Multiple Perturbation Two-Dimensional Correlation Analysis of Cellulose by Attenuated Total Reflection Infrared Spectroscopy

Author:

Shinzawa Hideyuki1,Morita Shin-Ich1,Awa Kimie1,Okada Mariko1,Noda Isao1,Ozaki Yukihiro1,Sato Hidetoshi1

Affiliation:

1. Optical Biopsy Development Research Unit, RIKEN, Saitama 351-0198, Japan (H.S., S.M., H.S.); Dainippon Sumitomo Pharma Co., Ltd. Osaka 554-0022, Japan (K.A.); Department of Chemistry and Research Center for Near Infrared Spectroscopy, School of Science and Technology, Kwansei-Gakuin University, Hyogo 669-1337, Japan (M.O., Y.O.); and The Procter & Gamble Company, 8611 Beckett Road, West Chester, Ohio 45069 (I.N.)

Abstract

An extension of the two-dimensional (2D) correlation analysis scheme for multi-dimensional perturbation is described. A simple computational form is provided to construct synchronous correlation and disrelation maps for the analysis of microscopic imaging data based on two independent perturbation variables. Sets of time-dependent attenuated total reflection infrared (ATR-IR) spectra of water and cellulose mixtures were collected during the evaporation of water from finely ground cellulose. The system exhibits complex behaviors in response to two independent perturbations, i.e., evaporation time and grinding time. Multiple perturbation 2D analysis reveals a specific difference in the rate of evaporation of water molecules when accompanied by crystallinity changes of cellulose. It identifies subtle differences in the volatility of water, which is related to the crystalline structure of cellulose.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

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