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Decade Milestone Advancement of Defect-Engineered g-C_(3)N_(4) for Solar Catalytic Applications 被引量:3

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摘要 Over the past decade, graphitic carbon nitride(g-C_(3)N_(4)) has emerged as a universal photocatalyst toward various sustainable carbo-neutral technologies. Despite solar applications discrepancy, g-C_(3)N_(4) is still confronted with a general fatal issue of insufficient supply of thermodynamically active photocarriers due to its inferior solar harvesting ability and sluggish charge transfer dynamics. Fortunately, this could be significantly alleviated by the “all-in-one” defect engineering strategy, which enables a simultaneous amelioration of both textural uniqueness and intrinsic electronic band structures. To this end, we have summarized an unprecedently comprehensive discussion on defect controls including the vacancy/non-metallic dopant creation with optimized electronic band structure and electronic density, metallic doping with ultraactive coordinated environment(M–N_(x), M–C_(2)N_(2), M–O bonding), functional group grafting with optimized band structure, and promoted crystallinity with extended conjugation π system with weakened interlayered van der Waals interaction. Among them, the defect states induced by various defect types such as N vacancy, P/S/halogen dopants, and cyano group in boosting solar harvesting and accelerating photocarrier transfer have also been emphasized. More importantly, the shallow defect traps identified by femtosecond transient absorption spectra(fs-TAS) have also been highlighted. It is believed that this review would pave the way for future readers with a unique insight into a more precise defective g-C_(3)N_(4) “customization”, motivating more profound thinking and flourishing research outputs on g-C_(3)N_(4)-based photocatalysis.
出处 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第4期153-218,共66页 纳微快报(英文版)
基金 the support of the Australia Research Council (ARC) through the Discovery Project (DP230101040) the Natural Science Foundation of Shandong Province (ZR2022QB139, No. ZR2020KF025) the Starting Research Fund (Grant No. 20210122) from the Ludong University the Natural Science Foundation of China (12274190) from the Ludong University the support of the Shandong Youth Innovation Team Introduction and Education Program the Special Fund for Taishan Scholars Project (No. tsqn202211186) in Shandong Province。
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  • 1王亦清,沈少华.非金属掺杂石墨相氮化碳光催化的研究进展与展望[J].物理化学学报,2020,36(3):57-70. 被引量:31
  • 2井立强,辛柏福,王德军,袁福龙,付宏刚,孙家锺吉林大学理论化学研究所.ZnO和TiO_2纳米粒子的光致发光性能及其与光催化活性的关系[J].高等学校化学学报,2005,26(1):111-115. 被引量:37
  • 3Fujishima A and Honda K 1972 Nature 238 37.
  • 4Ni M, Leung M K H, Leung D Y C and Sumathy K 2007 Renew. Sust. Energ. 11 401.
  • 5Gnaser H, Huber B and Ziegler C 2004 "Nanocrystalline TiO2 for Photocatalysis", in: Nalwa H S ed. Encyclopedia of Nanoscience and Nanotechnology Vol. 6, pp. 505-535.
  • 6Asahi R, Morikawa T, Ohwaki T, Aoki K and Taga Y 2001 Science 293 269.
  • 7Lin Y M, Jiang Z Y, Hu X Y, Zhang X D, Fan J, Miao H and Shang Y B 2012 Chin. Phys. B 21 033103.
  • 8Gao P, Wu J, Liu Q J and Zhou W F 2010 Chin. Phys. B 19 087103.
  • 9Yi Z, Ye J, Kikugawa N, Kako T, Ouyang S, StuartWilliams H, Yang H, Cao J, Luo W, Li Z, Liu Y and Withers R L 2010 Nat. Mater. 9 559.
  • 10Kale B B, Baeg J O, Lee S M, Chang H, Moon S J and Lee C W 2006 Adv. Funct. Mater. 16 1349.

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