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Unraveling the Rheology of Nanocellulose Aqueous Suspensions:A Comprehensive Study on Biomass-Derived Nanofibrillated Cellulose
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作者 Mingyue Miao Fei Wang +6 位作者 Qing Li Longchen Tao Chenchen Dai Yu Liu Shujuan Han Wenshuai Chen Ping Lu 《Journal of Renewable Materials》 EI CAS 2024年第3期443-455,共13页
The rheological properties of nanocellulose aqueous suspensions play a critical role in the development of nanocellulose-based bulk materials.High-crystalline,high-aspect ratio,and slender nanofibrillated cellulose(NF... The rheological properties of nanocellulose aqueous suspensions play a critical role in the development of nanocellulose-based bulk materials.High-crystalline,high-aspect ratio,and slender nanofibrillated cellulose(NFC)were extracted from four biomass resources.The cellulose nanofibrils and nanofibril bundles formed inter-connected networks in the NFC aqueous suspensions.The storage moduli of the suspensions with different concentrations were higher than their corresponding loss moduli.As the concentration increased,the storage and loss modulus of NFC dispersion increased.When the shear rate increased to a certain value,there were differences in the changing trend of the rheological behavior of NFC aqueous suspensions derived from different biomass resources and the suspensions with different solid concentrations.NFC dispersion’s storage and loss modulus increased when the temperature rose to nearly 80℃.We hope this study can deepen the understanding of the rheological properties of NFC colloids derived from different biomass resources. 展开更多
关键词 Biomass resources nanofibrillated cellulose high-pressure homogenizer SUSPENSION rheology properties
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Comparison of Nanofibrillated Cellulose and Hydroxyethyl Cellulose in Improving the Storage Stability of Waterborne Coatings
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作者 Xinqi Li Jinghuan Chen +2 位作者 Jingang Liu Tao Zhao Kaiji Yang 《Paper And Biomaterials》 CAS 2023年第4期1-8,共8页
Waterborne coatings often delaminate and settle during long-term storage,requiring the addition of thickeners.The effects of nanofibrillated cellulose(NFC)and the commonly used thickener,hydroxyethyl cellulose(HEC),on... Waterborne coatings often delaminate and settle during long-term storage,requiring the addition of thickeners.The effects of nanofibrillated cellulose(NFC)and the commonly used thickener,hydroxyethyl cellulose(HEC),on the storage stability of waterborne coatings were compared in this study.The morphology of NFC was characterized using infrared spectroscopy(FT-IR)and scanning electron microscopy(SEM).The rotational viscosity and rheological properties of the waterborne coatings with NFC and HEC were tested.Stationary settling experiments were also conducted at different temperatures to compare the difference of NFC and HEC on improving the storage stability of the waterborne coatings.The results showed that the waterborne coating with NFC exhibited pseudoplastic fluid characteristics;a small addition of NFC can achieve the same improvement effect on the storage stability of waterborne coatings as HEC.Further,the improvement effect of NFC was not affected by temperature.The waterborne coating with NFC still exhibited good storage stability at high temperatures,which was significantly superior to that of HEC.Therefore,NFC is a feasible agent for improving the prolonged storage stability and warming-induced delamination of waterborne coatings. 展开更多
