【摘 要】
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Chemiluminescence (CL) has been widely used for bioanalysis owing to its high sensitivity, low back-ground and simplicity. However, most of the CL systems need acidic/alkaline conditions or organic sol-vent to enhance their luminescent efficiency, and the
【机 构】
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College of Materials and Chemistry&Chemical Engineering,Chengdu University of Technology,Chengdu 610
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Chemiluminescence (CL) has been widely used for bioanalysis owing to its high sensitivity, low back-ground and simplicity. However, most of the CL systems need acidic/alkaline conditions or organic sol-vent to enhance their luminescent efficiency, and the non-physiological conditions can usually lead to the misfunction of biomolecules during biosensing. Herein, we report a highly luminous CL system under physiological conditions based on carbon dots-bis(2-carbopentyloxy-3,5,6-trichlorophenyl) oxalate (CDs-CPPO) micelles, and further used it in biosensing application. In the CL system, the amphiphilic surfac-tant packed CPPO and hydrophobic CDs together to form CDs-CPPO micelles. Such micelles solution not only isolated the CPPO from water to prevent its hydrolysis but also made the close proximity between CPPO and CDs, thus significantly enhancing the CDs quantum yield. The CL quantum yield was calculated to be 5.26 × 10? 4 einsteins/mol, about 200-fold higher than that of the most commonly used luminol CL system. The oxidases (e.g., glucose oxidase) were tested to be susceptible to the organic solvent and non-physiological pH. Hence, the CL system was used for the detection of oxidase substrates (exemplified by glucose) in serum samples, and the limit of detection was as low as 8.4 nmol/L. The highly luminous CL system that can work under physiological conditions is promising for biosensing applications.
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