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首页> 外文期刊>Journal of Fluorine Chemistry >Catalytic microreactor with electrodeposited hierarchically nanostructured nickel coatings for gas-phase fluorination reactions
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Catalytic microreactor with electrodeposited hierarchically nanostructured nickel coatings for gas-phase fluorination reactions

机译:具有电沉积的分层纳米结构镍涂层的催化微反应器,用于气相氟化反应

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摘要

The fabrication of a catalytic microreactor for the reaction of undiluted carbonyl difluoride and elemental fluorine to synthesize trifluoromethyl hypofluorite, CF3OF, on CsF catalyst supported on F-2-passivated nanosctructured Ni coating was studied. The nanosctructured Ni support for catalyst immobilization was electrodeposited by a two-step procedure, consisting of a low current density step followed by a brief high current density one, for a hierarchical differentiation of structural features. An aqueous solution of NiCl2 with diethanolamine, as crystal modifier, and sodium lauryl sulphate, as anti-pitting agent, was used as electrolyte. Constant-pH Ni electrocrystallization was performed on H2SO4-etched Cu substrates in a range of pH from 1 to 4 via a HCl/H3BO3 based buffer. Passivation was carried out under up to 300 mbar of undiluted F-2. XRD, XPS, SEM, AFM, and static contact angle measurements were performed. Ni coatings obtained from pH 3 electrolytes were selected for microreactor fabrication on the basis of characterization data, due to the reproducibility and homogeneity of the structured Ni layers. The catalytic microreactor allowed the quantitative production of CF3OF from pure reactants, on demand, and removing any criticality relative to thermal and safety control of the synthesis. The CF3O-group selective transfer ability of the synthetized hypofluorite has raised interest in pharmaceutical and agrochemical industries in recent years.
机译:研究了用于在F-2钝化的纳米涂层的CSF催化剂中合成三氟甲基余氟化物,CF3OF的催化微反应器的制造。通过两步法将用于催化剂固定的纳米型Ni载体电沉积,其由低电流密度步骤组成,然后是短电流密度的步骤,用于构造特征的层次分化。用含有二乙醇胺的NiCl 2水溶液,作为晶体改性剂和月桂基硫酸钠,作为抗粘接剂,作为电解质。通过基于HCl / H 3BO 3的缓冲液在pH204蚀刻的Cu基板上对H 2 SO 4蚀刻的Cu基材进行恒定-PH Ni电镀化。钝化是在最多300毫巴的未稀释的F-2米下进行。进行XRD,XPS,SEM,AFM和静态接触角测量。根据结构性Ni层的再现性和均匀性,选择从pH 3电解质获得的Ni涂层,用于基于表征数据的微反应器制造。催化微反应器允许从纯反应物的定量生产,按需去除相对于合成热和安全控制的任何临界性。近年来,合成余氟化钴的CF3O群选择性转移能力提高了药物和农业化学行业的兴趣。

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