关键词 waterborne coatings nanofibrillated cellulose hydroxyethyl cellulose yield stress storage stability
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A Glassy Carbon Electrode Modified with Cellulose Nanofibrils from Ammophila arenaria for the Sensitive Detection of L-Trytophan
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作者 Sondes Bourigua Feriel Boussema +4 位作者 Zayneb Jebali Houcine Barhoumi Hatem Majdoub Abderrazak Maaref Nicole Jaffrezic-Renault 《Journal of Sensor Technology》 2024年第3期35-50,共16页
L-tryptophan is an essential amino acid for human health. Nanofibrillated cellulose (NFC) from marram grass (Ammophila arenaria) extracted from plants harvested in the center of Tunisia was used for the first time for... L-tryptophan is an essential amino acid for human health. Nanofibrillated cellulose (NFC) from marram grass (Ammophila arenaria) extracted from plants harvested in the center of Tunisia was used for the first time for the modification of a glassy carbon electrode (GCE), for the sensitive detection of L-tryptophan (Trp). After spectroscopic and morphological characterization of the extracted NFC, the GC electrode modification was monitored through cyclic voltammetry. The NFC-modified electrode exhibited good analytical performance in detecting Trp with a wide linear range between 7.5 × 10−4 mM and 10−2 mM, a detection limit of 0.2 µM, and a high sensitivity of 140.0 µA∙mM−1. Additionally, the NFC/GCE showed a good reproducibility, good selectivity versus other amino acids, uric acid, ascorbic acid, and good applicability to the detection of Trp in urine samples. 展开更多
关键词 nanofibrillated cellulose CHITOSAN Chemically Modified Glassy Carbon Electrode Electrochemical Detection L-TRYPTOPHAN
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3D-Printed PLA Filaments Reinforced with Nanofibrillated Cellulose 被引量:1
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作者 Matea Perić Robert Putz Christian Paulik 《Journal of Renewable Materials》 SCIE EI 2020年第7期759-772,共14页
In the current study poly(lactic acid)PLA composites with a 3 wt%and 5 wt%of nanofibrillated cellulose(NFC)were produced by 3D-printing method.An enzymatic pretreatment coupled with mechanical fibrillation in a twin s... In the current study poly(lactic acid)PLA composites with a 3 wt%and 5 wt%of nanofibrillated cellulose(NFC)were produced by 3D-printing method.An enzymatic pretreatment coupled with mechanical fibrillation in a twin screw extruder was used to produce high consistency NFC.Scanning electron microscopy(SEM)equipped with Fibermetric software,FASEP fiber length distribution analysis,Furrier transform infrared spectroscopy(FT-IR),thermogravimetric analysis(TGA),tensile tests,impact tests and differential scanning calorimetry were used to characterize NFC and PLA/NFC composites.The results of the fiber length and width measurements together with the results of the SEM analysis showed that enzymatic hydrolysis coupled with a twin screw extrusion could effectively reduce the diameter and length of cellulose fibers.The produced NFC consisted of microand nanosized fibers entangled in a characteristic 3D-network.Based on the FT-IR analysis,no new bonds were formed during the enzymatic hydrolysis or fibrillation process.The TGA analysis confirmed that produced NFC can be used in hightemperature extrusion processing without NFC degradation.During the PLA/NFC composites preparation the NFC agglomerates were formed,which negatively influenced PLA/NFC composites impact properties.The slightly improved tensile strength and elastic modulus were reported for all composites when compared to the neat PLA.The elongation at break was not affected by the NFC addition.No significant differences in thermal stability were detectable among composites nor in comparation with the neat PLA.However,the crystallinity degree of the composite containing 5 wt%NFC was increased in respect to the neat PLA. 展开更多
