|
[1]
|
庞俊峰, 于卓, 梁哲, 等. 量子点荧光探针的应用及其在植物中的发展前景[J]. 中国农业科技导报, 2009, 11(1): 19-26.
|
|
[2]
|
王传涛, 刘道杰, 王术皓. 量子点在标记免疫分析中的应用研究进展[J]. 临床检验杂志, 2007, 25(1): 73-74.
|
|
[3]
|
徐敦明, 张兴. 农药酶免疫分析技术研究进展[J]. 农药科学与管理, 2004, 25(9): 27-31.
|
|
[4]
|
王丁泉. 放射免疫分析技术的发展现状与展望[J]. 标记免疫分析与临床, 2012, 19(4): 249-251.
|
|
[5]
|
张振亚, 梅兴国. 现代荧光免疫分析技术应用及其新发展[J]. 生物技术通讯, 2006, 17(4): 677-680.
|
|
[6]
|
余小华, 骆磊, 朱郧鹤, 等. 化学发光免疫分析法和放射免疫分析法检测血浆甲状腺球蛋白的结果对比分析[J]. 标记免疫分析与临床, 2012, 19(1): 54-56.
|
|
[7]
|
张友华. 化学发光免疫分析技术及其应用研究进展[J]. 医药卫生(文摘版), 2016(27): 25.
|
|
[8]
|
杭建峰, 吴英松, 李明. 时间分辨荧光免疫分析的研究进展及应用[J]. 热带医学杂志, 2004, 4(3): 340-343, 304.
|
|
[9]
|
Goldman, E.R., Anderson, G.P., Tran, P.T., et al. (2002) Conjugation of Luminescent Quantum Dots with Antibodies Using an Engineered Adaptor Protein to Provide New Reagents for Fluoroimmunoassays. Analytical Chemistry, 74, 841-847. [Google Scholar] [CrossRef] [PubMed]
|
|
[10]
|
李玲, 武春梅, 苗晋华. 量子点技术在荧光标记免疫分析中的发展与应用[J]. 国际免疫学杂志, 2013, 36(3): 196-199.
|
|
[11]
|
李圆圆, 李培武, 张奇, 等. 量子点标记荧光免疫法检测花生中黄曲霉素B1 [J]. 中国油料作物学报, 2012, 34(4): 438-442.
|
|
[12]
|
Goldman, E.R., Clapp, A.R., Anderson, G.P., et al. (2004) Multiplexed Toxin Analysis Using Four Colors of Quantum Dots Fluorore-agents. Analytical Chemistry, 76, 684-688. [Google Scholar] [CrossRef] [PubMed]
|
|
[13]
|
庄庆一, 由芳田, 彭洪尚. 基于CdSe@ZnS量子点水溶性纳米粒子的制备及荧光性能[J]. 发光学报, 2018, 39(10): 1339-1346.
|
|
[14]
|
Lingao, R, Mei G, Xiangyi H, et al. (2018) Assay of Single Cell Apoptosis by Ensemble and Single Molecule Fluorescence Methods: Annexin-V/PEG Functionalized Quantum Dots as Probes. Langmuir, 34, 10040-10047.
|
|
[15]
|
Sun, B.L., Wang, Y.P., Li, D., et al. (2020) Development of a Sensitive Electrochemical Immunosensor Using Polyaniline Func-tionalized Graphene Quantum Dots for Detecting a Depression Marker. Materials Science and Engineering C, 111, Article ID: 110797. [Google Scholar] [CrossRef] [PubMed]
|
|
[16]
|
Yan, P., Li, R.Y., Yang, Y.Q., et al. (2018) Pentaethylenehexamine and D-Penicillamine Co-Functionalized Graphene Quantum Dots for Fluorescent Detection of Mercury(II) and Glutathione and Bioimaging. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 203, 139-146. [Google Scholar] [CrossRef] [PubMed]
|
|
[17]
|
杨广武, 张守超, 王翠红, 等. 氧化锌量子点和碳量子点及其复合物的制备与发光性能的研究[J]. 发光学报, 2017, 38(10): 1287-1294.
|
|
[18]
|
Qu, Z.Y., Li, N., Na, W.D. and Su, X.G. (2019) A Novel Fluorescence “Turn Off-On” Nanosensor for Sensitivity Detection Acid Phospha-tase and Inhibitor Based on Glutathione-Functionalized Graphene Quantum Dots. Talanta, 192, 61-68. [Google Scholar] [CrossRef] [PubMed]
|
|
[19]
|
杜青青, 张平平, 谈琼, 等. 硅烷功能化碳点荧光探针检测槲皮素[J]. 分析测试学报, 2019, 38(7): 835-839.
|
|
[20]
|
Xu, J., Yu, X.M., Xie, L.S., et al. (2020) Facile Incorporation of DNA-Templated Quantum Dots for Sensitive Electrochemical Detection of the Oral Cancer Biomarker Interleukin-8. Analytical and Bioanalytical Chemistry, 412, 2599-2606. [Google Scholar] [CrossRef] [PubMed]
|
|
[21]
|
Vashisht, D., Sharma, E., Kaur, M., et al. (2020) Solvothermal Assisted Phosphate Functionalized Graphitic Carbon Nitride Quantum Dots for Optical Sensing of Fe Ions and Its Thermodynamic Aspects. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 228, Article ID: 117773. [Google Scholar] [CrossRef] [PubMed]
|
|
[22]
|
Wang, X.D., Liu, Z.Q., Gao, P.F., Li, Y.J. and Qu, X.Y. (2020) Surface Functionalized Quantum Dots as Biosensor for Highly Selective and Sensitive Detection of PPB Level of Propafenone. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 227, Article ID: 117709. [Google Scholar] [CrossRef] [PubMed]
|
|
[23]
|
谢金润, 谢胜盛, 刘松新, 等. 量子点探针显影的应用研究进展[J]. 山东工业技术, 2016(23): 252-252.
|
|
[24]
|
来守军. 量子点光学传感器的研究进展[J]. 材料导报, 2008, 22(9): 8-10, 25.
|
|
[25]
|
张蓉, 王志鹏, 邓大伟. 功能化量子点在生物检测和生物成像中的应用[J]. 南京晓庄学院学报, 2018, 34(6): 23-37.
|
|
[26]
|
Mulder, W.J.M., Strijkers, G.J., Nicolay, K. and Griffioen, A.W. (2010) Quantum Dots for Multimodal Molecular Imaging of Angiogenesis. Angiogenesis, 13, 131-134. [Google Scholar] [CrossRef] [PubMed]
|