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Enhanced capacitance of composite TiO2 nanotube/boron-doped diamond electrodes studied by impedance spectroscopy

机译:增强的复合二氧化钛的电容纳米管/电极研究了掺硼金刚石通过阻抗光谱学

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We report on novel composite nanostructures based on boron-doped diamond thin films grown on top of TiO2 nanotubes. The nanostructures made of BDD-modified titania nanotubes showed an increase in activity and performance when used as electrodes in electrochemical environments. The BDD thin films (similar to 200-500 nm) were deposited using microwave plasma assisted chemical vapor deposition (MW PA CVD) onto anodically fabricated TiO2 nanotube arrays. The influence of boron-doping level, methane admixture and growth time on the performance of the Ti/TiO2/BDD electrode was studied in detail. Scanning electron microscopy (SEM) was applied to investigate the surface morphology and grain size distribution. Moreover, the chemical composition of TiO2/BDD electrodes was investigated by means of micro-Raman spectroscopy. The composite electrodes TiO2/BDD are characterized by a significantly higher capacitive current compared to BDD films deposited directly onto a Ti substrate. The novel composite electrode of TiO2 nanotube arrays overgrown by boron-doped diamond (BDD) immersed in 0.1 M NaNO3 can deliver a specific capacitance of 2.10, 4.79, and 7.46 mF cm(-2) at a scan rate of 10 mV s(-1) for a [B]/[C] ratio of 2k, 5k and 10k, respectively. The substantial improvement of electrochemical performance and the excellent rate capability could be attributed to the synergistic effect of TiO2 treatment in CH4:H-2 plasma and the high electrical conductivity of BDD layers. The analysis of electrochemical impedance spectra using an electric equivalent circuit allowed us to determine the surface area on the basis of the value of constant phase element.
机译:我们报道了新型复合纳米结构的基础薄膜生长的掺硼金刚石二氧化钛纳米管。BDD-modified二氧化钛纳米管显示增加当用作活动和性能电极在电化学环境中。BDD薄膜(类似于200 - 500 nm)使用微波等离子体辅助沉积化学汽相淀积(MW PA CVD)上anodically捏造的二氧化钛纳米管阵列。掺硼的影响水平,甲烷掺合料和增长的性能Ti /二氧化钛/ BDD电极进行了研究。应用扫描电子显微镜(SEM)研究表面形貌和晶粒尺寸分布。二氧化钛/ BDD电极是通过调查台光谱。二氧化钛/ BDD电极的特点明显高于电容电流比较直接到Ti BDD电影沉积衬底。纳米管阵列长满了。掺硼金刚石(BDD)沉浸在0.1 NaNO3可以交付比电容的2.10,4.79,和7.46 mF厘米(2)10 mV的扫描速率(1)[B] / [C]比2 k, 5 k, 10 k,分别。电化学的实质性的改进性能和优秀的能力可能是由于协同效应的二氧化钛在甲烷治疗:2等离子和高BDD层的导电性。电化学阻抗谱分析使用电动等效电路允许我们确定表面积的基础上固定相元素的值。

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