关键词 nanofibrillated cellulose enzymatic hydrolysis twin screw extruder poly(lactic acid) 3D-printing
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Structure-Thermal Conductivity Tentative Correlation for Hybrid Aerogels Based on Nanofibrillated Cellulose-Mesoporous Silica Nanocomposite 被引量:1
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作者 Dounia Bendahou Abdelkader Bendahou +3 位作者 Bastien Seantier Benedicte Lebeau Yves Grohens Hamid Kaddami 《Journal of Renewable Materials》 SCIE 2018年第3期299-313,共15页
Hybrid aerogels have been prepared by freeze-drying technique after mixing water dispersions of cellulose microfibers or cellulose nanofibers and silica(SiO2)of type SBA-15(2D-hexagonal).The prepared composites were c... Hybrid aerogels have been prepared by freeze-drying technique after mixing water dispersions of cellulose microfibers or cellulose nanofibers and silica(SiO2)of type SBA-15(2D-hexagonal).The prepared composites were characterized by different analysis techniques such as SEM,hot-filament,DMA,etc.These composites are compared to those previously prepared using nanozeolites(NZs)as mineral charge.The morphology studied by SEM indicated that both systems have different structures,i.e.,individual fibers for cellulose microfibers WP-based aerogels and films for nanofibrillated cellulose NFC-based ones....These differences seem to be driven by the charge of the particles,their aspect ratio and concentrations.These hybrid materials exhibit tunable thermal conductivity and mechanical properties.The thermal conductivity values range between^18 to 28 mW.m^-1.K^-1 and confirm the superinsulation ability of these fibrous aerogels.Synergism on the thermal insulation properties and mechanical properties was shown by adjunction of mineral particles to both cellulose-based aerogels by reaching pore size lower than 100 nm.It significantly reduces the thermal conductivity of the hybrid aerogels as predicted by Knudsen et al.Furthermore,the addition of mineral fillers to aerogels based on cellulose microfibers induced a significant increase in stiffness. 展开更多
关键词 AEROGELS cellulose microfibers WP TEMPO-oxidized nfc silica LYOPHILIZATION porosity superinsulation mechanical properties
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Preparation and Characterization of Cellulose Nanofibril-Waterborne Polyurethane Composite Films 被引量:4
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作者 Xinqi Li Jinghuan Chen +1 位作者 Jingang Liu Qi Chen 《Paper And Biomaterials》 CAS 2023年第1期26-34,共9页
To improve the performance of polyurethane films,small amounts of cellulose nanofibrils(CNF)were physically blended with a waterborne polyurethane(WPU)emulsion,and then CNF/WPU composite films were prepared by cast-co... To improve the performance of polyurethane films,small amounts of cellulose nanofibrils(CNF)were physically blended with a waterborne polyurethane(WPU)emulsion,and then CNF/WPU composite films were prepared by cast-coating and drying.The particle size of the emulsions and the chemical structure,micromorphology,thermal stability,mechanical properties,and water resistance of the composite films were characterized using a Malvern laser particle size analyzer,Fourier transform infrared spectroscopy(FT-IR),scanning electron