TY - JOUR
T1 - Tandem internal electric fields in intralayer/interlayer carbon nitride homojunction with a directed flow of photo-excited electrons for photocatalysis
AU - Zhang, Jinqiang
AU - Tan, Xiaojie
AU - Shi, Lei
AU - Chen, Haijun
AU - Liu, Yazi
AU - Wang, Shuaijun
AU - Duan, Xiaoguang
AU - Wu, Mingbo
AU - Sun, Hongqi
AU - Wang, Shaobin
N1 - Publisher Copyright:
© 2023 Elsevier B.V.
PY - 2023/9/15
Y1 - 2023/9/15
N2 - Photocatalytic hydrogen production is a green technology while significantly impeded by the sluggish and uncontrolled charge dynamics for less electron accumulation on catalyst surface. Herein, we proposed an effective strategy of epitaxial growth of a van der Waals (VDW) homojunction on an intralayer homojunction of carbon nitride for a controlled charge flow. Experimental and simulation collectively disclosed a tandem internal electric field (IEF) in the integrated hybrid, stringing a lateral IEF along the intralayer homojunction with a vertical IEF within the VDW homojunction. The planar IEF dominates laterally dispersive movement of charge carriers for their efficient separations and mobilities, meanwhile the vertical IEF induces an oriented accumulation of the dispersive hot electrons to the catalyst surface for intensified hydrogen reduction. The tandem IEF renders the hydrogen evolution rate at 3.5-fold higher than in-planar homojunction, and 6.3 times higher than g-C3N4 benchmark. This work realizes charge-directing dynamics for robust photocatalysis.
AB - Photocatalytic hydrogen production is a green technology while significantly impeded by the sluggish and uncontrolled charge dynamics for less electron accumulation on catalyst surface. Herein, we proposed an effective strategy of epitaxial growth of a van der Waals (VDW) homojunction on an intralayer homojunction of carbon nitride for a controlled charge flow. Experimental and simulation collectively disclosed a tandem internal electric field (IEF) in the integrated hybrid, stringing a lateral IEF along the intralayer homojunction with a vertical IEF within the VDW homojunction. The planar IEF dominates laterally dispersive movement of charge carriers for their efficient separations and mobilities, meanwhile the vertical IEF induces an oriented accumulation of the dispersive hot electrons to the catalyst surface for intensified hydrogen reduction. The tandem IEF renders the hydrogen evolution rate at 3.5-fold higher than in-planar homojunction, and 6.3 times higher than g-C3N4 benchmark. This work realizes charge-directing dynamics for robust photocatalysis.
KW - Directed charge flow
KW - Hydrogen production
KW - Integrated carbon nitride homojunction
KW - Maximum photocatalysis
KW - Tandem internal electrical field
UR - http://www.scopus.com/inward/record.url?scp=85153048255&partnerID=8YFLogxK
U2 - 10.1016/j.apcatb.2023.122781
DO - 10.1016/j.apcatb.2023.122781
M3 - 文章
AN - SCOPUS:85153048255
SN - 0926-3373
VL - 333
JO - Applied Catalysis B: Environmental
JF - Applied Catalysis B: Environmental
M1 - 122781
ER -