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Synthesis of bovine serum albumin capped boron-doped carbon dots for sensitive and selective detection of Pb(II) ion

机译:牛血清白蛋白封端的硼掺杂碳点的合成用于灵敏和选择性地检测Pb(II)离子

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摘要

Carbon dots have tremendous potential to be used for biochemical sensing and environmental testing due to its superior optical properties and excellent biocompatibility. The surface of carbon dots can be easily functionalized. In the present study boron doped carbon dots have been synthesized using one pot approach by microwave treatment method. The surface of boron doped carbon dots is capped with bovine serum albumin. The maximum fluorescence emission observed at 444 nm when excited upon 345 nm of wavelength. In the normal light, it is light green in colour but when exposed in long wavelength UV light it exhibited blue fluorescence. The carbon dots have an irregular shape with a diameter below 5 nm. The applicability of synthesized carbon dots as the fluorescent sensor has been checked using different metal ions. It is observed that Pb(II) ion shows appreciable and selective quenching. Linear relationship is exist between the decrease in fluorescence intensity and the concentrations of Pb(II) ion in the range from 1 ppb to 10 ppb concentration. Limit of detection is found to be 0.08 ppb. This study will be helpful in the development of new fluorescent nano-biosensors.
机译:碳点具有卓越的光学性能和出色的生物相容性,因此在生化传感和环境测试中具有巨大的潜力。碳点的表面可以容易地功能化。在本研究中,已通过微波处理方法使用一锅法合成了硼掺杂的碳点。硼掺杂碳点的表面覆盖有牛血清白蛋白。当在345 nm波长激发时,在444 nm处观察到最大荧光发射。在正常光线下,它是浅绿色,但是在长波长紫外线下曝光时,它会显示蓝色荧光。碳点具有不规则形状,其直径小于5nm。已使用不同的金属离子检查了合成碳点作为荧光传感器的适用性。观察到Pb(II)离子显示出明显的选择性猝灭。荧光强度降低与Pb(II)离子浓度在1 ppb到10 ppb浓度之间存在线性关系。检出限为0.08 ppb。这项研究将有助于新型荧光纳米生物传感器的开发。

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