2023
DOI: 10.1016/j.cej.2023.145169
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Engineering of Schottky heterojunction in Ru@Bi2S3/Nb2C MXene based on work function with enhanced carrier separation for promoted sterilization

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Cited by 20 publications
(2 citation statements)
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“…The unique engineering structure was advantageous for photo-excited ROS production under 808 nm laser irradiation, thus ameliorating the sterilizing efficiency in wound models. [73] PDT often involves two principles, namely, energy transfer to generate 1 O 2 utilizing O 2 (type II mechanism) and electron transfer to produce •OH/O 2 •À utilizing H 2 O/O 2 (type I mechanism). [74] The hypoxic feature in TME enables the combination of both type I and type II therapeutic strategy more hopeful for effective tumor therapy.…”
Section: Heterojunction-excited Ros Generation By Mxenementioning
confidence: 99%
“…The unique engineering structure was advantageous for photo-excited ROS production under 808 nm laser irradiation, thus ameliorating the sterilizing efficiency in wound models. [73] PDT often involves two principles, namely, energy transfer to generate 1 O 2 utilizing O 2 (type II mechanism) and electron transfer to produce •OH/O 2 •À utilizing H 2 O/O 2 (type I mechanism). [74] The hypoxic feature in TME enables the combination of both type I and type II therapeutic strategy more hopeful for effective tumor therapy.…”
Section: Heterojunction-excited Ros Generation By Mxenementioning
confidence: 99%
“…[103]. To overcome bacterial infections and antibiotic resistance, TiVCT X monolayers have been synthesized and demonstrated their dual-functional antibacterial ability [104]. The Ti-V MXene has exhibited a usual lamellar structure and it also demonstrated above 99.8% antibacterial ability against B. subtilis and E. coli after exposure to low-dose carbide.…”
Section: Antibacterialmentioning
confidence: 99%