首页> 外文期刊>ChemCatChem >A New Porous Ni-W Mixed Metal Phosphonate Open Framework Material for Efficient Photoelectrochemical OER
【24h】

A New Porous Ni-W Mixed Metal Phosphonate Open Framework Material for Efficient Photoelectrochemical OER

机译:一种新的多孔Ni-W混合金属膦酸开放式框架材料,用于高效光电化学oer

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Photoelectrochemical water oxidation or oxygen evolution reaction (PEC-OER) at the semiconductor surfaces has attracted huge attention over the years as it plays key role for energetically demanding processes like fuel cells, water splitting, and rechargeable metal-air batteries. Thus, development of sustainable, abundant and economical semiconductor nanomaterials as the catalyst for photoelectrochemical water oxidation reaction is very challenging in achieving high efficiency in the overall water splitting reaction. Herein, we report a new porous Ni-W mixed metal phosphonate material NiWPPA-4 with open framework structure through simple hydrothermal route and its crystalline framework has been indexed into a new orthorhombic crystal with unit cell dimensions: a=14.5506 angstrom, b=17.6445 angstrom, c=20.1766 angstrom and alpha=beta=gamma=90 degrees. NiWPPA-4 has been successfully utilized for photoelectrochemical OER from moderately basic medium [1(M) KOH] under constant irradiation of 100 mWcm(-1) light source. Semiconducting property together with nanoscale porosity in the Ni-W mixed metal phosphonate is responsible for photoelectrochemical OER in alkaline pH. To the best of our knowledge it is the first report on a mixed metal phosphonate material, which showed excellent catalytic activity in the photoelectrochemical OER. The onset-potential of NiWPPA-4 prepared over ITO coated glass was only -410 mV vs Ag/AgCl and the oxygen evolution rate is 275 mu mol g(-1). This study thus established efficient photoelectrochemical OER on porous mixed-metal phosphonates and offer opportunities for the utilization of metal phosphonates as potential photocatalyst in the energy conversion processes.
机译:多年来,半导体表面的光电化学水氧化或氧气进化反应(PEC-OER)引起了巨大的关注,因为它对燃料电池,水分裂和可充电金属气电池等能量要求苛刻的工艺发挥着关键作用。因此,可持续,丰富和经济的半导体纳米材料作为光电化学水氧化反应的催化剂的发展在实现整个水分裂反应中的高效率方面非常具有挑战性。在此,通过简单的水热途径向开放骨架结构报告新的多孔Ni-W混合金属膦酸盐材料NiWPPA-4,其晶体框架已被指定为具有单位细胞尺寸的新的正交晶体:A = 14.5506埃,B = 17.645 Angstrom,C = 20.1766 Angstrom和alpha = beta =伽马= 90度。 NIWPPA-4已成功用于来自适度碱性培养基[1(M)KOH]的光电化学oer在100 mWcm(-1)光源的恒定照射下。半导体性能与Ni-W混合金属膦酸盐中的纳米级孔隙率一起负责碱性pH中的光电化学oer。据我们所知,它是关于混合金属膦酸盐材料的第一个报告,其在光电化学oer中显示出优异的催化活性。在ITO涂层玻璃上制备的NIWPPA-4的发病电位仅为-410 mV Vs Ag / AgCl,氧进化率为275μmmolg(-1)。因此,该研究因此建立了多孔混合金属膦酸盐上的高效光电化学oer,并为能量转换过程中潜在光催化剂提供金属膦酸盐的机会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号