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Ultrasensitive optical sensor for hydrogen peroxide using silver nanoparticles synthesized at room temperature by GQDs

机译:使用GQD在室温下合成的银纳米颗粒用于过氧化氢的超灵敏光学传感器

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The present study describes the synthesis of silver nanoparticles capped with GQDs (Ag-GQDs) at room temperature for the first time and their application towards the optical sensing of H_2O_2. Unlike the previous reports, the preparation of Ag-GQDs not involves external heating because more number of hydroxyl groups present in the surface of GQDs synthesized in the present study. The GQDs are prepared from citric acid by pyrolysis at 200 ℃. The size of the Ag-GQDs is found to be 9 ± 1 nm. They show characteristic SPR band at 403 nm and show emission maximum at 457 nm when excited at 365 nm. The emission intensity of Ag-GQDs was drastically quenched when compared to GQDs, which show emission maximum at 451 nm at the same excitation. This is due to the masking of free functional groups responsible for emission of GQDs besides the oxidation of hydroxyl groups to aldehyde after reducing Ag~+ to Ag~0. The synthesized Ag-GQDs were then successfully used for the sensitive determination of H_2O_2 by spectrofluorimetry. The addition of 0.1 μM H_2O_2 to Ag-GQDs leads to decrease in the absorbance intensity at 403 nm besides the yellow color becomes colorless. Interestingly, even the addition of 25 nM H_2O_2 increases the emission intensity at 457 nm. The decrease in the absorbance and increase in the fluorescence are attributed to the leaching of Ag~+ from the surface of GQDs due to the oxidation of Ag~0 to Ag~+ by H_2O_2. Further, the practical application of the present method was demonstrated by determining H_2O_2 in human urine samples.
机译:本研究首次描述了在室温下用GQDs(Ag-GQDs)封端的银纳米颗粒的合成及其在H_2O_2的光学传感中的应用。与以前的报告不同,制备Ag-GQD不需要外部加热,因为在本研究中合成的GQD表面上存在更多的羟基。 GQD是由柠檬酸在200℃下热解制得的。发现Ag-GQD的尺寸为9±1nm。它们在403 nm处显示特征SPR谱带,在365 nm处激发时在457 nm处显示最大发射。与GQD相比,Ag-GQD的发射强度被彻底淬灭,GQD在相同激发下在451 nm处显示最大发射。这是由于在将Ag〜+还原为Ag〜0之后,除了羟基氧化为醛以外,还掩盖了负责GQD释放的游离官能团。合成的Ag-GQDs成功地用于了荧光光谱法中H_2O_2的灵敏测定。向Ag-GQD中添加0.1μMH_2O_2会导致黄色变为无色,导致403 nm处的吸光度降低。有趣的是,即使添加25 nM H_2O_2也会增加457 nm处的发射强度。吸光度的下降和荧光的增加归因于由于H_2O_2将Ag〜0氧化为Ag〜+而导致Ag〜+从GQD表面浸出。此外,通过测定人尿液样品中的H_2O_2证明了本方法的实际应用。

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