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pH-sensitive response of a highly photoluminescent MoS2 nanohybrid material and its application in the nonenzymatic detection of H2O2

机译:高光致发光MOS2纳米胺材料的pH敏感响应及其在H2O2的非酶检测中的应用

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摘要

The mechanism behind the variation in the photoluminescence (PL) of a MoS2 nanohybrid material with pH was investigated. Highly fluorescent MoS2 quantum dots dispersed across MoS2 nanosheets (MoS2 QDNS) were synthesized by a hydrothermal route in the presence of NaOH. Upon reducing the pH from 13 to 6.5, the PL intensity was markedly quenched. The removal of dangling sulfur atoms by adding mineral acids could be a plausible mechanism for this PL quenching, together with the inner filter effect and Forster resonance energy transfer due to the resulting species. A label-free turn-on fluorescence sensor for H2O2 was developed using this hybrid material. The PL of the acidified MoS2 QDNS at pH 6.5 increased (i.e., recovered) linearly with the concentration of H2O2. The dynamic range of the sensor was found to be 2-94 mu M with a limit of detection (LOD) of 2 mu M. This sensing strategy was also extended for the detection of glucose by appending glucose oxidase (GOx) as a catalyst. In the presence of GOx, glucose oxidizes to gluconic acid and H2O2, so the original level of glucose can be estimated by determining the H2O2 present. The absence of a complicated enzyme immobilization step is the prime advantage of the present glucose sensor. The current work exemplifies the utility of MoS2-based nanoparticle systems in the biological sensor domain.
机译:研究了MOS2纳米植物的光致发光(PL)的变化背后的机制,具有pH pH。在NaOH存在下,通过水热途径合成分散在MOS2纳米片(MOS2 QDNS)上的高度荧光MOS2量子点。在减少13至6.5的pH时,PL强度明显淬火。通过添加无机酸的除去悬空硫原子可以是该PL淬火的合理机制,以及由于所得物种引起的内部过滤器效果和福尔斯特共振能量。使用该混合材料开发了用于H2O2的无标签开启荧光传感器。酸化MOS2的PL在pH6.5的QDNS以H 2 O 2的浓度线性增加(即,回收)。发现传感器的动态范围是2-94μm,其检测极限(LOD)为2μm。通过将葡萄糖氧化酶(GOX)作为催化剂,该感测策略也被延伸用于检测葡萄糖。在GOX的存在下,葡萄糖氧化成葡萄糖酸和H 2 O 2,因此可以通过确定存在的H 2 O 2来估计原始葡萄糖水平。不存在复杂的酶固定步骤是本发明葡萄糖传感器的主要优点。目前的工作举例说明了基于MOS2的纳米粒子系统在生物传感器结构域中的效用。

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