光热治疗
材料科学
纳米技术
表面等离子共振
纳米颗粒
生物相容性
光热效应
聚合物
纳米结构
化学工程
复合材料
工程类
冶金
作者
Jiabin Cui,Rui Jiang,Suying Xu,Gaofei Hu,Leyu Wang
出处
期刊:Small
[Wiley]
日期:2015-05-15
卷期号:11 (33): 4183-4190
被引量:88
标识
DOI:10.1002/smll.201500845
摘要
According to the simulation, the self‐assembly of Cu 7 S 4 nanocrystals would enhance the photothermal conversion efficiency (PCE) because of the localized surface plasmon resonance effects, which is highly desirable for photothermal therapy (PTT). A new strategy to synthesize Cu 7 S 4 nanosuperlattices with greatly enhanced PCE up to 65.7% under irradiation of 808 nm near infrared light is reported here. By tuning the surface properties of Cu 7 S 4 nanocrystals during the synthesis via thermolysis of a new single precursor, dispersed nanoparticles (NPs), rod‐like alignments, and nanosuperlattices are obtained, respectively. To explore their PTT applications, these hydrophobic nanostructures are transferred into water by coating with home‐made amphiphilic polymer while maintaining their original structures. Under identical conditions, the PCE are 48.62% and 56.32% for dispersed NPs and rod‐like alignments, respectively. As expected, when the nanoparticles are self‐assembled into nanosuperlattices, the PCE is greatly enhanced up to 65.7%. This strong PCE, along with their excellent photothermal stability and good biocompatibility, renders these nanosuperlattices good candidates as PTT agents. In vitro photothermal ablation performances have undoubtedly proved the excellent PCE of our Cu 7 S 4 nanosuperlattices. This research offers a versatile and effective solution to get PTT agents with high photothermal efficiency.
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