Layered polyelectrolyte films on Au electrodes: Characterization of electron-transfer features at the charged polymer interface and application for selective redox reactions

被引:140
作者
Pardo-Yissar, V [1 ]
Katz, E [1 ]
Lioubashevski, O [1 ]
Willner, I [1 ]
机构
[1] Hebrew Univ Jerusalem, Inst Chem, IL-91904 Jerusalem, Israel
关键词
D O I
10.1021/la000729l
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Oppositely charged polyelectrolyte assemblies of poly(acrylic acid) and poly-L-lysine are deposited as alternate layers on cystamine-functionalized Au surfaces. Microgravimetric, quartz-crystal-microbalance, measurements and ellipsometric studies reveal a nonlinear increase in the polymer assembly thickness upon the buildup of the polymer layers. This is attributed to the swelling of the polymer upon the stepwise assembly of the layered film. The interfacial and intra-assembly properties of the polyelectrolyte systems were characterized by Faradaic impedance spectroscopy. In the presence of Fe(CN)(6)(3-)/Fe(CN)(6)(4-) as the redox label, all assemblies that terminate with a negatively charged interface are characterized by a high interfacial electron-transfer resistance, originating from the electrostatic repulsion of the redox label from the interface. The interfacial electron-transfer resistance also increases as the number of layers, or assembly thickness, increases. For assemblies terminated with a positively charged polyelectrolyte, a very low interfacial electron-transfer resistance for the redox process of the negatively charged redox probe is detected. This is attributed to a neutralized, porous structure of the polymer assembly. For the positively charged redox label, protonated N,N-dimethylaminomethyl-ferrocene, similar results are observed for the assemblies with the opposite dependence on the charge of the terminal layer. The electrodes functionalized with the polymers were used for the selective oxidation of a mixture consisting of Fe(CN)(6)(4-) and protonated N,N-dimethylaminomethyl-ferrocene.
引用
收藏
页码:1110 / 1118
页数:9
相关论文
共 84 条
[51]  
MUZAKAMI H, 1997, ADV MATER, V9, P39
[52]   Photoswitching of a vectorial electron transfer reaction at a diarylethene modified electrode [J].
Nakashima, N ;
Nakanishi, T ;
Nakatani, A ;
Deguchi, Y ;
Murakami, H ;
Sagara, T ;
Irie, M .
CHEMISTRY LETTERS, 1997, (07) :591-592
[53]   Controlled orientation of cyclodextrin derivatives immobilized on gold surfaces [J].
Nelles, G ;
Weisser, M ;
Back, R ;
Wohlfart, P ;
Wenz, G ;
MittlerNeher, S .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1996, 118 (21) :5039-5046
[54]   SUPPORTED MONOLAYERS CONTAINING PREFORMED BINDING-SITES - SYNTHESIS AND INTERFACIAL BINDING-PROPERTIES OF A THIOLATED BETA-CYCLODEXTRIN DERIVATIVE [J].
ROJAS, MT ;
KONIGER, R ;
STODDART, JF ;
KAIFER, AE .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1995, 117 (01) :336-343
[55]   IONIC RECOGNITION AND SELECTIVE RESPONSE IN SELF-ASSEMBLING MONOLAYER MEMBRANES ON ELECTRODES [J].
RUBINSTEIN, I ;
STEINBERG, S ;
TOR, Y ;
SHANZER, A ;
SAGIV, J .
NATURE, 1988, 332 (6163) :426-429
[56]   Single electron transistor using a molecularly linked gold colloidal particle chain [J].
Sato, T ;
Ahmed, H ;
Brown, D ;
Johnson, BFG .
JOURNAL OF APPLIED PHYSICS, 1997, 82 (02) :696-701
[57]   VERWENDUNG VON SCHWINGQUARZEN ZUR WAGUNG DUNNER SCHICHTEN UND ZUR MIKROWAGUNG [J].
SAUERBREY, G .
ZEITSCHRIFT FUR PHYSIK, 1959, 155 (02) :206-222
[58]   Metal nanoparticle/polymer superlattice films: Fabrication and control of layer structure [J].
Schmitt, J ;
Decher, G ;
Dressick, WJ ;
Brandow, SL ;
Geer, RE ;
Shashidhar, R ;
Calvert, JM .
ADVANCED MATERIALS, 1997, 9 (01) :61-&
[59]   Bis-bipyridinium cyclophane receptor Au nanoparticle superstructures for electrochemical sensing applications [J].
Shipway, AN ;
Lahav, M ;
Blonder, R ;
Willner, I .
CHEMISTRY OF MATERIALS, 1999, 11 (01) :13-+
[60]   CHARGE-TRANSPORT PROPERTIES OF AN ELECTRODE-CONFINED REDOX POLYMER DERIVED FROM A MONOMER CONSISTING OF A QUINONE FLANKED BY 2 BENZYLVIOLOGEN SUBUNITS [J].
SMITH, DK ;
LANE, GA ;
WRIGHTON, MS .
JOURNAL OF PHYSICAL CHEMISTRY, 1988, 92 (09) :2616-2628