Lou Shi Nee, Ng Yun Hau, Ng Charlene, Scott Jason, Amal Rose
Particles and Catalysis Research Group (PARTCAT), School of Chemical Engineering, The University of New South Wales, Sydney, New South Wales 2052 (Australia).
ChemSusChem. 2014 Jul;7(7):1934-41. doi: 10.1002/cssc.201400047. Epub 2014 May 8.
Nanostructured molybdenum oxide (α-MoO3 ) thin film photoelectrodes were synthesised by anodisation. Upon band gap-excitation by light illumination, α-MoO3 is able to store a portion of the excited charges in its layered structure with the simultaneous intercalation of alkali cations. The stored electrons can be discharged from α-MoO3 for utilisation under dark conditions, and α-MoO3 is able to recharge itself with successive illuminations to behave as a 'self-photo-rechargeable' alkali-ion battery. The alteration of the anodisation pH allowed the crystal structure and oxygen vacancy concentrations of α-MoO3 to be modulated to achieve (i) a distorted MoO6 octahedra for enhanced charge separation and storage, (ii) a layered structure with a greater exposed (010) crystal face for rich and reversible ion intercalation and (iii) a highly crystalline thin film that suppresses electron-hole pair recombination. Overall, the larger MoO6 octahedral distortion in α-MoO3 at a higher pH favours charge storage, whereas smaller octahedral distortion at a lower pH leads to anodic photocurrent enhancement.
通过阳极氧化法合成了纳米结构的氧化钼(α-MoO₃)薄膜光电极。在光照射下的带隙激发时,α-MoO₃能够在其层状结构中存储一部分激发电荷,同时嵌入碱金属阳离子。存储的电子可以在黑暗条件下从α-MoO₃中释放出来以供利用,并且α-MoO₃能够通过连续光照进行自我充电,从而表现为一种“自光充电”的碱离子电池。阳极氧化pH值的改变使得α-MoO₃的晶体结构和氧空位浓度得到调控,以实现:(i)扭曲的MoO₆八面体,用于增强电荷分离和存储;(ii)具有更大暴露(010)晶面的层状结构,用于丰富且可逆的离子嵌入;(iii)抑制电子-空穴对复合的高度结晶薄膜。总体而言,在较高pH值下α-MoO₃中较大的MoO₆八面体畸变有利于电荷存储,而在较低pH值下较小的八面体畸变则导致阳极光电流增强。