参考文献

1 Förster T. Zwischenmolekulare Energiewanderung und FluoreszenzJ. Annalen der Physik 1948 4371-2): 55-75.

2 Stryer L Haugland R P. Energy transfer a spectroscopic rulerJ. Proceedings of the National Academy of Sciences of the United States of America 1967 582): 719-726.

3 Stryer L. Fluorescence energy transfer as a spectroscopic rulerJ. Annual Review of Biochemistry 1978 47 819-846.

4 Kenworthy A K. Imaging protein-protein interactions using fluorescence resonance energy transfer microscopyJ. MethodsSan Diego Calif), 2001 243): 289-296.

5 Maurel D Comps-Agrar L Brock C et al. Cell-surface protein-protein interaction analysis with time-resolved FRET and snap-tag technologies application to GPCR oligomerizationJ. Nature Methods 2008 56): 561-567.

6 Xu Q H Gaylord B S Wang S et al. Time-resolved energy transfer in DNA sequence detection using water-soluble conjugated polymers the role of electrostatic and hydrophobic interactionsJ. Proceedings of the National Academy of Sciences of the United States of America 2004 10132): 11634-11639.

7 Wahlroos R Toivonen J Tirri M et al. Two-photon excited fluorescence energy transfer a study based on oligonucleotide rulersJ. Journal of Fluorescence 2006 163): 379-386.

8 Liu L Dong X Lian W et al. Homogeneous competitive hybridization assay based on two-photon excitation fluorescence resonance energy transferJ. Analytical Chemistry 2010 824): 1381-1388.

9 Liu L Li H Qiu T et al. Construction of a molecular beacon based on two-photon excited fluorescence resonance energy transfer with quantum dot as donorJ. Chemical Communications 2011 479): 2622-2624.

10 Dos Remedios C G Moens P D. Fluorescence resonance energy transfer spectroscopy is a reliable “ruler” for measuring structural changes in proteins. Dispelling the problem of the unknown orientation factorJ. Journal of Structural Biology 1995 1152): 175-185.

11 Resch-Genger U Grabolle M Cavaliere-Jaricot S et al. Quantum dots versus organic dyes as fluorescent labelsJ. Nature methods 2008 59): 763-775.

12 Waggoner A. Fluorescent labels for proteomics and genomicsJ. Current Opinion in Chemical Biology 2006 101): 62-66.

13 Shaner N C Steinbach P A Tsien R Y. A guide to choosing fluorescent proteinsJ. Nature Methods 2005 212): 905-909.

14 Cannizzo A Van Mourik F Gawelda W et al. Broadband femtosecond fluorescence spectroscopy ofRubpy3 2+J. Angewandte Chemie 2010 11819): 3246-3248.

15 Hemmilä I Laitala V. Progress in lanthanides as luminescent probesJ. Journal of Fluorescence 2005 154): 529-542.

16 Cardoso Dos Santos M Algar W R Medintz I L et al. Quantum dots for Förster Resonance Energy TransferFRET)[J. TrAC Trends in Analytical Chemistry 2020 125 115819.

17 Miao S Liang K Kong B. Förster resonance energy transferFRET paired carbon dot-based complex nanoprobes versatile platforms for sensing and imaging applicationsJ. Materials Chemistry Frontiers 2020 41): 128-139.

18 Lin R Chen Y Tao G et al. FRET-based Ratiometric MicroRNA Detection with G-quadruplex-stabilized Silver NanoclustersJ. Acta Chimica Sinica Chinese Edition 2017 7511): 1103.

19 Wu Z Li H Liu Z. An aptasensor for carcinoembryonic antigen based on upconversion fluorescence resonance energy transferJ. Sensors and Actuators B Chemical 2015 206 531-537.

20 Yuan Y Liu Z. An effective approach to enhanced energy-transfer efficiency from up-converting phosphors and increased assay sensitivityJ. Chemical Communications 2012 4860): 7510-7512.

21 Miyawaki A Llopis J Heim R et al. Fluorescent indicators for Ca2+ based on green fluorescent proteins and calmodulinJ. Nature 1997 3886645): 882-887.

22 Shiraki T Tsuchiya Y Shinkai S. Ratiometric Fluorescent Sensor for 246-Trinitrotoluene Designed Based on Energy Transfer between Size-different Quantum DotsJ. Chemistry Letters 2010 393): 156-158.

23 Dong B Li H Sun J et al. Homogeneous fluorescent immunoassay for the simultaneous detection of chloramphenicol and amantadine via the duplex FRET between carbon dots and WS2 nanosheetsJ. Food Chemistry 2020 327 127107.

24 Rong Y Li H Ouyang Q et al. Rapid and sensitive detection of diazinon in food based on the FRET between rare-earth doped upconversion nanoparticles and graphene oxideJ. Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy 2020 239 118500.

25 Duan L Du X Zhao H et al. Sensitive and selective sensing system of metallothioneins based on carbon quantum dots and gold nanoparticlesJ. Analytica Chimica Acta 2020 1125 177-186.