Ryu Su Young, Lee Tai Kyu, Hoffmann Michael R
Environmental Science & Engineering, Linde Laboratory, California Institute of Technology, Pasadena, California 91125, United States.
Nanopac Co., Ltd., Giheung-gu, Yongin-si, Gyeonggi-do 17015, Republic of Korea.
ACS Omega. 2023 Sep 11;8(38):35173-35182. doi: 10.1021/acsomega.3c04829. eCollection 2023 Sep 26.
Herein, we report the structural and photophysical properties of CdS/Ni/KNbO composites with a quantum yield for photocatalytic H generation that is CdS and Ni amount dependent. The nonstoichiometric KNbO (1:1.1) structure indicates the defect at the K site, which is Ni-occupied during its deposit process. It exhibits a tendency like a Ni-doped characteristic up to 0.1 wt % Ni and then forms a Ni cluster in case the Ni amount exceeds 0.1 wt %. The related structural and photophysical properties of CdS/Ni/KNbO are examined with Fourier transform infrared, X-ray diffraction, ultraviolet-visible absorption, and luminescence spectral analysis. It demonstrates the CdS/Ni/KNbO composites to be an efficient light conversion caused by efficient charge/electron transfer between KNbO and CdS via doped Ni. The photocatalytic activity of CdS/Ni/KNbO exhibits a CdS and Ni amount dependency. The best photocatalytic activity for H generation is obtained with 0.1 wt % Ni and 2.9 wt % CdS as it gradually declines with the excess Ni amount than 0.1 wt % caused by a formed Ni cluster.
在此,我们报道了CdS/Ni/KNbO复合材料的结构和光物理性质,其光催化产氢的量子产率取决于CdS和Ni的含量。非化学计量比的KNbO(1:1.1)结构表明K位点存在缺陷,在其沉积过程中该位点被Ni占据。在Ni含量高达0.1 wt%时,它呈现出类似Ni掺杂的特性,而当Ni含量超过0.1 wt%时则形成Ni簇。通过傅里叶变换红外光谱、X射线衍射、紫外可见吸收光谱和发光光谱分析研究了CdS/Ni/KNbO的相关结构和光物理性质。结果表明,CdS/Ni/KNbO复合材料通过掺杂的Ni在KNbO和CdS之间实现了有效的电荷/电子转移,从而实现了高效的光转换。CdS/Ni/KNbO的光催化活性表现出对CdS和Ni含量的依赖性。当Ni含量为0.1 wt%、CdS含量为2.9 wt%时,获得了最佳的产氢光催化活性,随着Ni含量超过0.1 wt%形成Ni簇,光催化活性逐渐下降。