Ontko Allyn C., Armistead Paul M., Kircus Sandra R., Thorp H. Holden
Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599-3290.
Inorg Chem. 1999 Apr 19;38(8):1842-1846. doi: 10.1021/ic981211w.
Glassy carbon electrodes modified by reductive electropolymerization of a thin film of poly[Ru(vbpy)(3)(2+)] or poly[Ru(vbpy)(3)(2+)/vba] (vbpy = 4-vinyl-4'-methyl-2,2'-bipyridine and vba = p-vinylbenzoic acid) were prepared. The Ru(III/II) couples for the polymer films were reversible in nonaqueous solution but were irreversible in aqueous media. The films modified with poly[Ru(vbpy)(3)(2+)] catalyzed the oxidation of aqueous guanosine 5'-monophosphate (GMP) and poly[G], producing a current enhancement in the Ru(III/II) couple for the polymer film. The catalysis was due both to electrostatic condensation of GMP and poly[G] to the Ru-modified surface and to more facile electron transfer to the Ru(III) centers in the polymer compared to the bare electrode. The presence of GMP in solution decreased the extent of decomposition of Ru(III). When single-stranded DNA containing multiple guanines was attached to the electrode modified with the poly[Ru(vbpy)(3)(2+)/vba] copolymer, enhancement of 8-13 &mgr;A for the Ru(III/II) couple was observed with 8 pmol of attached DNA. This degree of enhancement corresponds to a current efficiency of 65% based on a one-electron oxidation of guanine.
制备了通过聚[Ru(vbpy)₃²⁺]或聚[Ru(vbpy)₃²⁺/vba](vbpy = 4-乙烯基-4'-甲基-2,2'-联吡啶,vba = 对乙烯基苯甲酸)薄膜的还原电聚合修饰的玻碳电极。聚合物薄膜的Ru(III/II)电对在非水溶液中是可逆的,但在水性介质中是不可逆的。用聚[Ru(vbpy)₃²⁺]修饰的薄膜催化了5'-磷酸鸟苷(GMP)和聚[G]的氧化,在聚合物薄膜的Ru(III/II)电对中产生了电流增强。这种催化作用既归因于GMP和聚[G]与Ru修饰表面的静电凝聚,也归因于与裸电极相比,聚合物中Ru(III)中心的电子转移更容易。溶液中GMP的存在降低了Ru(III)的分解程度。当含有多个鸟嘌呤的单链DNA附着到用聚[Ru(vbpy)₃²⁺/vba]共聚物修饰的电极上时,对于附着8 pmol DNA的情况,观察到Ru(III/II)电对增强了8 - 13 μA。这种增强程度对应于基于鸟嘌呤单电子氧化的65%的电流效率。