Nanocomposites of Au Nanorods and Core-Shell NaGdF4:Yb3+,Er3+@NaYF4 Upconversion Nanoparticles for Temperature Sensing

被引:20
作者
Hu, Junshan [1 ]
Wang, Ruonan [1 ]
Fan, Rangrang [2 ,3 ]
Wang, Fengyi [4 ]
Xiong, Huiyu [5 ]
Huang, Zhenghu [1 ]
Liu, Lixin [1 ]
Fu, Hao [1 ]
机构
[1] Univ Elect Sci & Technol China, Sch Phys, Chengdu 610054, Peoples R China
[2] Sichuan Univ, State Key Lab Biotherapy, Dept Neurosurg, West China Hosp,Collaborat Innovat Ctr Biotherapy, Chengdu 610041, Peoples R China
[3] Sichuan Univ, Canc Ctr, Dept Neurosurg, West China Hosp,Collaborat Innovat Ctr Biotherapy, Chengdu 610041, Peoples R China
[4] Natl Univ Singapore, Dept Chem, Singapore 117543, Singapore
[5] Univ Elect Sci & Technol China, Glasgow Coll, Chengdu 611731, Peoples R China
来源
ACS APPLIED NANO MATERIALS | 2020年 / 3卷 / 10期
基金
中国国家自然科学基金;
关键词
upconversion nanoparticles; core-shell; Au NRs; sensor; optical coupling; CONJUGATED POLYELECTROLYTE; PHOTOTHERMAL CONVERSION; DRUG-DELIVERY; LUMINESCENCE; ENHANCEMENT; THERAPY; SIZE; NANOCRYSTALS; NANOSHEETS; ABLATION;
D O I
10.1021/acsanm.0c01686
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Here, we report a nanocomposite with excellent photothermal performance promising for photothermal treatment. This nanocomposite is prepared by linking Au nanorods (NRs) to NaGdF4:18% Yb3+, 2%Er3+@NaYF4 core-shell upconversion nanoparticles (UCNPs) with bridging of polyethylene glycol molecules. Solutions with the composite nanoparticles can be heated by the irradiation of a near-infrared 980 nm laser, and the photothermal effect in terms of temperature rise can reach 21.3 degrees C with excitation power density as low as 0.090 W/cm(2). This highly effective photothermal performance is attributed to coincidence of the emission band of the UCNPs and the absorption band of the Au NRs, which facilitates the light-to-heat conversion. The structure of the composite and the concentration of the Au NRs in the solution are also optimized through the emission intensity, green-to-red intensity ratio, and the photothermal effect in this work. Compared with previous research studies, the strength in the lower irradiation power density makes the nanocomposite promising for further photothermal treatment and temperature sensing.
引用
收藏
页码:9679 / 9685
页数:7
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