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Glucosamine hydrochloride functionalized tetraphenylethylene: a novel fluorescent probe for alkaline phosphatase based on the aggregation-induced emission.
TLDR
With aggregation-induced emission properties, GH-TPE was used for fluorometric detection to alkaline phosphatase through enzyme-triggered de-aggregation of the ensemble of GH- TPE and substrate.
Sugar-bearing tetraphenylethylene: novel fluorescent probe for studies of carbohydrate-protein interaction based on aggregation-induced emission.
TLDR
TPE can be used to investigate enzymatic hydrolysis based on emission enhancing by glycosidase-induced aggregation and shows a good selectivity and sensitivity to Con A by switching on the fluorescence of water-soluble tetraphenylethylene-based glyco-conjugates in aqueous solution.
One-pot solvothermal synthesis of biocompatible magnetic nanoparticles mediated by cucurbit[n]urils
TLDR
A facile one-step procedure for the solvothermal synthesis of highly water-dispersible magnetic Fe3O4 nanoparticles mediated by cucurbit[n]urils (CB[n],s) with exceptional dispersibility and stability is presented.
Imidazole-bearing tetraphenylethylene: fluorescent probe for metal ions based on AIE feature
With an aggregation-induced emission feature, a suspension of imidazole-bearing tetraphenylethylene in a tetrahydrofuran–water mixture with a high water fraction is highly emissive, and can be
Porous Polybenzimidazoles via Template-Free Suzuki Coupling Polymerization: Preparation, Porosity, and Heterogeneous Catalytic Activity in Knoevenagel Condensation Reactions
Suzuki coupling polymerization between boronic acids and halo-benzimidazole provides a new alternative approach to prepare polybenzimidazoles. PPBIs (PPBI-1 and PPBI-2) with porous structures are
[Study on excretion of stilbene glycoside (THSG) and its beta-cyclodextrin inclusion].
TLDR
The result showed that beta-cyclodextrin inclusion reduced the fecal excretion of stilbene glycoside, however, the characteristic of urinary and biliary excretion wasn't changed.
Fluorinated Porous Organic Polymers via Direct C-H Arylation Polycondensation.
Considering the high reactivity of the C-H bonds in fluorobenzenes for direct arylation and special properties of fluorinated polymers, herein, synthesis of fluorinated porous organic polymers via
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