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It can improve charge separation and extend light absorption range via component optimization.
Through this unique structure of a copolymer, the electronic property and light absorption range were effectively tuned.
Moreover, the large SBET and extended light absorption range also play an important role for improving the photocatalytic activity.
The synergistic effect of Au NPs and RGO enhances visible light absorption range and transmits the hot electrons more efficiently.
Colloidal QDs, typically, alloyed QDs with extending light absorption range, exhibit prospective application on quantum dot-sensitized solar cells (QDSCs).
There is a wide light absorption range in the near ultraviolet and visible region for the polymer (PIDT-QCd) with Cd as coordination ion and IDT as donor.
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In addition, the N-Ti3+/TiO2 NTs photoelectrode exhibited intense visible light absorption ranging from 400 to 800 nm, high transient photoinduced current of 0.213 mA cm−2, charge carriers concentration of 0.92 × 1019 cm−3, generation of hydroxyl radicals and PEC efficiency of 100% for the degradation of diclofenac solution within 4 h visible light irradiation.
All results showed that N-S-TiO2 NCs/TNTAs photoelectrode exhibited intense visible light absorption ranging from 400 to 700 nm, high transient photoinduced current of 0.115 mA cm−2, open circuit photovoltage of −0.312 mV cm−2, generation of hydroxyl radicals and PC efficiency of 59.7% for the degradation of MB.
The CdS and PbS quantum dot-co-sensitized TNTA photoelectrode shows a significant enhancement in the visible-light absorption range between 400 and 600 nm.
In contrast, the CdS and PbS quantum dot-co-sensitized TNTA photoelectrode shows a significant enhancement in a visible-light absorption range especially between 400 and 600 nm.
Thus, how to broaden the visible-light absorption range or promote electron-hole pairs separating has been an effective direction to push the research forward.
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