Advances in metal-organic frameworks (MOFs) for nanotheranostics: from targeted drug delivery to multimodal imaging. [PDF]
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Natural product-modified BODIPY: design strategies, photophysical properties and biomedical applications. [PDF]
Gai L, Wu Q, Sun W.
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Coumarin and Curcumin-Metal Complexes as Next-Generation Photosensitizers in Cancer Photodynamic Therapy. [PDF]
Law SK, Leung AWN, Xu C.
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Transition- Metal-Free Piranha-Assisted One-Pot Oxidative Iodination of Graphene Oxide for Selective Turn-On Fluorescence Sensing of Cu<sup>2+</sup> Ions. [PDF]
Elavarasan A +7 more
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Molecular Precursor Engineering of Lignin-Derived Carbon Dots for Multicolor Fluorescence and Metal-Ion Sensing. [PDF]
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Interactions between sulfonamide antibiotics and metal ions: does toxicity increase or decrease? [PDF]
Cui F +7 more
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Metal-enhanced fluorescence: an emerging tool in biotechnology [PDF]
Over the past 15 years, fluorescence has become the dominant detection/sensing technology in medical diagnostics and biotechnology. Although fluorescence is a highly sensitive technique, where single molecules can readily be detected, there is still a drive for reduced detection limits.
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Metal-enhanced fluorescence of graphene oxide sheets
Analytical and Bioanalytical Chemistry, 2022Graphene oxide (GO) is an excellent chemical tunable optical platform for imaging and sensing. The photoluminescence (PL) quantum yield of GO is relatively low, which limited the application of the intrinsic and tunable fluorescence from GO. Here, we report the first case of metal-enhanced fluorescence (MEF) of GO.
Zhe, Wang +5 more
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