SURFACE-CHEMISTRY OF CARBON - ACTIVATION OF MOLECULAR-OXYGEN

被引:104
作者
ATAMNY, F
BLOCKER, J
DUBOTZKY, A
KURT, H
TIMPE, O
LOOSE, G
MAHDI, W
SCHLOGL, R
机构
[1] UNIV NIEDERURSELER HANG,INST ANORGAN CHEM,W-6000 FRANKFURT 50,GERMANY
[2] MAX PLANCK GESELL,FRITZ HABER INST,W-1000 BERLIN 33,GERMANY
关键词
D O I
10.1080/00268979200101731
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
Three different industrial carbon blacks were characterized in their surface chemistry with respect to their relative abilities to activate molecular oxygen. A variety of techniques was used including x-ray diffraction, gasification experiments, electron spectroscopy as XPS and UPS, helium ion scattering spectroscopy, thermal desorption spectroscopy and the catalytic oxidation of aqueous SO2 as a "chemical probe" for activated oxygen. The activation properties for molecular oxygen at high temperatures were probed by analysing the gasification characteristics in 5 vol % oxygen-inert gas mixtures; at low temperatures the activity in the oxidation of SO2 to sulfuric acid with molecular oxygen was taken as indicator. For this reaction the carbons had to be activated by ammonia treatment at elevated temperatures. Thermal desorption spectroscopy and valence band photoemission provided data for the identification of reaction intermediates in the activation process of oxygen. The important role of surface chemical anisotropy caused by vast differences in bulk crystal structure is pointed out. The results are discussed within a model of oxygen activation which assumes two types of surface sites differing in their pi-electron density. Sites, rich in pi-electrons are graphitic and can activate oxygen to the O-2(2-) species which is short-lived and can be accumulated in the carbon pores. Further activation involves dissociation of the peroxo group into O- species which finally react with the second sites with the formation of covalent carbon-oxygen bonds. The relative abundance of the low temperature reactive O-2(2-) species and the high temperature active O- species is on as-received carbons, low for the peroxo species, and can be enhanced considerably by modifying the abundance of graphitic surface patches on carbon black and by generating suitable porosity.
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页码:851 / 886
页数:36
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  • [1] XPS STUDY OF POLYMER ORGANOMETALLIC INTERACTION - TRIMETHYL ALUMINUM ON POLYVINYL-ALCOHOL POLYMER
    AKHTER, S
    ZHOU, XL
    WHITE, JM
    [J]. APPLIED SURFACE SCIENCE, 1989, 37 (02) : 201 - 216
  • [2] Amelinckx S, 1965, CHEM PHYS CARBON, V1, P2
  • [3] ATAMNY F, 1992, IN PRESS ULTRAMICROS
  • [4] ATAMNY F, 1992, IN PRESS J CHEM PHYS
  • [5] Bansal R.C., 1988, ACTIVE CARBON
  • [6] BANSAL RC, 1980, INDIAN J CHEM A, V19, P1149
  • [7] SURFACE STUDIES OF CARBON - ACIDIC OXIDES ON SPHERON-6
    BARTON, SS
    GILLESPI.D
    HARRISON, BH
    [J]. CARBON, 1973, 11 (06) : 649 - 654
  • [8] CARBON AS A CATALYST IN OXIDATION REACTIONS AND HYDROGEN HALIDE ELIMINATION-REACTIONS
    BOEHM, HP
    MAIR, G
    STOEHR, T
    DERINCON, AR
    TERECZKI, B
    [J]. FUEL, 1984, 63 (08) : 1061 - 1063
  • [9] BASIC SURFACE OXIDES ON CARBON .1. ADSORPTION OF ACIDS
    BOEHM, HP
    VOLL, M
    [J]. CARBON, 1970, 8 (02) : 227 - &
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    BRINEN, JS
    DAVIGNON, DA
    MEYERS, EA
    DENG, PT
    BEHNKEN, DW
    [J]. SURFACE AND INTERFACE ANALYSIS, 1984, 6 (06) : 295 - 301