Jin Ying, Kotula Anthony P, Hight Walker Angela R, Migler Kalman B, Lee Young Jong
Biosystems & Biomaterials Division, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.
Materials Science & Engineering Division, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.
J Raman Spectrosc. 2016 Nov;47(11):1375-1384. doi: 10.1002/jrs.4967. Epub 2016 Jun 28.
We use moving-window two-dimensional correlation spectroscopy (MW-2DCOS) for phase-specific Raman analysis of the -alkane (CH) during melting from the crystalline solid phase to the intermediate rotator phase and to the amorphous molten phase. In MW-2DCOS, individual peak-to-peak correlation analysis within a small subset of spectra provides both temperature-resolved and spectrally disentangled Raman assignments conducive to understanding phase-specific molecular interactions and chain configurations. We demonstrate that autocorrelation MW-2DCOS can determine the phase transition temperatures with a higher resolving power than commonly-used analysis methods including individual peak intensity analysis or principal component analysis. Besides the enhanced temperature resolving power, we demonstrate that asynchronous 2DCOS near the orthorhombic-to-rotator transition temperature can spectrally resolve the two overlapping peaks embedded in the Raman CH twisting band in the orthorhombic phase, which had been only predicted but not observed due to thermal broadening near the melting temperature.
我们使用移动窗口二维相关光谱法(MW-2DCOS)对正构烷烃(CH)从结晶固相到中间旋转相再到非晶态熔融相的熔化过程进行相特异性拉曼分析。在MW-2DCOS中,一小部分光谱内的单个峰峰相关分析提供了温度分辨和光谱解缠的拉曼归属,有助于理解相特异性分子相互作用和链构型。我们证明自相关MW-2DCOS能够以比常用分析方法(包括单个峰强度分析或主成分分析)更高的分辨能力确定相变温度。除了增强的温度分辨能力外,我们还证明在正交晶系到旋转相转变温度附近的异步二维相关光谱能够在光谱上分辨正交晶系相中拉曼CH扭曲带中嵌入的两个重叠峰,由于接近熔化温度时的热展宽,这两个峰此前仅被预测但未被观测到。