Ferro Sergio, De Battisti Achille
Anal Chem. 2003 Dec 15;75(24):7040-2. doi: 10.1021/ac034717r.
Heavily doped diamond films are quite actively studied for their promising applications in industrial as well as in fundamental electrochemistry (both for physicochemical studies and in the field of electroanalysis), because of their very high stability toward chemical and electrochemical oxidative attacks. Fluorinated diamond electrodes exhibit an exceptionally lower electrocatalytic activity toward reactions involving adsorbed intermediates, as a result of the F-termination of the surface dangling bonds. This feature allows the investigation of the widest range of potentials for an electrode material in aqueous solution, being limited only by the formation of free hydrogen [E degrees (H*/H2) = -2.3 V(SHE)] and hydroxyl [E degrees (*OH,H+/H2O) = 2.74 V(SHE)] radicals, at the two boundaries of the approximately 5-V polarization window.
由于重掺杂金刚石薄膜对化学和电化学氧化攻击具有非常高的稳定性,因此人们对其在工业以及基础电化学(用于物理化学研究和电分析领域)中的潜在应用进行了相当积极的研究。由于表面悬空键的F端接,氟化金刚石电极对涉及吸附中间体的反应表现出异常低的电催化活性。这一特性使得在水溶液中研究电极材料的最宽电位范围成为可能,其仅受限于在大约5V极化窗口的两个边界处形成自由氢[E°(H*/H2)= -2.3V(SHE)]和羟基[E°(*OH,H+/H2O)= 2.74V(SHE)]自由基。