, Yu Yanlin. Microwave-assisted synthesis of S, N-codoped carbon dots with strong emission and application as anti-counterfeit ink[J]. Journal of Criminal Investigation Police University of China, 112-116(2018).

    [31] Liu Yanhong, Wang Na, Yu Xiaoqi, et al. Preparation and performance analysis of invisible fluorescent ink based on carbon dots[J]. Research and Exploration in Laboratory, 39, 1-4, 33(2020).

    [32] Geng Rui, Zhang Yujiang, Chen Qingshan. Research on photoluminescence characteristics of infrared PbX quantum dots[J]. Infrared Technology, 39, 125-129, 135(2017).

    [33] Cheng Cheng, Li Jiejie. Experimental measurement and determination of photoluminescence lifetime of PbS quantum dots[J]. Acta Optica Sinica, 37, 0130001(2017).

    CLP Journals

    [1] Yunfei Xu, Zining Liu, Peng Wang. PbS quantum dot P-N homojunction photodetector[J]. Infrared and Laser Engineering, 2022, 51(10): 20220053

    Tools

    Get Citation

    Copy Citation Text

    Rui Geng, Kang Zhao, Qingshan Chen. Long-distance recognition of infrared quantum dot materials[J]. Infrared and Laser Engineering, 2021, 50(7): 20200436

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Infrared technology and application

    Received: Dec. 15, 2020

    Accepted: --

    Published Online: Aug. 23, 2021

    The Author Email:

    DOI:10.3788/IRLA20200436

    Topics