Dual Metal–Organic Framework Heterointerface
Author(s) -
Yue Luo,
Jun Li,
Xiangmei Liu,
Lei Tan,
Zhenduo Cui,
Xiaobo Feng,
Xianjin Yang,
Yanqin Liang,
Zhaoyang Li,
Shengli Zhu,
Yufeng Zheng,
Kwk Yeung,
Yang Cao,
Xianbao Wang,
Shuilin Wu
Publication year - 2019
Publication title -
acs central science
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 4.893
H-Index - 76
eISSN - 2374-7951
pISSN - 2374-7943
DOI - 10.1021/acscentsci.9b00639
Subject(s) - dual (grammatical number) , metal organic framework , metal , nanotechnology , materials science , chemistry , computer science , metallurgy , adsorption , art , literature
Herein, a core-shell dual metal-organic framework (MOF) heterointerface is synthesized. The Prussian blue (PB) MOF acts as a core for the growth of a porphyrin-doped MOF which is named PB@MOF. Porphyrins can significantly enhance the transfer of photoinspired electrons from PB and suppress the recombination of electrons and holes, thus enhancing the photocatalytic properties and consequently promoting the yields of singlet oxygen rapidly under 660 nm illumination. PB@MOF can exhibit a better photothermal conversion efficiency up to 29.9% under 808 nm near-infrared irradiation (NIR). The PB@MOF heterointerface can possess excellent antibacterial efficacies of 99.31% and 98.68% opposed to Staphylococcus aureus and Escherichia coli , separately, under the dual light illumination of 808 nm NIR and 660 nm red light for 10 min. Furthermore, the trace amount of Fe and Zr ions can trigger the immune system to favor wound healing, promising that PB@MOF achieves the rapid therapy of bacterial infected wounds and environmental disinfection.
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