Choe Hye Rin, Han Sung Su, Kim Yong-Il, Hong Changhyun, Cho Eun Jin, Nam Ki Min
Department of Chemistry and Chemistry Institute for Functional Materials, Pusan National University, Busan 46241, Republic of Korea.
Department of Chemistry, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Republic of Korea.
ACS Appl Mater Interfaces. 2021 Jan 13;13(1):1714-1722. doi: 10.1021/acsami.0c15488. Epub 2020 Dec 28.
The effective utilization of visible light is required for exploiting photocatalytic reactions in indoor and outdoor environments. In this study, Pd-supported BiVO microspheres (Pd-BiVO) were prepared for visible light-induced photocatalytic reactions. Under irradiation with a white light-emitting diode, the obtained Pd-BiVO composite exhibited considerably improved catalytic activity for the decomposition of an organic dye compared with other BiVO catalysts. The Pd-BiVO composite was also effective for catalytic organic transformation via the visible light-induced Suzuki-Miyaura coupling reaction. The photogenerated electrons in the conduction band of BiVO flowed to the Pd nanoparticles and amplified cross-coupling reaction. The influence of the crystal structure and grain size of BiVO and the role of the deposited Pd nanoparticles were fully investigated to elucidate the visible light activity of the catalyst. This system highlights the possibility of an indoor light source with low energy density for sustainable organic transformations.
在室内和室外环境中利用光催化反应需要有效利用可见光。在本研究中,制备了负载钯的BiVO微球(Pd-BiVO)用于可见光诱导的光催化反应。在白色发光二极管照射下,与其他BiVO催化剂相比,所得的Pd-BiVO复合材料对有机染料的分解表现出显著提高的催化活性。Pd-BiVO复合材料通过可见光诱导的铃木-宫浦偶联反应对催化有机转化也有效。BiVO导带中的光生电子流向钯纳米颗粒并放大交叉偶联反应。充分研究了BiVO的晶体结构和晶粒尺寸的影响以及沉积的钯纳米颗粒的作用,以阐明催化剂的可见光活性。该系统突出了利用低能量密度室内光源实现可持续有机转化的可能性。