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Efficient visible-light photocatalytic degradation system assisted by conventional Pd catalysis

机译:高效的可见光光催化降解系统通过常规PD催化辅助

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Different approaches like doping and sensitization have been used to develop photocatalysts that can lead to high reactivity under visible-light illumination, which would allow efficient utilization of solar irradiation and even interior lighting. We demonstrated a conceptually different approach by changing reaction route via introducing the idea of conventional Pd catalysis used in cross-coupling reactions into photocatalysis. The –O–Pd–Cl surface species modified on Ni-doped TiO2 can play a role the same as that in chemical catalysis, resulting in remarkably enhanced photocatalytic activity under visible-light irradiation. For instance, Pd/Ni-TiO2 has much higher activity than N-TiO2 (about 3 ~ 9 times for all of the 4-XP systems) upon irradiation with wavelength of 420?nm. The catalytically active Pd(0) is achieved by reduction of photogenerated electrons from Ni-TiO2. Given high efficient, stable Pd catalysts or other suitable chemical catalysts, this concept may enable realization of the practical applications of photocatalysis.
机译:掺杂和敏化等不同的方法已被用于开发光催化剂,这可能导致可见光照明的高反应性,这将允许有效利用太阳照射甚至内部照明。我们通过在将交叉偶联反应中的常规PD催化剂中引入光催宿分析来改变反应路径来证明了一种概念上不同的方法。在Ni-掺杂TiO 2 上修饰的-O-PD-CL表面物种可以起到与化学催化剂中的作用相同,导致可见光照射下的显着增强的光催化活性。例如,在照射时,Pd / Ni-TiO 2 具有比N-TiO 2 的更高的活动(约3〜9次)波长420?nm。通过从Ni-TiO 2 的光发生的电子降低光生电子来实现催化活性Pd(0)。鉴于高效,稳定的Pd催化剂或其他合适的化学催化剂,这种概念可以实现光催化的实际应用。

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