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首页> 外文期刊>Topics in Catalysis >Investigation of Iridium Nanoparticles Supported on Sub-stoichiometric Titanium Oxides as Anodic Electrocatalysts in PEM Electrolysis. Part I.: Synthesis and Characterization
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Investigation of Iridium Nanoparticles Supported on Sub-stoichiometric Titanium Oxides as Anodic Electrocatalysts in PEM Electrolysis. Part I.: Synthesis and Characterization

机译:在电解中阳性电解中亚体化学计量氧化氮中氧化钛氧化物的铱纳米颗粒的研究。 第一部分:综合和表征

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A novel route for obtaining iridium-based electrocatalysts supported on sub-stoichiometric titanium oxides for catalytic applications is presented. Chloride-free titanium oxide nanoparticles have been produced in a H-2/O-2-flame reactor using titanium (IV) tetraisopropoxide as precursor material. Fuel rich combustion leads to the formation of sub-stoichiometric titania (TiO2-x) with an increased number of oxygen vacancies and enhanced electrical conductivity. Subsequently, TiO2-x was dispersed in 2-propanol and spray coated on titanium substrate under argon atmosphere, forming a titania layer. This multilayered support system was decorated with iridium nanoparticles from an iridium-based electrolyte, applying an electrochemical method. This deposition technique leads to an optimized allocation of the electrocatalyst particles, adequate adhesion to the support and, furthermore, ensures the electrical conductivity from the deposited Ir particles via the TiO2-x coating towards the titanium substrate. Finally, this process generated electrochemically active electrodes for the oxygen evolution reaction (OER) in acidic environment. The mean crystallite size of the iridium catalyst was determined from the X-ray diffraction patterns according to the Debye-Scherrer equation to be 11.4nm. Linear and cyclic voltammetry were performed in 0.5M H2SO4 on the iridium/titania/titanium samples and proved the electrochemical activity of the prepared system. The increased catalytic activity of the prepared iridium samples was indicated by a decrease of the Tafel slope for the Ti-PTL/TiO2-x/Ir in comparison to electrochemically oxidized iridium sample. At higher overpotentials, the calculated Tafel slopes (112mVdec(-1)) present greater values than commonly reported Tafel slopes for IrO2 based electrodes, revealing a different rate determining step for the OER.
机译:提出了一种用于获得支持催化应用的亚化学计量氧化钛的基于铱的电催化剂的新途径。使用作为前体材料的钛(IV)四异丙氧化物作为前体材料,在H-2 / O-2 - 火焰反应器中制备了无氯钛氧化物纳米颗粒。富含燃料的燃烧导致亚化学计量二氧化钛(TiO2-X)的形成,氧空位数量增加,导电性增加。随后,将TiO 2 -X分散在2-丙醇中,并在氩气氛下涂覆在钛基底上,形成二氧化钛层。该多层支撑系统用铱纳米粒子从基于铱的电解质装饰,施加电化学方法。该沉积技术导致电催化剂颗粒的优化分配,对载体充分粘附,此外,通过朝向钛基材的TiO 2 -X涂层将从沉积的IR颗粒的导电率。最后,该过程在酸性环境中产生了用于氧气进化反应(oer)的电化学活性电极。根据Debye-Scherrer方程根据Debye-Scherrer方程从X射线衍射图形测定铱催化剂的平均微晶尺寸为11.4nm。在铱/二氧化钛/钛样品上在0.5M H 2 SO 4中进行线性和环状伏安法,并证明了制备的系统的电化学活性。通过与电化学氧化铱样品相比,通过Ti-PTL / TiO 2-X / IR的Tifel斜率的降低表示制备的铱样品的增加的催化活性。在较高的过电时,计算的Tafel斜率(112mVdec(-1))呈现比IRO2基电极的常用Tafel斜率更大的值,揭示了Oer的不同速率确定步骤。

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