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首页> 外文期刊>Analytical chemistry >Novel Gas Chromatographic Detector Utilizing the Localized Surface Plasmon Resonance of a Gold Nanoparticle Monolayer inside a Glass Capillary
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Novel Gas Chromatographic Detector Utilizing the Localized Surface Plasmon Resonance of a Gold Nanoparticle Monolayer inside a Glass Capillary

机译:利用玻璃毛细管内部金纳米粒子单层的局部表面等离子体共振的新型气相色谱检测器

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This paper presents the design, assembly, and evaluation of a novel gas chromatographic detector intended to measure the absorbance of the localized surface plasmon resonance (LSPR) of a gold nanoparticle monolayer in response to eluted samples from a capillary column. Gold nanoparticles were chemically immobilized on the inner wall of a glass capillary (i.d. 0.8 mm, length = 5-15 cm). The eluted samples flowed through the glass capillary and were adsorbed onto a gold nanoparticle surface, which resulted in changes in the LSPR absorbance. The LSPR probing light source used a green light-emitting diode (LED; λ_(center) = 520 nm), and the light traveled through the glass wall of the capillary with multiple total reflections. The changes in the light intensity were measured by a photodiode at the rear of the glass capillary. The sensitivity of this detector can be improved by using a longer spiral glass capillary. The detector is more sensitive when operated at a lower temperature and at a slower carrier velocity. The calibration lines of 8 preliminary test compounds were all linear (R~2 > 0.99). The detection limits (3σ) ranged from 22 ng (n-butanol) to 174 ng (2-pentanone) depending on the volatility of the chemicals and the affinity to the citrate lignads attached to the gold nanoparticle surface. This detector consumed a very low amount of energy and could be operated with an air carrier gas, which makes this detector a promising option for portable GC or μGC.
机译:本文介绍了一种新型气相色谱检测器的设计,组装和评估,该检测器用于测量金纳米颗粒单层的局部表面等离振子共振(LSPR)的吸光度,以响应毛细管柱中的洗脱样品。金纳米颗粒化学固定在玻璃毛细管的内壁上(直径0.8毫米,长度= 5-15厘米)。洗脱的样品流过玻璃毛细管,并吸附到金纳米颗粒表面,这导致LSPR吸光度发生变化。 LSPR探测光源使用绿色发光二极管(LED;λ_(中心)= 520 nm),并且光通过毛细管的玻璃壁并发生多次全反射。通过玻璃毛细管后部的光电二极管测量光强度的变化。通过使用更长的螺旋玻璃毛细管可以提高此检测器的灵敏度。在较低的温度和较低的载流子速度下运行时,检测器更加灵敏。 8种初步测试化合物的校正线均为线性(R〜2> 0.99)。检测限(3σ)范围从22 ng(正丁醇)到174 ng(2-戊酮),这取决于化学物质的挥发性和与附着在金纳米颗粒表面的柠檬酸盐直链的亲和力。该检测器消耗的能量非常少,可以通过空气载气运行,这使该检测器成为便携式GC或μGC的有希望的选择。

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