Modified carbon surfaces as "organic electrodes" that exhibit conductance switching

被引:130
作者
Solak, AO [1 ]
Eichorst, LR [1 ]
Clark, WJ [1 ]
McCreery, RL [1 ]
机构
[1] Ohio State Univ, Dept Chem, Columbus, OH 43210 USA
关键词
D O I
10.1021/ac026107h
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Glassy carbon (GC) surfaces modified with monolayers of biphenyl and nitrobiphenyl molecules were examined as voltammetric electrodes for ferrocene, benzoquinone, and tetracyanoquinodimethane electrochemistry in acetonitrile. The modified electrodes exhibited slower electron transfer than unmodified GC, by factors that varied with the monolayer and redox system. However, after a negative potential excursion to similar to-2.0 V versus Ag-/Ag, the modified electrodes exhibited much faster electron-transfer kinetics, approaching those observed on unmodified GC. The effect is attributed to an apparently irreversible structural change in the biphenyl or nitrobiphenyl monolayer, which increases the rate of electron tunneling. The transition to the "ON" state is associated with electron injection into the monolayer similar to that observed in previous spectroscopic investigations and causes a significant decrease in the calculated HOMO-LUMO gap for the monolayer molecule. Once the monolayer is switched ON, it supports rapid electron exchange with outer-sphere redox systems, but not with dopamine, which requires adsorption to the GC surface. The increase in electron-transfer rate with electron injection is consistent with an increase in electron tunneling rate through the monolayer, caused by a significant decrease in tunneling barrier height. The ON electrode can reduce biphenyl- or nitrobiphenyldiazonium reagent in solution to permit formation of a second modification layer of biphenyl or nitrobiphenyl molecules. This "double derivatization" procedure was used to prepare tetraphenyl- and nitrotetraphenyl-modified electrodes, which exhibit significantly slower electron transfer than their biphenyl and nitrobiphenyl counterparts. A "switching" electrode may have useful properties for electroanalytical applications and possibly in electro-catalysis. In addition, the ON state represents an "organic electrode" in which electron transfer occurs at an interface between an organic conductor and a solution rather than an interface between a solution and a metal or carbon electrode.
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页码:296 / 305
页数:10
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共 55 条
[1]   Covalent modification of carbon surfaces by aryl radicals generated from the electrochemical reduction of diazonium salts [J].
Allongue, P ;
Delamar, M ;
Desbat, B ;
Fagebaume, O ;
Hitmi, R ;
Pinson, J ;
Saveant, JM .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1997, 119 (01) :201-207
[2]   Conducting polymer ion sensor electrodes III. Potentiometric sulfide ion selective electrode [J].
Atta, NF ;
Galal, A ;
Mark, HB ;
Yu, T ;
Bishop, PL .
TALANTA, 1998, 47 (04) :987-999
[3]   Electrochemistry and detection of some organic and biological molecules at conducting polymer electrodes .3. Evidence of the electrocatalytic effect of the heteroatom of the poly(hetetroarylene) at the electrode/electrolyte interface [J].
Atta, NF ;
Marawi, I ;
Petticrew, KL ;
Zimmer, H ;
Mark, HB ;
Galal, A .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1996, 408 (1-2) :47-52
[4]   Surface characterization and electrochemical properties of alkyl, fluorinated alkyl, and alkoxy monolayers on silicon [J].
Barrelet, CJ ;
Robinson, DB ;
Cheng, J ;
Hunt, TP ;
Quate, CF ;
Chidsey, CED .
LANGMUIR, 2001, 17 (11) :3460-3465
[5]   Microelectrochemical enzyme transistors [J].
Bartlett, PN ;
Astier, Y .
CHEMICAL COMMUNICATIONS, 2000, (02) :105-112
[6]   Hair and the artifice of Roman female adornment [J].
Bartman, E .
AMERICAN JOURNAL OF ARCHAEOLOGY, 2001, 105 (01) :1-25
[7]   OBSERVATION OF KINETIC HETEROGENEITY ON HIGHLY ORDERED PYROLYTIC-GRAPHITE USING ELECTROGENERATED CHEMI-LUMINESCENCE [J].
BOWLING, RJ ;
MCCREERY, RL ;
PHARR, CM ;
ENGSTROM, RC .
ANALYTICAL CHEMISTRY, 1989, 61 (24) :2763-2766
[8]   ACTIVATION OF HIGHLY ORDERED PYROLYTIC-GRAPHITE FOR HETEROGENEOUS ELECTRON-TRANSFER - RELATIONSHIP BETWEEN ELECTROCHEMICAL PERFORMANCE AND CARBON MICROSTRUCTURE [J].
BOWLING, RJ ;
PACKARD, RT ;
MCCREERY, RL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1989, 111 (04) :1217-1223
[9]   Electron transfer through organic molecules [J].
Bumm, LA ;
Arnold, JJ ;
Dunbar, TD ;
Allara, DL ;
Weiss, PS .
JOURNAL OF PHYSICAL CHEMISTRY B, 1999, 103 (38) :8122-8127
[10]   EFFECTS OF ELECTRON EXCHANGE AND SINGLE-FILE DIFFUSION ON CHARGE PROPAGATION IN NAFION FILMS CONTAINING REDOX COUPLES [J].
BUTTRY, DA ;
ANSON, FC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (04) :685-689