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白光 LED 作为分光光度法的广谱光源:在二极管阵列分光光度检测器中可见光谱范围内的演示。

White LEDs as broad spectrum light sources for spectrophotometry: demonstration in the visible spectrum range in a diode-array spectrophotometric detector.

机构信息

Irish Separation Science Cluster, National Centre for Sensor Research and School of Chemical Sciences, Dublin City University, Dublin, Ireland.

出版信息

Electrophoresis. 2010 Nov;31(22):3737-44. doi: 10.1002/elps.201000341.

DOI:10.1002/elps.201000341
PMID:21077241
Abstract

Although traditional lamps, such as deuterium lamps, are suitable for bench-top instrumentation, their compatibility with the requirements of modern miniaturized instrumentation is limited. This study investigates the option of utilizing solid-state light source technology, namely white LEDs, as a broad band spectrum source for spectrophotometry. Several white light LEDs of both RGB and white phosphorus have been characterized in terms of their emission spectra and energy output and a white phosphorus Luxeon LED was then chosen for demonstration as a light source for visible-spectrum spectrophotometry conducted in CE. The Luxeon LED was fixed onto the base of a dismounted deuterium (D(2) ) lamp so that the light-emitting spot was geometrically positioned exactly where the light-emitting spot of the original D(2) lamp is placed. In this manner, the detector of a commercial CE instrument equipped with a DAD was not modified in any way. As the detector hardware and electronics remained the same, the change of the deuterium lamp for the Luxeon white LED allowed a direct comparison of their performances. Several anionic dyes as model analytes with absorption maxima between 450 and 600 nm were separated by CE in an electrolyte of 0.01 mol/L sodium tetraborate. The absorbance baseline noise as the key parameter was 5 × lower for the white LED lamp, showing clearly superior performance to the deuterium lamp in the available, i.e. visible part of the spectrum.

摘要

虽然传统的光源,如氘灯,适用于台式仪器,但它们与现代微型化仪器的要求的兼容性有限。本研究探讨了利用固态光源技术,即白色发光二极管(LED)作为分光光度法的宽带光谱源的可能性。对几种 RGB 和白磷的白色 LED 的发射光谱和能量输出进行了表征,然后选择白磷 Luxeon LED 作为在 CE 中进行可见光谱分光光度法的光源进行演示。将 Luxeon LED 固定在拆卸的氘(D2)灯的底座上,使得发光点在几何上精确位于原始 D2 灯的发光点的位置。通过这种方式,配备 DAD 的商用 CE 仪器的检测器没有以任何方式进行修改。由于检测器硬件和电子设备保持不变,用 Luxeon 白色 LED 代替氘灯可以直接比较它们的性能。几种阴离子染料作为模型分析物,其吸收最大值在 450nm 到 600nm 之间,通过 CE 在 0.01mol/L 四硼酸钠电解质中进行分离。作为关键参数的吸光度基线噪声对于白色 LED 灯降低了 5 倍,在可用的、即可见光谱部分,明显优于氘灯。

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