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Ultrasmall Black Phosphorus Quantum Dots: Synthesis and Use as Photothermal Agents

Angewandte Chemie · 2015 · Vol. 127(39) · pp. 11688–11692
Zhengbo SunHanhan XieSiying TangXue‐Feng YuZhinan GuoJundong ShaoHan ZhangHao HuangHuai‐Yu WangPaul K. Chu

Abstract

Abstract Black phosphorus quantum dots (BPQDs) were synthesized using a liquid exfoliation method that combined probe sonication and bath sonication. With a lateral size of approximately 2.6 nm and a thickness of about 1.5 nm, the ultrasmall BPQDs exhibited an excellent NIR photothermal performance with a large extinction coefficient of 14.8 Lg −1 cm −1 at 808 nm, a photothermal conversion efficiency of 28.4 %, as well as good photostability. After PEG conjugation, the BPQDs showed enhanced stability in physiological medium, and there was no observable toxicity to different types of cells. NIR photoexcitation of the BPQDs in the presence of C6 and MCF7 cancer cells led to significant cell death, suggesting that the nanoparticles have large potential as photothermal agents.

2D Materials and ApplicationsNanoplatforms for cancer theranosticsAdvanced Photocatalysis TechniquesPhotothermal therapyExfoliation jointSonicationBlack phosphorusQuantum dotPhotothermal effectNanoparticleMaterials scienceNanotechnologyChemical engineering

Funding

  • National Natural Science Foundation of China
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