Li Yanguang, Tan Bing, Wu Yiying
Department of Chemistry, The Ohio State University, Columbus, Ohio 43210, USA.
J Am Chem Soc. 2006 Nov 8;128(44):14258-9. doi: 10.1021/ja065308q.
We report a facile template-free method for the large-area growth of freestanding hollow Co3O4 nanowire arrays on a variety of substrates including transparent conducting glass, Si wafer, and copper foil, et al. These nanowires have the interesting combined properties of mesoporosity and quasi-single-crystallinity. With their high surface area and crystallinity, and their direct growth on conductive substrate, these Co3O4 nanowire arrays will have promising applications in lithium-ion batteries, chemical sensing, and field-emission and electrochromic devices. Using the prepared nanowire arrays as electrode, an electrochemical sensor for hydrogen peroxide sensing has been demonstrated.
我们报道了一种简便的无模板方法,可在包括透明导电玻璃、硅片和铜箔等多种衬底上大面积生长独立的中空Co3O4纳米线阵列。这些纳米线具有介孔性和准单晶性的有趣组合特性。凭借其高表面积和结晶度,以及在导电衬底上的直接生长,这些Co3O4纳米线阵列在锂离子电池、化学传感、场发射和电致变色器件方面将有广阔的应用前景。以制备的纳米线阵列作为电极,已展示了一种用于过氧化氢传感的电化学传感器。