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Enhanced Hydrogen Production from Methanol/Water Photo-Splitting in TiO2 Including Pd Component

机译:包含Pd组分的TiO 2 中甲醇/水光解法提高的产氢量

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The future use of hydrogen as an energy source is expected to increase on account of its environmentally friendliness. In order to enhance the production of hydrogen, Pd ions (0.01, 0.05, 0.1, and 0.5 mol%) were incorporated TiO2 (Pd-TiO2) and used as a photocatalyst. The UV-visible absorbance decreased with increasing level of palladium incorporation without a wavelength shift. Although all the absorption plots showed excitation characteristics, there was an asymmetric tail observed towards a higher wavelength caused by scattering. However, the intensity of the photoluminescence (PL) curves of Pd-TiO2 was smaller, with the smallest case being observed at 0.1 and 0.5 mol% Pd-TiO2, which was attributedto recombination between the excited electrons and holes. Based on these optical characteristics, the evolution of H2 from methanol/water (1:1) photo-splitting over Pd-TiO2 in the liquid system was enhanced, compared with that over pure TiO2. In particular, 2.4 mL of H2 gas was produced after 8 h when 0.5 g of a 1.0 mol% Pd-TiO2 catalyst was used. H2 was stably evolved even after 28 h without catalytic deactivation, and the amount of H2 produced reached 14.5 mL after 28 h. This is in contrast to the case of the Pd 0.1 mol% impregnated TiO2 of H2 evolution of 17.5 mL due to the more decreasedelectron-hole recombination.
机译:由于其对环境的友好性,预期将来氢作为能源的使用将增加。为了提高氢的产生,掺入了TiO 2(Pd-TiO 2)的Pd离子(0.01、0.05、0.1和0.5mol%)并用作光催化剂。紫外可见吸收度随钯掺入量的增加而降低,而不会发生波长偏移。尽管所有吸收图均显示出激发特性,但观察到由散射引起的朝向较高波长的不对称尾部。然而,Pd-TiO2的光致发光(PL)曲线的强度较小,在0.1和0.5 mol%Pd-TiO2处观察到最小的情况,这归因于激发电子和空穴之间的复合。基于这些光学特性,与纯TiO2相比,液态体系中Pd-TiO2上甲醇/水(1:1)光解过程中H2的析出得到增强。特别地,当使用0.5g的1.0mol%的Pd-TiO 2催化剂时,在8小时之后产生2.4mL的H 2气体。即使在没有催化失活的28小时后,H2仍稳定释放,并且在28小时后,产生的H2量达到14.5 mL。这与由于电子-空穴复合的减少更多而使H 2析出的Pd 0.1 mol%浸渍的TiO 2释放17.5 mL的情况相反。

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