quantum dot-based concentric fret configuration (Quantum Dot Inc)
90
Structured Review
Quantum Dot Inc
quantum dot-based concentric fret configuration
Quantum Dot Based Concentric Fret Configuration, supplied by Quantum Dot Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/quantum+dot-based+concentric+fret+configuration/quantum+dot+based+concentric+fret+configuration/pm35300526-609-2-0
Average 90 stars, based on 1 article reviews
Quantum Dot Based Concentric Fret Configuration, supplied by Quantum Dot Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/quantum+dot-based+concentric+fret+configuration/quantum+dot+based+concentric+fret+configuration/pm35300526-609-2-0
Average 90 stars, based on 1 article reviews
quantum dot-based concentric fret configuration - by Bioz Stars,
2026-09
90/100 stars
Images
Related Articles
Activity Assay:Article Title: Expanded Quantum Dot-Based Concentric Förster Resonance Energy Transfer: Adding and Characterizing Energy-Transfer Pathways for Triply Multiplexed Biosensing Article Snippet: .. C 2015, 119, 26183−26195. (22) Wu, M.; Petryayeva, E.; Algar, W. R. Quantum Dot-Based Article Title: Aptamer induced multicoloured Au NCs-MoS 2 "switch on" fluorescence resonance energy transfer biosensor for dual color simultaneous detection of multiple tumor markers by single wavelength excitation. Article Snippet: Accepted Manuscript Aptamer induced multicoloured Au NCs-MoS2 “switch on” fluorescence resonance energy transfer biosensor for dual color simultaneous detection of multiple tumor markers by single wavelength excitation Shenghao Xu, Xiuying Feng, Teng Gao, Gufan Liu, Yaning Mao, Jiehua Lin, Xijuan Yu, Xiliang Luo PII: S0003-2670(17)30729-8 DOI: 10.1016/j.aca.2017.06.023 Reference: ACA 235271 To appear in: Analytica Chimica Acta Received Date: 26 March 2017 Revised Date: 2 June 2017 Accepted Date: 7 June 2017 Please cite this article as: S. Xu, X. Feng, T. Gao, G. Liu, Y. Mao, J. Lin, X. Yu, X. Luo, Aptamer induced multicoloured Au NCs-MoS2 “switch on” fluorescence resonance energy transfer biosensor for dual color simultaneous detection of multiple tumor markers by single wavelength excitation, Analytica Chimica Acta (2017), doi: 10.1016/j.aca.2017.06.023.. This is a PDF file of an unedited manuscript that has been accepted for publication.. As a service to our customers we are providing this early version of the manuscript. Article Title: QD-Biopolymer-TSPP Assembly as Efficient BiFRET Sensor for Ratiometric and Visual Detection of Zinc Ion. Article Snippet: In this work, we report a new type of quantum dot (QD)-based fluorescence resonance energy transfer (FRET) assembly and its utility for sensing Zn in different media.. The assembly on the QD scaffold is via first coating of poly(dA) homopolymer/double-stranded DNA, followed by loading of meso-tetra(4-sulfonatophenyl)porphine dihydrochloride (TSPP), both of which are electrostatic, offering the advantages of cost-efficiency and simplicity.. More importantly, the biopolymer coating minimizes the interfacial thickness to be ≤2 nm for QD-TSPP FRET, which results in improvements of up to 60-fold for single FRET efficiency and nearly 4-fold for total FRET efficiency of the QD-biopolymer-TSPP assemblies in comparison with silica-coating-based QD-TSPP assemblies. Article Title: A Heparin based dual ratiometric sensor for Thrombin. Article Snippet: Thrombin is an important enzyme that plays a pivotal role in the blood clotting pathways.. An imbalance in the activity of this enzyme is clinically known to be associated with various diseases, such as thrombosis, inflammation, atherosclerosis, and haemophilia, suggesting the need to devise sensors for Thrombin detection.. However, the majority of the fluorescence-based Thrombin assays rely on fluorescence labeling assays or Thrombin specific recognition biomolecules such as aptamers or antibody which requires sophisticated techniques and makes it very expensive. Article Title: Developing FRET Networks for Sensing. Article Snippet: .. Quantum dot-based Concentration Assay:Article Title: Expanded Quantum Dot-Based Concentric Förster Resonance Energy Transfer: Adding and