光热治疗
材料科学
纳米材料
生物相容性
纳米技术
吸收(声学)
纳米结构
复合材料
冶金
作者
Zhan Zhou,Xianwen Wang,Hui Zhang,Haoxin Huang,Lina Sun,Lu Ma,Yonghua Du,Chengjie Pei,Qinghua Zhang,Hai Li,Lu‐Fang Ma,Lin Gu,Zhuang Liu,Liang Cheng,Chaoliang Tan
出处
期刊:Small
[Wiley]
日期:2021-02-16
卷期号:17 (12)
被引量:141
标识
DOI:10.1002/smll.202007486
摘要
Abstract Layered metal oxides including MoO 3 and WO 3 have been widely explored for biological applications owing to their excellent biocompatibility, low toxicity, and easy preparation. However, they normally exhibit weak or negligible near‐infrared (NIR) absorption and thus are inefficient for photo‐induced biomedical applications. Herein, the structural engineering of layered MoO 3 and WO 3 nanostructures is first reported to activate their NIR‐II absorption for efficient photothermal cancer therapy in the NIR‐II window. White‐colored micrometre‐long MoO 3 nanobelts are transformed into blue‐colored short, thin, defective, interlayer gap‐expanded MoO 3− x nanobelts with a strong NIR‐II absorption via the simple lithium treatment. The blue MoO 3− x nanobelts exhibit a large extinction coefficient of 18.2 L g −1 cm −1 and high photothermal conversion efficiency of 46.9% at 1064 nm. After surface modification, the MoO 3− x nanobelts can be used as a robust nanoagent for photoacoustic imaging‐guided photothermal therapy to achieve efficient cancer cell ablation and tumor eradication under irradiation by a 1064 nm laser. Importantly, the biodegradable MoO 3− x nanobelts can be rapidly degraded and excreted from body. The study highlights that the structural engineering of layered metal oxides is a powerful strategy to tune their properties and thus boost their performances in given applications.
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