Key intermediates in the hydrogenation of carboxylic acids over Pt-ReOx/TiO2 catalyst

N. V. Makolkin, E. A. Paukshtis, V. Kaichev, A. P. Suknev, B. Bal’zhinimaev, H. Kim, J. Jae
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Abstract

The reactivity of different forms of adsorbed acetic acid on the Pt-ReOx/TiO2 catalyst was studied. To this end, in situ FTIR spectroscopy at T = 200 °С was used to identify three forms of adsorbed acetic acid: bidentate acetates and two forms of molecularly adsorbed acetic acid (1645–1653 and 1700–1720 cm–1). Rate constants for the consumption of two forms of molecularly adsorbed acetic acid, which are equal to 0.029 and 0.02 s–1, respectively, were found to be close to the rate constant of the catalytic reaction equal to 0.034 s–1, which was measured at T = 200 °С. It was concluded that two forms of molecularly adsorbed acetic acid serve as the key intermediates in the hydrogenation of acetic acid over Pt-ReOx/TiO2 catalyst.
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Pt-ReOx/TiO2催化剂上羧酸加氢的关键中间体
研究了不同形式的吸附乙酸在Pt-ReOx/TiO2催化剂上的反应性。为此,使用T = 200°С的原位FTIR光谱鉴定了三种形式的吸附乙酸:双齿醋酸酯和两种形式的分子吸附乙酸(1645-1653和1700-1720 cm-1)。两种形式的分子吸附乙酸的消耗速率常数分别为0.029和0.02 s-1,与T = 200°С下测得的催化反应速率常数0.034 s-1接近。结果表明,两种形式的分子吸附乙酸是Pt-ReOx/TiO2催化剂上醋酸加氢反应的关键中间体。
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