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Gold and Silica-Coated Gold Nanoparticles as Thermographic Labels for DNA Detection

机译:金和二氧化硅包被的金纳米颗粒作为DNA检测的热敏标签

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摘要

The infrared emissivity of Au and silica-coated Au nanoparticles (Au NPs) deposited on indium tin oxide substrates was investigated. NPs were irradiated with laser light at a frequency close to the Au plasmon resonance band, and the blackbody radiation emitted as a result was monitored with an IR camera equipped with an InAs array detector. The differences in temperature before and after laser irradiation were recorded (T-jumps) and were found to be directly proportional to the number of particles present on the slide and to the laser power used in the experiment. Coating Au NPs with silica increased the measured T-jumps 2-5 times, depending on the thickness of the silica shell. This was in agreement with the observation that silica has a much higher IR emissivity than Au. Both Au and silica-coated Au NPs were then tested as labels for thermographic DNA detection. Target DNA concentrations as low as 100 pM were recorded when Au NPs were used as labels and as low as 10 pM when silica-coated Au NPs were used.
机译:研究了沉积在铟锡氧化物基底上的Au和二氧化硅包覆的Au纳米粒子(Au NPs)的红外发射率。用接近Au等离激元共振带的频率的激光照射NP,并且用配备有InAs阵列检测器的IR照相机监测结果发射的黑体辐射。记录激光辐照前后的温度差异(T跃点),发现其与载玻片上存在的颗粒数量以及实验中使用的激光功率成正比。用二氧化硅包被Au NP可以使测得的T跃变增加2-5倍,具体取决于二氧化硅外壳的厚度。这与二氧化硅具有比Au高得多的IR发射率的观察结果一致。然后测试Au和二氧化硅包被的Au NP作为热成像DNA检测的标记。当使用金纳米颗粒作为标记时,目标DNA浓度低至100 pM,而当使用二氧化硅包被的金纳米颗粒时,低至10 pM。

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