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Photoluminescence, chemiluminescence and anodic electrochemiluminescence of hydrazide-modified graphene quantum dots

机译:光致发光、化学发光和阳极电化学发光的hydrazide-modified石墨烯量子点

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Single-layer graphene quantum dots (SGQDs) were refluxed with hydrazine (N2H4) to prepare hydrazide-modified SGQDs (HM-SGQDs). Compared with SGQDs, partial oxygen-containing groups have been removed from HM-SGQDs. At the same time, a lot of hydrazide groups have been introduced into HM-SGQDs. The introduced hydrazide groups provide HM-SGQDs with a new kind of surface state, and give HM-SGQDs unique photoluminescence (PL) properties such as blue-shifted PL emission and a relatively high PL quantum yield. More importantly, the hydrazide-modification made HM-SGQDs have abundant luminol-like units. Accordingly, HM-SGQDs exhibit unique and excellent chemiluminescence (CL) and anodic electrochemiluminescence (ECL). The hydrazide groups of HM-SGQDs can be chemically oxidized by the dissolved oxygen (O2) in alkaline solutions, producing a strong CL signal. The CL intensity is mainly dependent on the pH value and the concentration of O2, implying the potential applications of HM-SGQDs in pH and O2 sensors. The hydrazide groups of HM-SGQDs can also be electrochemically oxidized in alkaline solutions, producing a strong anodic ECL signal. The ECL intensity can be enhanced sensitively by hydrogen peroxide (H2O2). The enhanced ECL intensity is proportional to the concentration of H2O2 in a wide range of 3 μM to 500 μM. The detection limit of H2O2 was calculated to be about 0.7 μM. The results suggest the great potential applications of HM-SGQDs in the sensors of H2O2 and bio-molecules that are able to produce H2O2 in the presence of enzymes.
机译:单层石墨烯量子点(SGQDs)回流与肼(N2H4)做准备hydrazide-modified SGQDs (HM-SGQDs)。SGQDs,部分含氧集团从HM-SGQDs被移除。很多酰肼组已经被引入HM-SGQDs。HM-SGQDs与一种新型的表面状态,给HM-SGQDs独特的光致发光(PL)如蓝移PL发射和属性相对较高的PL量子产率。重要的是,hydrazide-modificationHM-SGQDs具有丰富luminol-like单位。因此,HM-SGQDs表现出独特而优秀的化学发光(CL)和阳极电化学发光(ECL)。可以化学氧化HM-SGQDs组溶解在水中的氧气(O2)在碱性溶液。产生一个强大的CL信号。主要依赖于pH值和氧气的浓度,这意味着潜在的HM-SGQDs在pH值和O2传感器中的应用。酰肼HM-SGQDs组也可以电化学氧化在碱性的解决方案,产生一个强大的阳极发射极耦合逻辑信号。强度可以增强氢敏感双氧水(过氧化氢)。与过氧化氢的浓度成正比广泛的3μM - 500μM。过氧化氢是计算约为0.7μM。结果表明潜在的应用在过氧化氢的传感器和HM-SGQDs生物分子能够产生过氧化氢酶的存在。

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