Electrocatalytic CO2 reduction by cobalt octabutoxyphthalocyanine coated on graphite electrode

被引:49
作者
Abe, T
Taguchi, F
Yoshida, T
Tokita, S
Schnurpfeil, G
Wohrle, D
Kaneko, M
机构
[1] IBARAKI UNIV,FAC SCI,DEPT CHEM,MITO,IBARAKI 310,JAPAN
[2] SAITAMA UNIV,FAC ENGN,DEPT APPL CHEM,URAWA,SAITAMA 338,JAPAN
[3] UNIV BREMEN,INST ORGAN & MAKROMOL CHEM,D-28334 BREMEN,GERMANY
关键词
electrocatalytic CO2 reduction; cobalt octabutoxyphthalocyanine; potential-step chronoamperospectroscopy (PSCAS); catalytic mechanism;
D O I
10.1016/1381-1169(96)00242-7
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Electrocatalytic CO2 reduction was studied by using a modified graphite electrode coated with cobalt octabutoxyphthalo-cyanine (CoPc(BuO)(8)) and dipped in an aqueous electrolyte. The CoPc(BuO)(8) worked as a catalyst to produce CO with higher activity and selectivity than the non-substituted CoPc. Under typical conditions at pH 4.4, the most active and selective CO2 reduction was achieved at -1.30 V with turnover number of the catalyst similar to 1.1 x 10(6) h(-1) and the selectivity of the produced CO/H-2 similar to 4.2. The high activity was ascribed to the electron-donating BuO substituents of the complex, which would facilitate the coordination of CO2 as well as the electron transfer from the complex to the coordinated CO2 molecule. The use of a poly(4-vinylpyridine) membrane to disperse the complex decreased the activity. The mechanism was investigated by the use of in situ potential-step chronoamperospectroscopy (PSCAS) in a homogeneous CoPc(BuO)(8)/pyridine solution. In the absence of CO2, distinct two-steps visible spectral changes were observed following the first and second reductions of the complex, However, under CO2 atmosphere, only the one-electron reduced species was present under steady state. It was proposed that the third reduction of a CO2-coordinated CoPc(BuO)(8) should take place for CO production.
引用
收藏
页码:55 / 61
页数:7
相关论文
共 33 条
[21]   USE OF GAS-DIFFUSION ELECTRODES FOR HIGH-RATE ELECTROCHEMICAL REDUCTION OF CARBON-DIOXIDE .2. REDUCTION AT METAL PHTHALOCYANINE-IMPREGNATED ELECTRODES [J].
MAHMOOD, MN ;
MASHEDER, D ;
HARTY, CJ .
JOURNAL OF APPLIED ELECTROCHEMISTRY, 1987, 17 (06) :1223-1227
[22]   ELECTROCATALYSIS BY METAL PHTHALOCYANINES IN REDUCTION OF CARBON-DIOXIDE [J].
MESHITSUKA, S ;
ICHIKAWA, M ;
TAMARU, K .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1974, (05) :158-159
[23]   CARBON-CARBON BOND FORMATION IN THE ELECTROCHEMICAL REDUCTION OF CARBON-DIOXIDE CATALYZED BY A RUTHENIUM COMPLEX [J].
NAGAO, H ;
MIZUKAWA, T ;
TANAKA, K .
INORGANIC CHEMISTRY, 1994, 33 (15) :3415-3420
[24]   ELECTROCHEMISTRY AND SPECTROELECTROCHEMISTRY OF MONONUCLEAR AND BINUCLEAR COBALT PHTHALOCYANINES [J].
NEVIN, WA ;
HEMPSTEAD, MR ;
LIU, W ;
LEZNOFF, CC ;
LEVER, ABP .
INORGANIC CHEMISTRY, 1987, 26 (04) :570-577
[25]   HEXADECAFLUORO PHTHALOCYANINES AND OCTACYANO PHTHALOCYANINES AS ELECTROCATALYSTS FOR THE REDUCTION OF DIOXYGEN [J].
OUYANG, JB ;
SHIGEHARA, K ;
YAMADA, A ;
ANSON, FC .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1991, 297 (02) :489-498
[26]   ELECTROCHEMICAL REDUCTION OF CO2 WITH HIGH-CURRENT DENSITY IN IT CO2-METHANOL MEDIUM [J].
SAEKI, T ;
HASHIMOTO, K ;
FUJISHIMA, A ;
KIMURA, N ;
OMATA, K .
JOURNAL OF PHYSICAL CHEMISTRY, 1995, 99 (20) :8440-8446
[27]   GAS-PHASE ELECTROCATALYTIC REDUCTION OF CO-2 TO CO ON CARBON GAS-DIFFUSION ELECTRODE PROMOTED BY COBALT PHTHALOCYANINE [J].
SAVINOVA, ER ;
YASHNIK, SA ;
SAVINOV, EN ;
PARMON, VN .
REACTION KINETICS AND CATALYSIS LETTERS, 1992, 46 (02) :249-254
[28]  
WOHRLE D, 1992, DYES PIGMENTS, V18, P92
[29]   ELECTROCATALYTIC REDUCTION OF CARBON-DIOXIDE IN AQUEOUS-MEDIUM BY BIS(2,2'-6',2''-TERPYRIDINE)COBALT(II) COMPLEX INCORPORATED INTO A COATED POLYMER MEMBRANE [J].
YOSHIDA, T ;
IIDA, T ;
SHIRASAGI, T ;
LIN, RJ ;
KANEKO, M .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1993, 344 (1-2) :355-362
[30]   SELECTIVE ELECTROCATALYSIS FOR CO2 REDUCTION IN THE AQUEOUS-PHASE USING COBALT PHTHALOCYANINE/POLY-4-VINYLPYRIDINE MODIFIED ELECTRODES [J].
YOSHIDA, T ;
KAMATO, K ;
TSUKAMOTO, M ;
IIDA, T ;
SCHLETTWEIN, D ;
WOHRLE, D ;
KANEKO, M .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1995, 385 (02) :209-225