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9,10-diphenylanthracene/Polyvinylbutyral/Glassy Carbon Based Transducer: from Spin Coater Development to Electrochemiluminescent Applications

机译:9,10-二苯基蒽/聚乙烯醇缩丁醛/玻璃碳基换能器:从旋涂机开发到电化学发光应用

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The work describes the development of a new electrochemiluminescent (ECL) transducer based on 9,10-diphenylanthracene (DPA) / polyvinyl butyral / glassy carbon film modified electrode along with the design and manufacture of a low-cost spin-coating system based on Arduino Atmega 2560, which was used to create the abovementioned transducer. It was proved that the performance of this spin coater is comparable to common commercial models, but with much lower total cost of the device. The appearance of ECL from DPA molecules of the transducer in reaction with a relatively new ECL co-reactant tetraphenylborate (TPB) in aqueous solution has demonstrated the applicability of spin-coating technique for creation of new types of ECL transducers. Application of such transducers allows full use of the unique properties of TPB co-reactant and eliminates a problem of formation of TPB based precipitates, which occurs when such common fluorophore as Ru(bpy)32+ is utilized.
机译:这项工作描述了基于9,10-二苯基蒽(DPA)/聚乙烯醇缩丁醛/玻璃碳膜修饰电极的新型电化学发光(ECL)换能器的开发以及基于Arduino的低成本旋涂系统的设计和制造Atmega 2560,用于创建上述换能器。事实证明,该旋涂机的性能可与普通商业机型相媲美,但设备的总成本却低得多。与相对较新的ECL共反应物四苯基硼酸酯(TPB)在水溶液中反应时,换能器DPA分子的ECL出现证明了旋涂技术可用于创建新型ECL换能器。此类换能器的应用可以充分利用TPB共反应物的独特性能,并消除了形成TPB基沉淀物的问题,这种问题是在常见的荧光团如Ru(bpy)3时发生的。 2 +被利用。

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