促进强吸收流体的吸收光谱分析:高通量方法

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Fabian Eller,  and , Eva M. Herzig*, 
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引用次数: 0

摘要

测量强吸收溶液的吸收光谱通常只能通过稀释溶液来实现。然而,吸收光谱会受到浓度相关性相互作用的严重影响,因此稀释会导致误导性结果。为了能够对浓缩溶液进行可靠的吸收测量,我们在本研究中介绍了一种简单且高度自动化的方法--稀薄流体膜光谱法(TFFS)。我们介绍了适用于多种不同应用的三种 TFFS 测量模式,并用在专用低光路长度比色皿中获得的对照数据验证了 TFFS 测量结果。此外,我们还比较了不同测量模式在广泛浓度范围内的适用性,并演示了使用光谱分析机器人实现自动化的可能性。除了这种用于高效和高通量实验室工作的自动化方法外,我们还展示了将在线装置直接集成到生产系统中的可能性,该装置可集成到各种管道系统中。TFFS 方法并不局限于材料科学领域的样品,还可应用于蛋白质、食品、药品、农业和法医等广泛的研究和工业领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Facilitating Absorption Spectroscopy of Strongly Absorbing Fluids: A High-Throughput Approach

Facilitating Absorption Spectroscopy of Strongly Absorbing Fluids: A High-Throughput Approach

Measuring absorption spectra of strongly absorbing solutions is usually only possible by diluting the solution. However, the absorption spectra can be heavily influenced by concentration-dependent interactions, so dilution leads to misleading results. To enable reliable absorption measurements of concentrated solutions, we introduce in this work thinning fluid film spectroscopy (TFFS), a simple and highly automatable method. We present three exemplary measurement modes of TFFS suitable for many different applications and validate the TFFS measurements with control data obtained in specialized, low optical path length cuvettes. Additionally, we compare the suitability of the different measurement modes over a broad concentration range and demonstrate the automation possibilities with a spectroscopy robot. Beyond this automated approach for highly efficient and high-throughput lab work, we also show the possibility of direct integration into production systems with an in-line setup, which can be incorporated into a variety of pipe systems. The TFFS method is not limited to samples from material science but can be transferred to a broad variety of research and industry fields, including proteins, food, and pharmaceuticals or also agriculture and forensics.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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