We study the mechanical response of cellulose and β-amyloid microfibrils to three types of deformation: tensile, indentational, and shear. The cellulose microfibrils correspond to the allomorphs Iα or Iβ whereas the β-amyloid microfibrils correspond to the polymorphs of either two- or three-fold symmetry. This response can be characterized by three elastic moduli, namely, Y, Y, and S. We use a structure-based coarse-grained model to analyze the deformations in a unified manner. We find that each of the moduli is almost the same for the two allomorphs of cellulose but Y is about 20 times larger than Y (140 GPa vs. 7 GPa), indicating the existence of significant anisotropy. For cellulose we note that the anisotropy results from the involvement of covalent bonds in stretching. For β-amyloid, the sense of anisotropy is opposite to that of cellulose. In the three-fold symmetry case, Y is about half of Y (3 vs. 7) whereas for two-fold symmetry the anisotropy is much larger (1.6 vs. 21 GPa). The S modulus is derived to be 1.2 GPa for three-fold symmetry and one half of it for the other symmetry and 3.0 GPa for cellulose. The values of the moduli reflect deformations in the hydrogen-bond network. Unlike in our theoretical approach, no experiment can measure all three elastic moduli with the same apparatus. However, our theoretical results are consistent with various measured values: typical Y for cellulose Iβ ranges from 133 to 155 GPa, Y from 2 to 25 GPa, and S from 1.8 to 3.8 GPa. For β-amyloid, the experimental values of S and Y are about 0.3 GPa and 3.3 GPa respectively, while the value of Y has not been reported.
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ACS Appl Mater Interfaces
January 2025
Jiangxi Province Key Laboratory of Organic Functional Molecules, Institute of Organic Chemistry, Jiangxi Science and Technology Normal University, Nanchang 330013, China.
Improving the thermoelectric performance and service stability is essential for the effective use of cuprous selenide (CuSe). In this study, hexagonal boron nitride (h-BN) was incorporated into nano-CuSe, with the goal of enhancing thermoelectric performance and service stability. It was found that CuSe-0.
View Article and Find Full Text PDFSci Rep
January 2025
ISQI, Faculty of Physics, Adam Mickiewicz University in Poznań, Poznań, Poland.
High-resolution Brillouin spectroscopy was employed to investigate the anisotropy in surface wave velocities within a bulk single crystal of SbTe, a well-known layered van der Waals material. By leveraging the bulk elastic constants derived from various simulation methods, we were able to theoretically calculate the distribution of surface acoustic phonon velocities on the cleavage plane of the material. Upon analyzing multiple simulation results, it became evident that the most significant discrepancies arose in the calculations of the elastic constant c, with values ranging from 48 to 98 GPa.
View Article and Find Full Text PDFKorean J Intern Med
January 2025
Division of Rheumatology, Department of Internal Medicine, Yonsei University College of Medicine, Seoul, Korea.
Background/aims: This study applied the 2022 American College of Rheumatology/European Alliance of Associations for Rheumatology (ACR/EULAR) criteria for antineutrophil cytoplasmic antibody (ANCA)-associated vasculitis (AAV) to patients with Behçet's disease (BD) to investigate the proportion and clinical implications of the reclassification to the overlap syndrome of BD and AAV (OS-BD-AAV).
Methods: We included 280 BD patients presenting with ANCA positivity but without medical conditions mimicking AAV at diagnosis. Demographic data, items from the 2014 revised International Criteria for BD and 2022 American College of Rheumatology and European Alliance of Associations for Rheumatology criteria for AAV, ANCA positivity, and laboratory results were recorded as clinical data at diagnosis.
PLoS One
January 2025
Campus Office of Undergraduate Research Initiatives, The University of Texas at El Paso, El Paso, Texas, United States of America.
The student development initiatives of the BUILDing SCHOLARS Center at The University of Texas at El Paso comprise a program intended to prepare undergraduate students to enter and succeed in advanced graduate and professional biomedical degree programs, ultimately contributing to the diversity of the biomedical research workforce. The program adopted the Johnson/Bozemann Asset Bundles model, which recommends addressing five areas necessary to support minority students as they prepare for and continue towards scientific careers: a) educational endowments, b) science socialization, c) network development, d) family expectations and e) material resources. Through a variety of activities, which included a minimum of two years of research training, all five asset bundles were integrated into the program.
View Article and Find Full Text PDFJ Phys Condens Matter
January 2025
Physics, Xiamen University, Wulijidian Building 358, Haiyun campus, Xiamen University, Xiamen, Fujian, 361005, CHINA.
Newly-synthesized structure T (sT) hydrate show promising practical applications in hydrogen storage and transport, yet the properties remain poorly understood. Here, we develop a machine learning potential (MLP) of sT hydrogen hydrate derived from quantum-mechanical molecular dynamics (MD) simulations. Using this MLP forcefield, the structural, hydrogen diffusion, mechanical and thermal properties of sT hydrogen hydrate are extensively explored.
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