| Literature DB >> 28580122 |
Hui Wang1, Shenlong Jiang1, Shichuan Chen1, Xiaodong Zhang1, Wei Shao1, Xianshun Sun1, Zhi Zhao1, Qun Zhang1, Yi Luo1, Yi Xie1.
Abstract
Understanding the photoexcitation processes in semiconductors is critical for the design of advanced photocatalytic materials. Nevertheless, traditional viewpoints focus on photogenerated free charge carriers, which are somehow invalid once the many-body effects are taken into account, especially for polymeric photocatalysts. Here we systematically investigate the photoexcitation processes involved in theEntities:
Year: 2017 PMID: 28580122 PMCID: PMC5435838 DOI: 10.1039/c7sc00307b
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Structural characterizations. (a) XRD pattern, (b) FT-IR spectrum, (c) XPS survey spectrum (inset: C 1s spectrum), and (d) UV-vis absorption spectrum of the g-C3N4 sample.
Fig. 2(a) Normalized steady-state PF and PH spectra at 300 K (delay time 1 ms). PH was recorded by accumulating 50 flash counts per point. (b) Time-resolved PH kinetics at 300 K. Inset: time-resolved PF kinetics at 300 K. (c) Normalized steady-state PH spectra at different delay times. (d) Normalized steady-state PF and PH spectra at 77 K. Inset: time-resolved PH kinetics at 77 K.
Fig. 3Ultrafast TA characterizations. (a) Representative TA spectra at different probe delays and (b) TA kinetic traces at different probing wavelengths for g-C3N4 (0.68 mJ cm–2). The solid line shows the global fitting of the decay kinetics using a tri-exponential function. The TA signal is given in mOD where OD stands for optical density. (c) Schematic illustration of the photophysical processes involved in the g-C3N4 system.
Fig. 4Transient absorption spectra and dynamics under different conditions. (a) Representative TA spectra taken at a probe delay of 3 ps under different pump fluences (0.51 and 0.85 mJ cm–2). (b) TA kinetic traces at different probing wavelengths (510–560 nm, 6 traces with a 10 nm interval) under different pump fluences. (c) TA kinetic traces at different probing wavelengths (510–560 nm, 6 traces with a 10 nm interval) in different solvents. (d) Time-resolved PF kinetics at 300 K in different solvents.
Fig. 5Photocatalytic evaluation of g-C3N4 samples. (a) Time-dependent H2 evolution. (b) DMPO- and (c) TEMP-trapped ESR measurements in different solutions. (d) Schematic illustration for various photocatalytic processes.