Characterizing Energy-Transfer Pathways for Triply Multiplexed Biosensing Article Snippet: .. C 2015, 119, 26183−26195. (22) Wu, M.; Petryayeva, E.; Algar, W. R. Quantum Dot-Based Article Title: Aptamer induced multicoloured Au NCs-MoS 2 "switch on" fluorescence resonance energy transfer biosensor for dual color simultaneous detection of multiple tumor markers by single wavelength excitation. Article Snippet: Accepted Manuscript Aptamer induced multicoloured Au NCs-MoS2 “switch on” fluorescence resonance energy transfer biosensor for dual color simultaneous detection of multiple tumor markers by single wavelength excitation Shenghao Xu, Xiuying Feng, Teng Gao, Gufan Liu, Yaning Mao, Jiehua Lin, Xijuan Yu, Xiliang Luo PII: S0003-2670(17)30729-8 DOI: 10.1016/j.aca.2017.06.023 Reference: ACA 235271 To appear in: Analytica Chimica Acta Received Date: 26 March 2017 Revised Date: 2 June 2017 Accepted Date: 7 June 2017 Please cite this article as: S. Xu, X. Feng, T. Gao, G. Liu, Y. Mao, J. Lin, X. Yu, X. Luo, Aptamer induced multicoloured Au NCs-MoS2 “switch on” fluorescence resonance energy transfer biosensor for dual color simultaneous detection of multiple tumor markers by single wavelength excitation, Analytica Chimica Acta (2017), doi: 10.1016/j.aca.2017.06.023.. This is a PDF file of an unedited manuscript that has been accepted for publication.. As a service to our customers we are providing this early version of the manuscript. Article Title: QD-Biopolymer-TSPP Assembly as Efficient BiFRET Sensor for Ratiometric and Visual Detection of Zinc Ion. Article Snippet: In this work, we report a new type of quantum dot (QD)-based fluorescence resonance energy transfer (FRET) assembly and its utility for sensing Zn in different media.. The assembly on the QD scaffold is via first coating of poly(dA) homopolymer/double-stranded DNA, followed by loading of meso-tetra(4-sulfonatophenyl)porphine dihydrochloride (TSPP), both of which are electrostatic, offering the advantages of cost-efficiency and simplicity.. More importantly, the biopolymer coating minimizes the interfacial thickness to be ≤2 nm for QD-TSPP FRET, which results in improvements of up to 60-fold for single FRET efficiency and nearly 4-fold for total FRET efficiency of the QD-biopolymer-TSPP assemblies in comparison with silica-coating-based QD-TSPP assemblies. Article Title: A Heparin based dual ratiometric sensor for Thrombin. Article Snippet: Thrombin is an important enzyme that plays a pivotal role in the blood clotting pathways.. An imbalance in the activity of this enzyme is clinically known to be associated with various diseases, such as thrombosis, inflammation, atherosclerosis, and haemophilia, suggesting the need to devise sensors for Thrombin detection.. However, the majority of the fluorescence-based Thrombin assays rely on fluorescence labeling assays or Thrombin specific recognition biomolecules such as aptamers or antibody which requires sophisticated techniques and makes it very expensive. Article Title: Developing FRET Networks for Sensing. Article Snippet: .. Quantum dot-based other:Article Title: Concentric DNA Amplifier That Streamlines In-Solution Biorecognition and On-Particle Biocatalysis. Article Snippet: Subscriber access provided by UNIV OF NOTTINGHAM is published by the American Chemical Society.. 1155 Sixteenth Street N.W., Washington, DC 20036 Published by American Chemical Society.. Copyright © American Chemical Society. Article Title: FRET-Modulated Multihybrid Nanoparticles for Brightness-Equalized Single-Wavelength Barcoding. Article Snippet: Semiconductor quantum dots (QDs) are the most versatile fluorophores for Förster resonance energy transfer (FRET) because they can function as both donor and acceptor for a multitude of fluorophores.. However, a complete understanding of multi-donor-acceptor FRET networks on QDs and their full employment into advanced fluorescence sensing and imaging have not been accomplished.. Here, we provide a holistic photophysical analysis of such multi-donorQD-multi-acceptor FRET systems using time-resolved and steady-state photoluminescence (PL) spectroscopy and Monte Carlo simulations. |