论文标题

可见光催化剂的有序/无序蓝色TIO2的带重组

Band restructuring of ordered/disordered blue TiO2 for visible photocatalyst

论文作者

Oh, Simgeon, Kim, Ji-Hee, Hwang, Hee Min, Kim, Doyoung, Kim, Joosung, Park, G. Hwan, Kim, Joon Soo, Lee, Young Hee, Lee, Hyoyoung

论文摘要

为可见的光催化剂提出了黑色TiO2,带有或不带有贵金的金属,仍然留下较差的催化剂效率。或者,相结合的TiO2(例如启动酶和金红石)通常用于可见的催化剂,不可避免地包含贵金属。在这里,我们通过使用碱金属的相位选择性还原,以II型带序的剖析酶/无序金红石结构进行贵金属可见光催化剂蓝色TiO2。通过吸收和紫外光光谱鉴定了该异质结构中的带对齐方式,通过瞬态电荷分离进一步证实了带状光发射光谱。 I型和II型的带对齐方式通过延长的降低时期从有序转换为无序相位,可以清楚地重组,并且随着光吸光度的增强,也观察到了。 II型在原始样品中启动了I型,在3天Li-Reduction中是由金黄色金红石相组织的。 II型金红石TIO2异质结构在太阳能驱动的氢进化反应中,由于有效的电子和II型异质结的孔分离,在太阳能驱动的氢进化反应中,表现出显着的光催化性能。此外,与PT装饰的PT型原始养殖酶/金红石酶/金红石相结合的TiO2相比,这种重组的异临型II TIO2作为可比较的光催化性能的共催化剂的PT量减少了10倍。

Black TiO2 with/without noble metal has been proposed for visible photocatalyst, still leaving poor catalyst efficiency. Alternatively, phase-mixed TiO2 such as anatase and rutile has been commonly used for visible catalysts with the inevitable inclusion of noble metal. Here, we perform a noble metal-free visible photocatalyst blue TiO2 with type-II band-aligned ordered anatase/disordered rutile structure, via phase-selective reduction with alkali metals. The changed band alignment in this heterostructure was identified by absorption and ultraviolet photoemission spectroscopy, which was further confirmed by transient charge separation. The band alignment of type-I and type-II was clearly restructured by converting from ordered to disordered phase with a prolonged reduction period and as followed light absorbance enhancement also observed. Initiated type-I in a pristine sample, the type-II was organized from disordered rutile phase in 3-day Li-reduction. The type-II disordered rutile TiO2 heterostructure exhibits a remarkable photocatalytic performance by 55 times higher than conventional P25 TiO2 in solar-light driven hydrogen evolution reaction owing to an efficient electron and hole separation of type-II heterojunction. Furthermore, this restructured heterojunction type-II TiO2 demanded 10 times less Pt amount as a co-catalyst for the comparable photocatalytic performance, compared to Pt decorated type-I pristine anatase/rutile phase-mixed TiO2.

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