In this work, regenerated cellulose films were prepared with an iced dissolution method, while the physical morphologies and crystal types of the products were systematically characterized with scanning electron microscope (SEM), Fourier transform infrared(FTIR), while X-Ray Diffraction (XRD). The results demonstrate that the as-prepared continuous and uniform films are indeed cellulose Ⅱ, whose morphology and crystal type are significantly different from those of the degreased cotton. Moreover, Terahertz time domain system (THz-TDS) and FTIR were employed to measure the THz spectra of the regenerated cellulose films. Accordingly, the THz characteristic peaks for the regenerated cellulose films are experimentally identified for the first time. In addition, the increase of the THz transmittance with the decrease of the wavenumber is attributed to the existence of amorphous components in the regenerated cellulose films. Although the shapes of Far-IR spectra in the range of 100~700 cm-1 are similar, the absorption peaks of the regenerated cellulose films move to lower wavenumbers (blue shift) compared with those of the degreased cotton. Based on this, we developed a new approach to distinguish the allomorphism of cellulose Ⅱ and cellulose Iβ by Far-IR. Particularly, geometry optimization and IR calculation for the crystal structure of cellulose Ⅱ have been successfully processed by Density Functional Theory (DFT) using periodic boundary condition via CASTEP package. The calculated absorption peak positions are in good agreement with those experimentally measured. Consequently, the THz characteristic peaks of the regenerated cellulose films have been systematically and successfully assigned. Theoretical calculations reveal that the peaks at 42 and 54 cm-1 are assigned to the lattice vibration modes coupled with translational mode and rotational mode, respectively. Moreover, the absorption peaks in the range of 68~238 cm-1 are related with the torsion vibration of —CH2OH group and deformation vibration of C—H bond and O—H bond, while those in the range of 351~583 cm-1 are assigned to the skeletal vibration of C—O—C bond and pyranoid ring, and those at 611 and 670 cm-1 are originated from the out-of-plane bending vibration of O—H bond. Each absorption peak is involved in more than single vibration mode. The THz spectra presented in this work, together with the theoretical simulations, indicate that the THz responses of regenerated cellulose are closely associated with both its chemical constituents and molecular structure. These results will be helpful not only for better understanding the relations between the molecular structure of the regenerated cellulose and its THz spectrum, but also for providing valuable information for future studies on the physical mechanisms of THz responses of other partially-crystalline polymers and organic biological macromolecules.
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Clin Appl Thromb Hemost
December 2024
Department of Orthopedics, Peking University Third Hospital, Beijing, China.
This retrospective study evaluated the safety and efficacy of SURGICEL® Powder-Absorbable Hemostatic Powder (SP) made from oxidized regenerated cellulose (ORC) in total knee arthroplasty (TKA). Ninety-one patients who underwent TKA at Peking University Third Hospital between January 2024 and July 2024 were retrospectively analyzed. Hemostatic effectiveness was evaluated by comparing perioperative blood loss, hemoglobin (Hb) levels, hematocrit (HCT), and transfusion rates.
View Article and Find Full Text PDFACS Appl Polym Mater
December 2024
Department of Aeronautics, Imperial College London, South Kensington Campus, SW7 2AZ London, United Kingdom.
The mechanical performance of mixed plastic waste from shredder residue is hindered by brittleness and catastrophic failure, limiting its potential applications. In this study, the mechanical properties of mixed plastic is enhanced by reinforcement with rayon fibers through a wet powder impregnation process to leverage the fiber's ductility and entanglement. However, mixed plastic remains poorly dispersed in water during the composite manufacturing, resulting in poorly consolidated composite, which further deteriorates the mechanical properties of mixed plastic from 1.
View Article and Find Full Text PDFJ Thorac Dis
November 2024
Department of General Thoracic Surgery, Chiba University Graduate School of Medicine, Chiba, Japan.
Background: According to a large-scale clinical trial in Japan, segmentectomy for small peripheral non-small cell lung cancer has an advantage over lobectomy in terms of overall survival, while it could also increase the incidence of local recurrence. In ipsilateral reoperations, intrathoracic adhesions from a previous surgery increase the risk of lung injury and bleeding, which may result in intraoperative and postoperative complications. The ability of oxidized regenerated cellulose (ORC) sheets to prevent postoperative adhesions has been demonstrated in the abdomen, and the same effect is expected in the thoracic region.
View Article and Find Full Text PDFCarbohydr Polym
February 2025
Department of Medical Nanotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran; Clinical Research Development Unite of Tabriz Valiasr Hospital, Tabriz University of Medical Sciences, Tabriz, Iran. Electronic address:
Uncontrollable hemorrhage leads to high mortality rates; thus, engineering effective hemostatic materials is crucial for rapid hemostasis. Developing hemostatic materials for rapid coagulation, antibacterial activity, and easy removal without compromising clot integrity remains a challenge. Herein, a multifunctional hemostatic gauze was engineered by modifying regenerated cellulose textile through multiple sequential chemical reactions, including carboxymethylation, crosslinking with CaCl/ZnCl solution, oxidation, and polymerization with dopamine.
View Article and Find Full Text PDFMaterials (Basel)
November 2024
School of Engineering, The University of Waikato, Hamilton 3216, New Zealand.
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