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二维红外光谱中消除散射,免受探测器伪影影响。

Scattering Elimination in 2D IR Immune from Detector Artifacts.

作者信息

Casas Anneka Miller, Idris Nehal S, Wen Victor, Patterson Joseph P, Ge Nien-Hui

机构信息

Department of Chemistry, University of California, Irvine, California 92697-2025, United States.

出版信息

J Phys Chem B. 2024 Sep 12;128(36):8835-8845. doi: 10.1021/acs.jpcb.4c04220. Epub 2024 Aug 27.

Abstract

Highly scattering samples, such as polymer droplets or solid-state powders, are difficult to study via coherent two-dimensional infrared (2D IR) spectroscopy. Previously, researchers have employed (quasi-) phase cycling, local-oscillator chopping, and polarization control to reduce scattering, but the latter method poses a limit on polarization-dependent measurements. Here, we present a method for Scattering Elimination Immune from Detector Artifacts (SEIFDA) in pump-probe 2D IR experiments. Our method extends the negative probe delay method of removing scattering from pump-probe spectroscopy to 2D experiments. SEIFDA works well for all polarizations when combined with the optimized noise reduction scheme to remove additive and multiplicative noise. We demonstrate that our method can be employed with any polarization scheme and reliably lowers the scattering at parallel polarization to comparable levels to the conventional 8-frame phase cycling with probe chopping (8FPCPC) at perpendicular polarization. Our system can acquire artifact free spectra in parallel polarization when the signal intensity is as little as 5% of the intensity of the interference between the pump pulses scattered into the detector. It reduces the time required to characterize the scattering term by at least 50% over 8FPCPC. Through detailed analysis of detector nonlinearity, we show that the performance of 8FPCPC can be improved by incorporating nonlinear correction factors, but it is still worse than that of SEIFDA. Application of SEIFDA to study the encapsulation of Nile red in polymer droplets demonstrates that this method will be very useful for probing highly scattering systems.

摘要

诸如聚合物液滴或固态粉末等高散射样品,很难通过相干二维红外(2D IR)光谱进行研究。此前,研究人员采用了(准)相位循环、本地振荡器斩波和偏振控制来减少散射,但后一种方法对偏振相关测量存在限制。在此,我们提出了一种用于泵浦 - 探测二维红外实验中消除探测器伪影的散射消除方法(SEIFDA)。我们的方法将泵浦 - 探测光谱中消除散射的负探测延迟方法扩展到了二维实验。当与优化的降噪方案相结合以去除加性和乘性噪声时,SEIFDA在所有偏振情况下都能很好地工作。我们证明,我们的方法可与任何偏振方案一起使用,并能可靠地将平行偏振下的散射降低到与垂直偏振下传统的8帧相位循环与探测斩波(8FPCPC)相当的水平。当信号强度低至散射到探测器中的泵浦脉冲之间干涉强度的5%时,我们的系统能够在平行偏振下获取无伪影光谱。与8FPCPC相比,它将表征散射项所需的时间至少减少了50%。通过对探测器非线性的详细分析,我们表明通过纳入非线性校正因子可以提高8FPCPC的性能,但它仍然比SEIFDA的性能差。将SEIFDA应用于研究聚合物液滴中尼罗红的包封表明,该方法对于探测高散射系统将非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/418c/11403676/0a82ab5715dc/jp4c04220_0001.jpg

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