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An insight into microscopy and analytical techniques for morphological, structural, chemical, and thermal characterization of cellulose

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Cellulose obtained from plants is a bio‐polysaccharide and the most abundant organic polymer on earth that has immense household and industrial applications. Hence, the characterization of cellulose is important for… Click to show full abstract

Cellulose obtained from plants is a bio‐polysaccharide and the most abundant organic polymer on earth that has immense household and industrial applications. Hence, the characterization of cellulose is important for determining its appropriate applications. In this article, we review the characterization of cellulose morphology, surface topography using microscopic techniques including optical microscopy, transmission electron microscopy, scanning electron microscopy, and atomic force microscopy. Other physicochemical characteristics like crystallinity, chemical composition, and thermal properties are studied using techniques including X‐ray diffraction, Fourier transform infrared, Raman spectroscopy, nuclear magnetic resonance, differential scanning calorimetry, and thermogravimetric analysis. This review may contribute to the development of using cellulose as a low‐cost raw material with anticipated physicochemical properties.

Keywords: insight microscopy; characterization cellulose; microscopy; chemical

Journal Title: Microscopy Research and Technique
Year Published: 2022

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