Doménech Antonio, Alarcón Javier
Departament de Química Analítica, Facultat de Química, Facultat de Química, Universitat de València, Doctor Moliner 50, 46100, Burjassot, Valencia, Spain.
Anal Chem. 2007 Sep 1;79(17):6742-51. doi: 10.1021/ac070623w. Epub 2007 Jul 26.
Synthetic tetragonal and monoclinic vanadium-doped zirconias (t- and m-VxZr1-xO2, 0.005 < x < 0.150) exert an effective catalytic effect toward the electrochemical oxidation of glucose in aqueous alkaline media. The catalytic effect of monoclinic specimens attached to carbon and fluorine-doped tin oxide electrodes exhibits a remarkable enantioselectivity, so that catalytic currents for the oxidation of L-glucose at +0.92 V vs AgCl/Ag are considerably larger than those obtained for the oxidation of D-glucose. This enantioselectivity can be associated with the existence of a noncentrosymmetric coordination of vanadium centers in the monoclinic crystalline form of zirconia. From the electrochemical results, it can be suggested that the electrocatalytic mechanism includes the formation of glucose-vanadium surface adducts and electron transfer between catalytic centers and the substrate. The interference from chloride ions in the electrocatalytic process is significantly decreased by covering the zirconia particles with a layer of amorphous silica. These results propose that incorporation of catalytically active centers into nonsentrosymmetric sites of inorganic crystalline materials can be taken as a plausible strategy for chiral recognition via electrocatalysis.
合成的四方相和单斜相钒掺杂氧化锆(t-VxZr1-xO2和m-VxZr1-xO2,0.005 < x < 0.150)在碱性水溶液介质中对葡萄糖的电化学氧化具有有效的催化作用。附着在碳和氟掺杂氧化锡电极上的单斜相样品的催化作用表现出显著的对映选择性,因此在相对于AgCl/Ag为+0.92 V时,L-葡萄糖氧化的催化电流远大于D-葡萄糖氧化的催化电流。这种对映选择性可能与氧化锆单斜晶型中钒中心的非中心对称配位的存在有关。从电化学结果可以推测,电催化机制包括葡萄糖-钒表面加合物的形成以及催化中心与底物之间的电子转移。通过用一层无定形二氧化硅覆盖氧化锆颗粒,电催化过程中氯离子的干扰显著降低。这些结果表明,将催化活性中心引入无机晶体材料的非中心对称位点可作为一种通过电催化进行手性识别的合理策略。