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Synergistic Bioinspired Interface and Segregated Graphene Oxide Networks Enabling Enhanced Mechanical Strength and Chemical Resistance in Natural Rubber Latex Composites
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作者 Xiao-Da Pan Yun-Kui Song +7 位作者 Chong-Zhi Sun Chao-Yang Yuan Zong-Min Zhu jia-ran wang Xian-Ze Yin Hong-Tao Liu Li Liu Long Zheng 《Chinese Journal of Polymer Science》 2026年第4期1186-1198,I0020,共14页
Natural rubber(NR)latex is a renewable colloidal dispersion used in medical gloves,coatings,and flexible products.It is known for its excellent elasticity and film-forming ability but is limited by insufficient mechan... Natural rubber(NR)latex is a renewable colloidal dispersion used in medical gloves,coatings,and flexible products.It is known for its excellent elasticity and film-forming ability but is limited by insufficient mechanical robustness and chemical resistance.Incorporating nanofillers,such as graphene oxide(GO),is an effective approach to enhance its performance;however,achieving strong interfacial compatibility between hydrophilic GO and the nonpolar rubber matrix remains challenging.To overcome this issue,a multifunctional interfacial design inspired by mussel adhesion chemistry was developed to construct a hierarchical and cohesive GO network within the NR latex matrix.A tannic acid-based modifier(TM)bearing catechol and thiol groups was synthesized and anchored onto latex particles via hydrogen bonding with surface proteins and phospholipids,enabling subsequentπ-πinteractions and hydrogen bonding with GO nanosheets.This guided the selective self-assembly of GO into a continuous segregated network along the latex particle boundaries.Hierarchical interface reinforcement was achieved through Eu^(3+)ligand coordination.The incorporation of GO and enhancement of interfacial interactions promoted strain-induced crystallization,resulting in increased crystallinity and improved load transfer.The resulting composite film containing 0.5 part per hundred rubber GO and the bioinspired interface exhibited a tensile strength that was 107.8%higher than that of the pure NR latex film,while maintaining an elongation at break of 915%.Tear strength increased by 118.5%,toughness reached 61.7 MJ/m~3,nitrogen permeability decreased by 20.1%,and antibacterial efficiency against both Escherichia coli and Staphylococcus aureus reached 99.9%.The films also exhibited enhanced resistance to organic solvents,acids,and alkalis.This study provides a green and scalable strategy for fabricating high-performance NR latex-based products suitable for medical,protective,and engineering applications. 展开更多
关键词 Natural rubber latex Mussel-inspired interface Graphene oxide Segregated filler network Mechanical property
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Analysis of novel coronavirus pneumonia treatment with Chinese herbal compound
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作者 Can Yang Xiao-Dong Lv +5 位作者 Li-Jian Pang Lin-Lin wang Guo-Qian Cong Hao-Yang Zhang jia-ran wang Ye Sheng 《Journal of Hainan Medical University》 2020年第13期1-7,共7页
Objective: To analyze the prescription law of TCM compound in the treatment of new coronavirus pneumonia, and provides reference for the clinical treatment of new coronavirus pneumonia. Methods: Collected Collected 24... Objective: To analyze the prescription law of TCM compound in the treatment of new coronavirus pneumonia, and provides reference for the clinical treatment of new coronavirus pneumonia. Methods: Collected Collected 24 novel coronavirus pneumonia related diagnostic and therapeutic plans issued by the National Health Council and the Chinese medicine authority from January 26, 2020 to March 8th ,the filtered solution involved in the formula, establishing database of traditional Chinese medicine compound prescription for the treatment of new crown pneumonia, the frequency of using frequency analysis methods of analysis and clustering analysis and association rules analysis to sort out data mining analysis of traditional Chinese medicine compound. Results: In this study, a total of 159 TCM compounds were included in the treatment of new crown pneumonia from the country and 23 provinces, municipalities and autonomous regions, involving 189 TCM compounds. A total of 62 high-frequency traditional Chinese medicines (frequency ≥ 11) were obtained, mainly including licorice, almond, ephedra, gypsum, Poria cocos, Huoxiang, etc The drug types are mainly heat-clearing drugs, vacuous drugs, moisture-curing drugs, and surfactant drugs. The main effect of the medicine was warm, cold, lukewarm and flat, the main effect of the medicine was bitter and bitter, and the main effect of the medicine was the lung, stomach and spleen. Cluster analysis results according to the performance of traditional Chinese medicine treatment of new crown pneumonia high frequency drugs into 7 classes;Association rule analysis results in 29 common drug pairs. Conclusion: In the treatment of pneumonia caused by new coronavirus infection with traditional Chinese medicine, the following characteristics are presented: the number of times of supplementing qi and Yin is more than that of attacking evil and maintaining health;The method of dispersing and solving the attack of wet, beneficial, wet, permeable and wet medicine fully embodies a variety of ways to drive away evil;In terms of drugs, heat-clearing drugs, deficiency drugs, dampness drugs and surface drugs are the main ones, highlighting that the basic treatment method is to dissolve dampness and detoxify, and replenish qi and Yin. In summary, this study can provide reference for guiding clinical drug use and developing new drugs. 展开更多
关键词 Novel coronavirus pneumonia Diagnosis and treatment plan Traditional Chinese medicine compounds Data mining Medication rule Cluster analysis Association rules
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