microscopy(SEM),thermogravimetric analysis(TGA),an electronic strength machine,water contact angle analysis(WCA),and water absorption tests,respectively.The results showed that at a low CNF content of 0.3 wt%,the particle size of the WPU emulsion and chemical structure of the film did not change significantly.In addition,the tensile strength of the composite film increased by up to 108%compared to the neat WPU film,and the thermal stability and water resistance were slightly improved.The addition of CNF greatly enhanced the tensile strength while maintaining the other original properties of the WPU film,which may greatly improve the service life and tear resistance of commercial coatings in the future. 展开更多
关键词 cellulose nanofibrils physical blending waterborne polyurethane composite film
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Flexible Nanopaper Composed of Wood-Derived Nanofibrillated Cellulose and Graphene Building Blocks
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作者 Qing Li Ming Dai +13 位作者 Xueren Qian Tian Liu Zhenbo Liu Yu Liu Ming Chen Wang He Suqing Zeng Yu Meng Chenchen Dai Jing Shen Yingtao Liu Wenshuai Chen Wenbo Liu Ping Lu 《Journal of Renewable Materials》 SCIE EI 2021年第3期451-461,共11页
Nanopaper has attracted considerable interest in the fields of films and paper research.However,the challenge of integrating the many advantages of nanopaper still remains.Herein,we developed a facile strategy to fabr... Nanopaper has attracted considerable interest in the fields of films and paper research.However,the challenge of integrating the many advantages of nanopaper still remains.Herein,we developed a facile strategy to fabricate multifunctional nanocomposite paper(NGCP)composed of wood-derived nanofibrillated cellulose(NFC)and graphene as building blocks.NFC suspension was consisted of long and entangled NFCs(10–30 nm in width)and their aggregates.Before NGCP formation,NFC was chemically modified with a silane coupling agent to ensure that it could interact strongly with graphene in NGCP.The resulting NGCP samples were flexible and could be bent repeatedly without any structural damage.Within the NGCP samples,the high aspect ratio of NFC made a major contribution to its high mechanical strength,whereas the sheet-like graphene endowed the NGCP with electrical resistance and electrochemical activity.The mechanical strength of the NGCP samples decreased as their graphene content increased.However,the electrical resistance and electrochemical activity of the NGCP samples both rose with increasing content of graphene.The NGCPs still kept advantageous mechanical properties even at high temperatures around 300℃ because of the high thermal stability of NFCs and their strong entangled web-like structures.In view of its sustainable building blocks and multifunctional characteristics,the NGCP developed in this work is promising as low-cost and high-performance nanopaper. 展开更多
关键词 nanofibrillated cellulose GRAPHENE flexible nanopaper mechanical strength electrical resistance
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纳米纤维素光热吸油气凝胶的构建及性能
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作者 杨明琰 安琳玉 +4 位作者 陈欣玥 王贺铭 何京 赖坤容 倚婷婷 《化学工程》 CAS CSCD 北大核心 2024年第11期26-31,共6页
采用物理吸收法清理石油及石油产品在海上的泄漏是油水分离最具潜力的方法之一。以可降解麦秆基LCNFs(木质纳米纤维素纤丝)为原料,以PVA(聚乙烯醇)为增强相、PDA(聚多巴胺)为光热成分,通过冷冻干燥及MTMS(甲基三甲氧基硅烷)化学沉积法... 采用物理吸收法清理石油及石油产品在海上的泄漏是油水分离最具潜力的方法之一。以可降解麦秆基LCNFs(木质纳米纤维素纤丝)为原料,以PVA(聚乙烯醇)为增强相、PDA(聚多巴胺)为光热成分,通过冷冻干燥及MTMS(甲基三甲氧基硅烷)化学沉积法制备具有光热性能的M-LPPA(疏水性LCNFs/PVA/PDA气凝胶)。对M-LPPA的微观结构、接触角、光热转化性能进行表征,并对不同质量分数PVA的M-LPPA的吸油性能进行初步研究。结果表明:M-LPPA为深灰色弹性气凝胶,具有大、小孔互穿的三维网络结构。M-LPPA疏水角均>130°,且随着PVA质量分数的增加而增加。M-LPPA-0.25对不同有机溶剂及轻质油的吸附容量可达43—168 g/g(以每g气凝胶计),其中对二氯甲烷的吸附量高达168 g/g。在一个太阳光下,M-LPPA-0.25气凝胶在5 min内温度可上升至57.7℃,表明其具有良好的光热性能,可以降低高黏度原油的黏度,提高其吸附性能。 展开更多
