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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Size-Dependent Extinction Coefficients and Transition Energies of Near-Infrared β-Ag2Se Colloidal Quantum Dots
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Size-Dependent Extinction Coefficients and Transition Energies of Near-Infrared β-Ag2Se Colloidal Quantum Dots

机译:近红外β-Ag2Se胶体量子点的尺寸相关消光系数和跃迁能

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摘要

Our investigations of silver selenide colloidal quantum dots, emitting in the biologically important near-infrared region, demonstrate the size-dependence of their optical properties. Ag2Se nanocrystals were prepared in the orthorhombic phase with their average radius varying from 0.95 to 4.7 nm as observed by transmission electron microscopy. The high purity of the samples, established by energy-dispersive X-ray spectroscopy and X-ray diffraction, allowed for the accurate determination of the Ag2Se content of colloidal suspensions by a thermogravimetric method. The energy of the first observed transition is found to decrease asymptotically with colloidal quantum dot size, tending toward a value of 1.1 eV, a value significantly above the β-Ag2Se bulk bandgap. Furthermore, the molar extinction coefficient of this absorption is proportional to r_0~(27±0.2), where r0 is the cQD radius. At higher energies, the extinction coefficient eventually follows the classically predicted cubic power law with r0.
机译:我们对在生物学上重要的近红外区域发射的硒化银胶体量子点的研究证明了其光学性质的大小依赖性。通过正交电子显微镜观察,Ag2Se纳米晶体在正交相中制备,其平均半径在0.95至4.7 nm之间变化。通过能量色散X射线光谱法和X射线衍射建立的高纯度样品可以通过热重法准确测定胶体悬浮液中Ag2Se的含量。发现第一个观察到的跃迁的能量随着胶体量子点尺寸的增加而渐近减小,趋向于1.1 eV,该值明显高于β-Ag2Se体隙。此外,该吸收的摩尔消光系数与r_0〜(27±0.2)成正比,其中r0为cQD半径。在更高的能量下,消光系数最终遵循经典预测的三次幂定律,其中r0。

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