CAS Key Laboratory of Urban Pollutants Conversion, Department of Chemistry, University of Science and Technology of China , Hefei, 230026, China.
Department of Municipal Engineering, Hefei University of Technology , Hefei, 230009, China.
Environ Sci Technol. 2016 May 17;50(10):5234-42. doi: 10.1021/acs.est.6b00730. Epub 2016 May 6.
TiO2 is a typical semiconductor and has been extensively used as an effective photocatalyst for environmental pollution control. But it could not be used as an electrochemical reductive catalyst because of its low electric conductivity and electrocatalytic activity. In this work, however, we demonstrate that TiO2 can act as an excellent cathodic electrocatalyst when its crystal shape, exposed facet and oxygen-stoichiometry are finely tailored by the local geometric and electronic structures. The defect-engineered TiO2-x single crystals dominantly exposed by high-energy {001} facets exhibits a high cathodic activity and great stability for electrochemical reduction of nitrobenzene, a typical refractory pollutant with high toxicity in environment. The single crystalline structure, the high-energy {001} facet and the defective oxygen vacancy of the defect-engineered TiO2-x single crystals are found to be mainly responsible for their cathodic superiority. With the findings in this work, a more practical non-Pd cathodic electrocatalyst could be prepared and applied for electrocatalytic reduction of refractory pollutants in water and wastewater, and extend the promising applications of TiO2 in the fields of environmental science.
TiO2 是一种典型的半导体,已被广泛用作环境污染控制的有效光催化剂。但是,由于其电导率低和电催化活性低,它不能用作电化学还原催化剂。然而,在这项工作中,我们证明了当 TiO2 的晶体形状、暴露晶面和氧化学计量通过局部几何和电子结构进行精细调整时,它可以作为一种出色的阴极电催化剂。通过缺陷工程设计,TiO2-x 单晶主要暴露具有高能 {001} 晶面,对环境中具有高毒性的典型难处理污染物硝基苯的电化学还原表现出高阴极活性和极好的稳定性。缺陷工程设计的 TiO2-x 单晶的单晶结构、高能 {001} 晶面和缺陷氧空位被发现主要负责其阴极优越性。这项工作的发现为制备更实用的非 Pd 阴极电催化剂提供了可能,该催化剂可用于水中和废水中难处理污染物的电催化还原,并将 TiO2 在环境科学领域的应用扩展到更广阔的领域。