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Optical design of a new photodiode-array absorbance detector for high-performance liquid chromatography

机译:新型用于高效液相色谱的光电二极管阵列吸光度检测器的光学设计

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Abstract: A new HPLC absorbance detector, the Waters Model 996 is described. It covers the spectral range 190 to 800 nm with a nominal resolution of 1.2 nm, equivalent to one diode element. It is based on a deuterium arc source, a 512 element, self-scanned, photodiode array detector and a flat-field, aberration-corrected, concave holographic grating. A design approach is described which establishes the best cell geometry to minimize the concentration limit of detection through fully exploiting the performance potential of the key components. Sensitivity to flow stream artifacts, such as refractive index changes during gradient elution and pump- induced compositional ripple or thermal pulsations, are minimized in the optical design through the use of a 'reversed taper beam'. Source output is stabilized using a separate photodetector. After outlining the original objectives and the restrictions which they place on the design, we describe the optical system. Next we explain the logic behind the design, and end with representative performance data.!2
机译:摘要:描述了一种新型的HPLC吸光度检测器,Waters 996型。它覆盖了190至800 nm的光谱范围,标称分辨率为1.2 nm,相当于一个二极管元件。它基于氘弧源,512元素,自扫描光电二极管阵列检测器和平场,像差校正的凹面全息光栅。描述了一种设计方法,该方法通过充分利用关键组件的性能潜力来建立最佳的细胞几何结构,以最小化检测的浓度极限。在光学设计中,通过使用“反向锥束”,可以最大程度地减小对气流伪影的敏感度,例如梯度洗脱期间的折射率变化以及泵浦诱导的成分波纹或热脉动。源输出使用单独的光电探测器稳定。在概述了原始目标及其对设计的限制后,我们将介绍光学系统。接下来,我们解释设计背后的逻辑,并以具有代表性的性能数据结尾!! 2

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