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由钯(0)、铂(0)或金(0)涂层催化的水相二氧化钛纳米颗粒还原过程中氢气产生的动力学及异常氢提取;稳态和脉冲辐解研究

Kinetics of hydrogen production upon reduction of aqueous TiO2 nanoparticles catalyzed by Pd(0), Pt(0), or Au(0) coatings and an unusual hydrogen abstraction; steady state and pulse radiolysis study.

作者信息

Behar David, Rabani Joseph

机构信息

Department of Physical Chemistry and Accelerator Unit, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

J Phys Chem B. 2006 May 4;110(17):8750-5. doi: 10.1021/jp060971m.

Abstract

Reduction of H(+) by TiO(2) electrons (e(TiO)(2)(-)) in aqueous colloidal solution takes place in the presence of surface metal catalysts. The catalytic reduction gives rise to adsorbed hydrogen atoms. In the presence of Pd(0) or Pt(0), material balance shows that most of the adsorbed H atoms combine to molecular hydrogen. When the TiO(2) nanoparticles are partially coated with Au(0) instead of Pd(0) or Pt(0), a higher than expected molecular hydrogen level is observed, attributed to a short chain reaction involving hydrogen abstraction from 2-propanol. This unusual hydrogen abstraction reaction has not been reported before. The mechanism and energy balance are discussed. The surface modification of TiO(2) nanoparticles was carried out by reduction of K(2)PdCl(4), H(2)PtCl(6), or HAuCl(4) with e(TiO)(2)(-). The latter had been generated through electron injection from hydrated electrons, hydrogen atoms, or 2-propanol radicals, produced by gamma or pulse radiolysis prior to the addition of the metal compounds. Upon addition of the metal compounds, immediate reactions take place producing metals clusters (M(0)) by multistep reductions reactions on the TiO(2) surface. The chemical kinetics involving the different metals and the reaction rate constant of e(aq)(-) and e(TiO)(2)(-) with AuCl(4)(-) is also reported.

摘要

在水性胶体溶液中,TiO₂电子(e(TiO)₂⁻)在表面金属催化剂存在下会还原H⁺。催化还原会产生吸附的氢原子。在Pd(0)或Pt(0)存在时,物料平衡表明大部分吸附的H原子会结合形成分子氢。当TiO₂纳米颗粒部分被Au(0)而非Pd(0)或Pt(0)包覆时,会观察到高于预期的分子氢水平,这归因于涉及从2 - 丙醇中提取氢的短链反应。这种不寻常的氢提取反应此前尚未见报道。文中讨论了其机理和能量平衡。TiO₂纳米颗粒的表面改性是通过用e(TiO)₂⁻还原K₂PdCl₄、H₂PtCl₆或HAuCl₄来进行的。后者是通过在添加金属化合物之前,由γ或脉冲辐解产生的水合电子、氢原子或2 - 丙醇自由基注入电子而生成的。加入金属化合物后,会立即发生反应,通过TiO₂表面的多步还原反应生成金属簇(M(0))。文中还报道了涉及不同金属的化学动力学以及e(aq)⁻和e(TiO)₂⁻与AuCl₄⁻的反应速率常数。

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