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首页> 外文期刊>Journal of Raman Spectroscopy: An International Journal for Original Work in All Aspects of Raman Spectroscopy, Including Higher Order Processes, and Also Brillouin- and Rayleigh Scattering >Evidences for charge-transfer complex formation in the benzene adsorption on sulfated TiO2-a resonance Raman spectroscopy investigation
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Evidences for charge-transfer complex formation in the benzene adsorption on sulfated TiO2-a resonance Raman spectroscopy investigation

机译:硫酸化TiO2-吸附苯中电荷转移配合物形成的证据-共振拉曼光谱研究

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Benzene adsorbed on highly acidic sulfated TiO2 (S-TiO2) shows an intriguing resonance Raman (RR) effect, with excitation in the blue-violet region. There are very interesting spectral features: the preferential enhancement of the e(2g) mode (1595 cm(-1)) in relation to the a(1g) mode (ring-breathing mode at 995 cm(-1)) and the appearance of bands at 1565 and 1514 cm(-1). The band at 1565 cm(-1) is probably one of the components of the e(2g) split band, originally a doubly degenerate mode (8a, 8b) in neat benzene, and the band at 1514 cm(-1) is assigned to the 19a mode, an inactive mode in neat benzene. These facts indicate a lowering of symmetry in adsorbed benzene, which may be caused by a strong interaction between S-TiO2 and the benzene molecule with formation of a benzene to Ti (IV) charge transfer (CT) complex or by the formation of a benzene radical cation species. However, the RR spectra of the adsorbed benzene cannot be assigned to the benzene radical cation because the observed wavenumber of the ring-breathing mode does not have the value expected for this species. Moreover, it was found by ESR measurements that the amount of radicals was very low, and so it was concluded that a CT complex is the species that originates the RR spectra. The most favorable intensification of the band at 1595 cm(-1) in the RR spectra of benzene/S-TiO2 at higher excitation energy corroborates this hypothesis, as an absorption band in this energy range, assigned to a CT transition, is observed. Copyright (C) 2008 John Wiley & Sons, Ltd.
机译:吸附在高酸性硫酸盐TiO2(S-TiO2)上的苯显示出令人感兴趣的共振拉曼(RR)效应,并在蓝紫色区域激发。有非常有趣的光谱特征:与a(1g)模式(995 cm(-1)的环形呼吸模式)相比,e(2g)模式(1595 cm(-1))的优先增强1565和1514 cm(-1)处的波段数。 1565 cm(-1)处的谱带可能是e(2g)分离谱带的成分之一,最初是纯苯的双简并模(8a,8b),并指定了1514 cm(-1)谱带。变为19a模式,这是纯苯的惰性模式。这些事实表明,吸附的苯的对称性降低,这可能是由于S-TiO2与苯分子之间的强相互作用,以及苯到Ti(IV)电荷转移(CT)络合物的形成或苯的形成自由基阳离子种类。但是,吸附的苯的RR光谱不能归因于苯自由基阳离子,因为观察到的环吸气模式的波数不具有该物质预期的值。此外,通过ESR测量发现自由基的数量非常低,因此得出结论,CT复合物是起源于RR光谱的物质。在较高激发能下,苯/ S-TiO2的RR光谱中1595 cm(-1)处的谱带最有利的增强证实了这一假设,因为观察到在该能范围内的吸收谱带被分配给CT跃迁。版权所有(C)2008 John Wiley&Sons,Ltd.

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