论文标题
贵金属免费光催化h $ _2 $在黑色Tio $ _2 $上发电:在水晶面的影响下与水晶伤害
Noble metal free photocatalytic H$_2$ generation on black TiO$_2$: On the influence of crystal facets vs. crystal damage
论文作者
论文摘要
在这项研究中,我们研究了在天然解剖酶单晶面上分裂高贵的金属光催化水,并在这些表面和之后通过高压氢(HPH)和氢离子 - 植入物进行了修饰之前和之后的[001]平面的晶圆切片。我们发现,在自然的,完整的低指数平面上,只有在氢化处理伴随着晶体损伤的引入,例如简单的刮擦,在晶片中误差或植入或植入损害时,才能实现光催化h $ _2 $进化(在没有贵金属共催化剂的情况下)。 X射线反射率(XRR),拉曼和光学反射测量表明,平原氢化导致〜1 nm厚的黑色钛钛表面层没有活性,而无色,密度修饰和〜7 nm厚的层,晶体对称性损坏。这些结果表明,i)完整培养酶表面的H处理需要与缺陷形成进行催化激活,ii)激活不一定与黑色的存在相吻合。
In this study, we investigate noble metal free photocatalytic water splitting on natural anatase single crystal facets and on wafer slices of the [001] plane before and after these surfaces have been modified by high pressure hydrogenation (HPH) and hydrogen ion-implantation. We find that on the natural, intact low index planes photocatalytic H$_2$ evolution (in absence of noble metal co-catalyst) can only be achieved when the hydrogenation treatment is accompanied by the introduction of crystal damage, such as simple scratching, miscut in the wafer or by implantation damage. X-ray reflectivity (XRR), Raman, and optical reflection measurements show that plain hydrogenation leads to a ~ 1 nm thick black titania surface layer without activity, while a colorless, density modified and ~ 7 nm thick layer with broken crystal symmetry is present in the ion implanted surface. These results demonstrate that i) the H-treatment of an intact anatase surface needs to be combined with defect formation for catalytic activation, and ii) activation does not necessarily coincide with the presence of black color.