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Research Article Open access CC BY 4.0

Understanding X-ray Crystallographic Diffraction of L-menthol by Rietveld Refinement: Insight into Structural Symmetry and Lattice Volume

S. M. Monjurul Ahashan, Nafis Rahman Sayeem, Md. Ashikur Rahman Meada, Zannatun Naim, Kamrun Nahar, Md. Hasnain Mustak, Fahim Khandokar Anik, Pulak Ghosh, Fariha Zannat, Md. Ashraful Alam

Asian Journal of Applied Chemistry Research · pp. 69–82 · Published 9 Aug 2025

10.9734/ajacr/2025/v16i3343

Abstract

Highlighted the recent advances in the mechanism of crystallographic bibliography of L-Menthol crystals and to provide an overview of its application explored as well as its structural symmetry and lattice volume performance. The crystallographic analysis was explored by the X-ray diffraction (XRD) technique, and the surface morphology of L-Menthol crystals was depicted by polarized microscopic examination. The materials are composed of 100 % L-Menthol crystals and calculated lattice parameters a=b= 21.29Å, c= 6.038Å and angles α=β= 90° and γ= 120° for the hexagonal crystal system by Rietveld refinement. The crystallite sizes were calculated in Williamson-Hall plot 55.2 nm, Monshi-Scherrer model 58.3 nm, Size-strain plot model 66.1 nm, and Halder-Wagner model 62.5 nm; and the Scherrer model expressed at 63.03 nm. The calculated crystal strain is 0.256 %. The lower crystal strain suggests high stability of the phase in L-Menthol and mechanical properties. Lowering lattice volume 2371.126 ų in a structure typically refers to reducing the amount of material used to create a lattice structure of L-Menthol, often while maintaining or improving desired mechanical properties. The crystals exhibit a well-defined, hexagonal morphology with smooth, flat surfaces and sharp edges, which is characteristic of hexagonal L-Menthol crystals revealed by microscopic examination.

X-ray crystallography rietveld refinement L-menthol structural symmetry lattice volume

Cited by 2

Preferred crystallographic design of monoclinic tenorite (CuO) nanocrystals by powder X-ray line diffraction

Md. Ashraful Alam, Shanawaz Ahmed, Debasish Sarkar · Chemistry of Inorganic Materials · 2025

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