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Diamond Optically Transparent Electrodes: Demonstration of Concept with Ferri/Ferrocyanide and Methyl Viologen

机译:金刚石光学透明电极:使用铁/亚铁氰化物和甲基紫精的概念演示

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摘要

A new type of optically transparent electrode is reported on-an electrically conductive diamond thin film. The electrode was free-standing (0.38 mm thick and 8 mm in diameter), mechanically polished to a 7-nm rms roughness over a 10-μm linear distance, boron-doped (0.05% B/C in the reactant gas mixture), and mounted in a thin-layer transmission cell. The electrode has a short-wavelength cutoff of ~225 nm, which is the indirect band gap of the material, and transmits light out to at least 1000 nm. In theory, the electrode has an optical window from 225 nm well out into the far-infrared, except for the boron acceptor band and the intrinsic multiphonon absorptions. The electrode was used to electrooxidize ferrocyanide to ferricyanide, and the absorbance change associated with the formation of the oxidized product (λ_(max)=420 nm) was spectroscopically monitored. The electrode was also used to electroreduce methyl viologen (MV~(2+)) to the cation radical (MV~(+·)) and the neutral (MV~(0)). The depletion of MV~(2+) (λ_(max)=257 nm) and formation of MV~(+·)(λ_(max)=398 and 605 nm) were spectroscopically monitored.
机译:在导电金刚石薄膜上报道了一种新型的光学透明电极。电极是独立式的(0.38毫米厚,直径8毫米),在10微米线性距离上机械抛光至7纳米rms粗糙度,掺硼(反应气体混合物中的B / C为0.05%),并安装在薄层传输单元中。电极的短波截止波长约为225 nm,这是材料的间接带隙,并且可以将光传输到至少1000 nm。从理论上讲,除了硼受体带和固有的多声子吸收外,电极具有从225 nm到远红外的光学窗口。用该电极将亚铁氰化物电氧化为铁氰化物,并用光谱法监测与氧化产物形成有关的吸光度变化(λ_(max)= 420 nm)。该电极还用于将甲基紫精(MV〜(2+))电还原为阳离子自由基(MV〜(+·))和中性离子(MV〜(0))。光谱监测MV_(2+)的耗尽(λ_(max)= 257nm)和MV _(+·)(λ_(max)= 398和605nm)。

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