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Improving the Photostability of Semiconducting Polymer Dots Using Buffers.
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Characterization of a Single-Molecule Sensitive Digital Flow Cytometer for Amplification-Free Digital Assays.
ACS Nano. 2025 Jul 1;19(25):23442-23449. doi: 10.1021/acsnano.5c07028. Epub 2025 Jun 17.
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BODIPY-based near-infrared semiconducting polymer dot for selective yellow laser-excited cell imaging.
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Sizing Extracellular Vesicles Using Membrane Dyes and a Single Molecule-Sensitive Flow Analyzer.
Anal Chem. 2021 Apr 13;93(14):5897-5905. doi: 10.1021/acs.analchem.1c00253. Epub 2021 Mar 30.
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Advances in Optical Single-Molecule Detection: En Route to Supersensitive Bioaffinity Assays.
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High sensitivity flow cytometry of membrane vesicles.
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Functionalizing nanoparticles with biological molecules: developing chemistries that facilitate nanotechnology.
Chem Rev. 2013 Mar 13;113(3):1904-2074. doi: 10.1021/cr300143v. Epub 2013 Feb 22.
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Single cell optical imaging and spectroscopy.
Chem Rev. 2013 Apr 10;113(4):2469-527. doi: 10.1021/cr300336e. Epub 2013 Feb 14.
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Highly fluorescent semiconducting polymer dots for biology and medicine.
Angew Chem Int Ed Engl. 2013 Mar 11;52(11):3086-109. doi: 10.1002/anie.201205133. Epub 2013 Jan 10.
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High-throughput fluorescence-activated nanoscale subcellular sorter with single-molecule sensitivity.
J Phys Chem B. 2012 Sep 6;116(35):10490-5. doi: 10.1021/jp3019233. Epub 2012 May 29.
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Nuclear-targeted drug delivery of TAT peptide-conjugated monodisperse mesoporous silica nanoparticles.
J Am Chem Soc. 2012 Apr 4;134(13):5722-5. doi: 10.1021/ja211035w. Epub 2012 Mar 20.
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Determining the number of specific proteins in cellular compartments by quantitative microscopy.
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