Wei Zhou, Honggang Fu
Index: 10.1039/C8QI00122G
Full Text: HTML
Defects play important roles in semiconductor photocatalysis, which not only can act as active sites but also serve as recombination centers for electrons and holes. The rational control of defects appears to be particularly important. Defect engineering in semiconductor electron–hole separation is complex but vital for photocatalysis, and the exact control of defects still presents a great challenge. This review endeavors to clarify the inherent functionality of different defects such as bulk defects and surface/interface defects. The common defects such as oxygen vacancies and Mn+ defects have been summarized and discussed. The controllable creation of defects could lead to defect channels via defect–strain coupling, defect–defect and defect–electron interactions, which contribute to the enhancement in electronic conductivity and the separation of photogenerated electron–hole pairs. The deep understanding of defects can consolidate the fundamental photocatalytic theory and provide new insights for rationally designing defect-engineered semiconductor photocatalytic materials with satisfactory performance.
Alkaline oxygen evolution electrocatalysis driven by Fe-MOF ...
2018-04-13 [10.1039/C8QI00163D] |
Homochiral metal-organic frameworks for industrially relevan...
2018-04-11 [10.1039/C8QI00063H] |
Na6Zn3MIII2Q9 (MIII = Ga, In; Q = S, Se): four new supertetr...
2018-04-10 [10.1039/C8QI00182K] |
Crystal chemistry and thermoelectric transport of layered AM...
2018-04-09 [10.1039/C7QI00813A] |
Comprehensive Studies on Phosphoric Acid Treatment of Porous...
2018-04-09 [10.1039/C8QI00146D] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved