首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Short-wavelength infrared self-assessed photothermal agents based on Ho,Tm:KLu(WO4)(2) nanocrystals operating in the third biological window (1.45-1.96 mu m wavelength range)
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Short-wavelength infrared self-assessed photothermal agents based on Ho,Tm:KLu(WO4)(2) nanocrystals operating in the third biological window (1.45-1.96 mu m wavelength range)

机译:基于HO,TM的短波红外自评到光热试剂:Klu(WO4)(2)纳米晶体在第三生物窗口(1.45-1.96 mu m波长范围)中操作

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摘要

KLu1-x-yHoxTmy(WO4)(2) nanocrystals with different atomic concentrations (x = 0.01, 0.03, 0.05, 0.075, 0.1, 0.15 and y = 0.05, 0.1, 0.2) were synthesized via the modified sol-gel Pechini method, using ethylenediaminetetraacetic acid as the chelating agent, and polyethyleneglycol as the esterification agent. Different doping levels were implemented with the goal to determine the optimal ratio for maximizing the intensity of their optical emission in the short-wavelength infrared (SWIR) region, their thermal sensitivity as luminescent thermometers and the photothermal conversion efficiency to act as photothermal agents. The obtained KLu1-x-yHoxTmy(WO4)(2) nanocrystals exhibit a monoclinic structure and an irregular shape, with a size of around 150 nm. The photoluminescence spectrum in the SWIR region of the obtained nanocrystals, excited at 808 nm, shows three main bands attributed to the electronic transitions: H-3(4) -> F-3(4) (1.45 mu m) and F-3(4) -> H-3(6) (1.8 mu m) of Tm3+ and I-5(7) -> I-5(8) (1.96 mu m) of Ho3+. The temperature dependency of the three emission bands was recorded in the physiological range of temperatures from 293 K to 333 K, displaying a relative thermal sensitivity (S-rel) of 0.90% K-1 at 293 K for the doping level of 1 at% Ho3+ and 10 at% Tm3+, representing the highest reported up to now in the SWIR region. The photothermal conversion efficiency (eta) of the KLu1-x-yHoxTmy(WO4)(2) nanocrystals is 40 +/- 2% for the same doping levels, being competitive with other photothermal agents reported before, like metallic and semiconductor nanocrystals. The simultaneous ability of these nanocrystals to combine photothermal conversion efficiency and thermal sensing in the SWIR is demonstrated through an ex vivo experiment.
机译:通过改性的溶胶 - 凝胶Pechini方法合成了具有不同原子浓度(x = 0.01,0.05,0.075,0.1,0.05,0.075,0.1,0.05,0.075,0.1,0.05,0.075,0.1,0.2)的Klu1-X-Yhoxtmy(2)纳米晶体,用乙二胺四乙酸作为螯合剂,以及作为酯化剂的聚乙二醇。利用目的实现不同的掺杂水平,以确定用于最大化其短波革红地(SWIR)区域中的光发射强度,它们作为发光温度计的热敏度和光热转化效率作为光热试剂的光热转化效率的最佳比率。所得Kll1-X-Yhoxtmy(WO4)(2)纳米晶体表现出单斜斜肌结构和不规则形状,尺寸约为150nm。在808nm处激发所得纳米晶体的SWIR区域中的光致发光光谱,显示出归因于电子转变的三个主带:H-3(4) - > F-3(4)(1.45μm)和F-3 (4) - > H-3(6)(1.8μm)Tm3 +和I-5(7) - > I-5(8)(1.96μm)的HO3 +。在从293k至333k的温度范围的温度范围内记录三个发射带的温度依赖性,在293k下显示0.90%K-1的相对热灵敏度(S-Rel),以掺杂为1at% HO3 +和10%在%TM3 +,代表SWIR地区的最高报告。对于相同的掺杂水平,Klu1-X-Yhoxtmy(WO4)(2)纳米晶体(2)纳米晶体的光热转换效率(ETA)为40 +/- 2%,与以前报道的其他光热试剂具有竞争力,如金属和半导体纳米晶体。通过前体内实验证明了这些纳米晶体结合光热转换效率和热敏的同时能力。

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