COADSORPTION OF BISMUTH WITH ELECTROCATALYTIC MOLECULES - A STUDY OF FORMIC-ACID OXIDATION ON PT(100)

被引:30
作者
KIZHAKEVARIAM, N [1 ]
STUVE, EM [1 ]
机构
[1] UNIV WASHINGTON,DEPT CHEM ENGN,BF-10,SEATTLE,WA 98195
来源
JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A-VACUUM SURFACES AND FILMS | 1990年 / 8卷 / 03期
关键词
D O I
10.1116/1.576735
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Bismuth is an effective promoter in formic acid electrocatalysis on Pt(lOO), yet this system is problematic and the reaction mechanisms not well understood. We investigate this from a surface science perspective by studying Bi adsorption and coadsorption with CO, G2, H2<3, and HCOOH on Pt(100) with low-energy electron diffraction (LEED) and thermal desorption spectroscopy (TDS). The “hex” reconstruction of clean Pt(100) is gradually and completely lifted by increasing Bi coverage up to 0.2 5 monolayer (ML); saturation coverage is 0.5 ML with a c (2 × 2) LEED pattern. Low coverages of Bi (below 0.25 ML) exhibit moderate attractive interactions, whereas repulsive interactions occur for higher coverages. The heat of adsorption for Bi in the limit of zero coverage is 380 kJ/mol. Bismuth is an effective site blocker for CO and 02with each adatom blocking two CO molecules and two O atoms. Strangely, Bi is not hydrated by coadsorbed H20 and a Ft(100) surface with only 0.2 ML Bi is hydrophobic. Both clean and Bi covered Pt(100) are inert to HCOOH; only molecular adsorption occurs below 220 K. Preadsorbed oxygen dramatically enhances HCOOH reaction, however, with complete oxidation to C02and H20 occurring at 300 K via the formate intermediate. The implications of these results towards electrocatalysis are discussed. © 1990, American Vacuum Society. All rights reserved.
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页码:2557 / 2562
页数:6
相关论文
共 24 条
[1]   SURFACE-REACTION MODIFICATION - THE EFFECT OF STRUCTURED OVERLAYERS OF SULFUR ON THE KINETICS AND MECHANISM OF THE DECOMPOSITION OF FORMIC-ACID ON PT(111) [J].
ABBAS, N ;
MADIX, RJ .
APPLICATIONS OF SURFACE SCIENCE, 1983, 16 (3-4) :424-440
[2]   ADSORPTION OF FORMIC-ACID ON CLEAN AND OXYGEN COVERED PT(111) [J].
AVERY, NR .
APPLICATIONS OF SURFACE SCIENCE, 1982, 11-2 (JUL) :774-783
[3]   THE ADSORPTION OF CO, O2, AND H-2 ON PT(100)-(5X20) [J].
BARTEAU, MA ;
KO, EI ;
MADIX, RJ .
SURFACE SCIENCE, 1981, 102 (01) :99-117
[4]   THE INTERACTION OF CO AND PT(100) .1. MECHANISM OF ADSORPTION AND PT PHASE-TRANSITION [J].
BEHM, RJ ;
THIEL, PA ;
NORTON, PR ;
ERTL, G .
JOURNAL OF CHEMICAL PHYSICS, 1983, 78 (12) :7437-7447
[5]   A NEW METHOD FOR ANALYSIS OF REACTIVE ADSORBED INTERMEDIATES - BISMUTH POSTDOSING IN THERMAL-DESORPTION MASS-SPECTROSCOPY [J].
CAMPBELL, CT ;
RODRIGUEZ, JA ;
HENN, FC ;
CAMPBELL, JM ;
DALTON, PJ ;
SEIMANIDES, SG .
JOURNAL OF CHEMICAL PHYSICS, 1988, 88 (10) :6585-6593
[6]   HETEROGENEOUS ELECTROCATALYSIS ON WELL DEFINED PLATINUM SURFACES MODIFIED BY CONTROLLED AMOUNTS OF IRREVERSIBLY ADSORBED ADATOMS .1. FORMIC-ACID OXIDATION ON THE PT (111) - BI SYSTEM [J].
CLAVILIER, J ;
FERNANDEZVEGA, A ;
FELIU, JM ;
ALDAZ, A .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1989, 258 (01) :89-100
[7]   THE GROWTH MODES OF VAPOR-DEPOSITED BISMUTH ON A CU(110) SURFACE [J].
CLENDENING, WD ;
CAMPBELL, CT .
JOURNAL OF CHEMICAL PHYSICS, 1989, 90 (11) :6656-6663
[8]   MECHANISMS OF FORMIC-ACID, METHANOL, AND CARBON-MONOXIDE ELECTROOXIDATION AT PLATINUM AS EXAMINED BY SINGLE POTENTIAL ALTERATION INFRARED-SPECTROSCOPY [J].
CORRIGAN, DS ;
WEAVER, MJ .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1988, 241 (1-2) :143-162
[9]   METAL ELECTROLYTE SURFACE-CHEMISTRY - THE ADSORPTION OF NITRIC-ACID AND WATER ON AG(110) [J].
DOHLOELZE, R ;
BROWN, CC ;
STARK, S ;
STUVE, EM .
SURFACE SCIENCE, 1989, 210 (03) :339-362
[10]   KINETICS AND MECHANISM OF AUTOCATALYTIC DECOMPOSITION OF HCOOH ON CLEAN NI(110) [J].
FALCONER, JL ;
MADIX, RJ .
SURFACE SCIENCE, 1974, 46 (02) :473-504