基于半导体的光电化学(PEC)水分解技术,利用可再生能源制氢,能够实现氢能全产业链的绿色无碳化,是极具潜力的氢能发展路径之一。氧化钨(WO_(3))作为一种可见光响应的n型半导体,是PEC水分解制氢最有前途的材料之一。然而,可见光利用率低...基于半导体的光电化学(PEC)水分解技术,利用可再生能源制氢,能够实现氢能全产业链的绿色无碳化,是极具潜力的氢能发展路径之一。氧化钨(WO_(3))作为一种可见光响应的n型半导体,是PEC水分解制氢最有前途的材料之一。然而,可见光利用率低以及光生载流子复合率高等问题严重影响着WO_(3)光电极的实际应用。将有机半导体聚多巴胺(PDA)与无机半导体WO_(3)结合,成功构筑了WO_(3)/PDA复合电极,其光电流密度在1.23 V vs.RHE偏压下达到0.67 mA/cm^(2),是单一WO_(3)光电极(0.30 mA/cm^(2)1.23 V vs.RHE)的2.23倍。研究表明,在WO_(3)/PDA复合电极中,有机组分PDA展现出了优异的可见光吸收能力,无机组分WO_(3)提供了高载流子迁移率和快速的电荷传输通道,同时WO_(3)与PDA之间形成的异质结显著提高了载流子的分离效率,从而实现了载流子的有效分离与传输,因此光电催化性能得到了显著的提升。提出了一种通过构筑有机-无机复合结构来增强光电极光电性能的新策略。展开更多
Nanostructured TiO 2 porous film supported on nickel was prepared through sol-gel process,and was used as photoelectrode in solar energy photoelectrochemical cell.It was found that short circuit photocurrent and open ...Nanostructured TiO 2 porous film supported on nickel was prepared through sol-gel process,and was used as photoelectrode in solar energy photoelectrochemical cell.It was found that short circuit photocurrent and open circuit photovoltage of the photoelectrodes increased with the increment of sintering temperature and thickness of TiO 2 film.Through STM,the pore quantity and diameter of nanostructured TiO 2 film were found to increase with the increment of sintering temperature.It was found that the transparence of different thickness nanostructured TiO 2 films coated on quartz did not change much.展开更多
文摘基于半导体的光电化学(PEC)水分解技术,利用可再生能源制氢,能够实现氢能全产业链的绿色无碳化,是极具潜力的氢能发展路径之一。氧化钨(WO_(3))作为一种可见光响应的n型半导体,是PEC水分解制氢最有前途的材料之一。然而,可见光利用率低以及光生载流子复合率高等问题严重影响着WO_(3)光电极的实际应用。将有机半导体聚多巴胺(PDA)与无机半导体WO_(3)结合,成功构筑了WO_(3)/PDA复合电极,其光电流密度在1.23 V vs.RHE偏压下达到0.67 mA/cm^(2),是单一WO_(3)光电极(0.30 mA/cm^(2)1.23 V vs.RHE)的2.23倍。研究表明,在WO_(3)/PDA复合电极中,有机组分PDA展现出了优异的可见光吸收能力,无机组分WO_(3)提供了高载流子迁移率和快速的电荷传输通道,同时WO_(3)与PDA之间形成的异质结显著提高了载流子的分离效率,从而实现了载流子的有效分离与传输,因此光电催化性能得到了显著的提升。提出了一种通过构筑有机-无机复合结构来增强光电极光电性能的新策略。
文摘Nanostructured TiO 2 porous film supported on nickel was prepared through sol-gel process,and was used as photoelectrode in solar energy photoelectrochemical cell.It was found that short circuit photocurrent and open circuit photovoltage of the photoelectrodes increased with the increment of sintering temperature and thickness of TiO 2 film.Through STM,the pore quantity and diameter of nanostructured TiO 2 film were found to increase with the increment of sintering temperature.It was found that the transparence of different thickness nanostructured TiO 2 films coated on quartz did not change much.