关键词 纳米纤维素纤丝 聚多巴胺 气凝胶 光热转换 吸油
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纤维素纳米纤维复合膜的制备及其作为食品包装材料的优异性能研究进展 被引量:2
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作者 吴奇 户昕娜 +3 位作者 卢舒瑜 崔然然 马涛 宋弋 《食品工业科技》 CAS 北大核心 2024年第17期436-444,共9页
近年来,塑料包装的大量使用造成了严重的环境污染。随着人们环保意识的提升,开发可生物降解的新型食品包装材料以替代传统石油基塑料已成为研究热点。纤维素纳米纤维(cellulose nanofibrils,CNF)因其高比表面积、高弹性模量、高强度和... 近年来,塑料包装的大量使用造成了严重的环境污染。随着人们环保意识的提升,开发可生物降解的新型食品包装材料以替代传统石油基塑料已成为研究热点。纤维素纳米纤维(cellulose nanofibrils,CNF)因其高比表面积、高弹性模量、高强度和高气体阻隔性等优异性能而受到研究者们广泛青睐。本文总结了CNF及其相关复合膜的制备方法,讨论了CNF复合膜作为食品包装材料的机械性能、阻隔性能、抑菌性能、可降解性及响应性能。最后,提出CNF应用于食品包装领域所面临的挑战,旨在为未来生产纳米纤维素食品包装材料代替传统石油基材提供参考。 展开更多
关键词 纤维素纳米纤维 复合材料 制备 食品包装
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纤维素纳米纤丝/普鲁兰酶体系对淀粉膜性能的影响研究
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作者 王成 刘利琴 +4 位作者 鲁宾 程正柏 曹海兵 华飞果 安兴业 《中国造纸》 CAS 北大核心 2024年第9期1-6,37,共7页
本研究分析了纤维素纳米纤丝(CNF)/普鲁兰酶(Pul)体系对淀粉膜性能的影响。结果表明,CNF/Pul体系处理后的淀粉具有更高的短程有序性及更多的双螺旋结构,且淀粉晶型中出现了B型特征峰。CNF/Pul体系处理后得到的淀粉膜具有良好的表面均匀... 本研究分析了纤维素纳米纤丝(CNF)/普鲁兰酶(Pul)体系对淀粉膜性能的影响。结果表明,CNF/Pul体系处理后的淀粉具有更高的短程有序性及更多的双螺旋结构,且淀粉晶型中出现了B型特征峰。CNF/Pul体系处理后得到的淀粉膜具有良好的表面均匀性和机械性能,该膜的拉伸强度从2.44 MPa(Nature-StF)增至7.32 MPa(CNF/Pul-StF),增加了2倍。光/水蒸气透过率测试结果表明,CNF/Pul体系处理后的淀粉膜具有更好的光学透过性,且对水蒸气阻隔性能有一定的增强作用。CNF/Pul体系处理后淀粉膜的光学透过率从49.3%~51.2%(Nature-StF)增至56.1%~60.1%(CNF/Pul-StF),且水蒸气透过系数从9.26×10^(−12)g·cm/(Pa·s·cm^(2))(Nature-StF)减至6.33×10^(−12)g·cm/(Pa·s·cm^(2))(CNF/Pul-StF)。 展开更多
关键词 淀粉 普鲁兰酶 纤维素纳米纤丝 淀粉膜
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含木质素的纤维素纳米纤丝的预处理工艺及研究进展
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作者 高佳 王攀攀 +2 位作者 王丽君 刘姗姗 王强 《中国造纸》 CAS 北大核心 2024年第2期31-38,共8页
本文重点介绍了制备含木质素的纤维素纳米纤丝的预处理工艺及特点,包括酸法、碱法、2,2,6,6-四甲基哌啶氧化物(TEMPO)氧化法、酶法和低共熔溶剂法等预处理技术,总结了制备的含木质素的纤维素纳米纤丝的特性,并展望了含木质素的纤维素纳... 本文重点介绍了制备含木质素的纤维素纳米纤丝的预处理工艺及特点,包括酸法、碱法、2,2,6,6-四甲基哌啶氧化物(TEMPO)氧化法、酶法和低共熔溶剂法等预处理技术,总结了制备的含木质素的纤维素纳米纤丝的特性,并展望了含木质素的纤维素纳米纤丝制备和应用的未来发展方向。 展开更多
关键词 木质素 纤维素纳米纤丝 预处理
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羧基化纤维素纳米纤丝对单片层蒙脱土分散性能的研究
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作者 彭李圆 方志强 +1 位作者 李冠辉 林晓琪 《中国造纸》 CAS 北大核心 2024年第7期84-92,共9页
本研究使用纤维素纳米纤丝(CNF)作为分散剂制备分散稳定的单片层蒙脱土(MMT)分散液,探究了CNF羧基含量和长径比对单片层MMT分散液的分散稳定性、平均粒径、黏度和得率的影响。结果表明,2,2,6,6-四甲基哌啶氮氧化物(TEMPO)氧化的CNF(TOC... 本研究使用纤维素纳米纤丝(CNF)作为分散剂制备分散稳定的单片层蒙脱土(MMT)分散液,探究了CNF羧基含量和长径比对单片层MMT分散液的分散稳定性、平均粒径、黏度和得率的影响。结果表明,2,2,6,6-四甲基哌啶氮氧化物(TEMPO)氧化的CNF(TOCNF)对单片层MMT的分散性能优于羧甲基化CNF(CMCNF)。当羧基含量为1.24 mmol/g时,TOCNF展现出最佳的分散效果。此时,分散液中主要为单片层的MMT,其平均粒径为317 nm。进一步研究表明,当使用质量分数0.1%的TOCNF(1.24 mmol/g)为分散剂时,其分散MMT的最大初始质量分数为1.5%,此时,超声离心后的单片层MMT得率和质量分数分别为52%和0.78%。 展开更多
关键词 纤维素纳米纤丝 蒙脱土 分散稳定性 羧基化
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纤维素纳米纤维的疏水改性及其在纸张中的应用
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作者 周嘉铖 邹小峰 +2 位作者 杨祥建 陈天影 唐艳军 《中国造纸》 CAS 北大核心 2024年第7期160-167,共8页
本研究基于水相一锅两步法对纤维素纳米纤丝(CNFs)进行疏水改性,重点研究了没食子酸(GA)、没食子酸甲酯(MG)、没食子酸乙酯(EG)、没食子酸丙酯(PG)及原儿茶酸(PCA)5种植物多酚对CNFs疏水改性的影响,并对疏水改性CNFs在纸张涂布中的应用... 本研究基于水相一锅两步法对纤维素纳米纤丝(CNFs)进行疏水改性,重点研究了没食子酸(GA)、没食子酸甲酯(MG)、没食子酸乙酯(EG)、没食子酸丙酯(PG)及原儿茶酸(PCA)5种植物多酚对CNFs疏水改性的影响,并对疏水改性CNFs在纸张涂布中的应用进行了探究。结果表明,植物多酚(GA、MG、EG、PG及PCA)均能协同十八胺(ODA)对CNFs进行疏水改性;且CNFs的疏水改性作用效果随植物多酚结构中碳链的延长而增强。疏水改性CNFs能够赋予纸张较好疏水性,PCA改性CNFs涂布纸的疏水性强于GA改性CNFs涂布纸的疏水性;PG改性CNFs涂布纸的水接触角较ODA涂布纸的水接触角提高了43%,且疏水改性CNFs涂布纸在干、湿状态下均能保持较好的抗张强度。 展开更多
关键词 纤维素纳米纤丝 植物多酚 表面改性 疏水
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金针菇纳米纤维素复合凝胶的制备及结构表征
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作者 席越阳 余秋雨 +2 位作者 蒙志明 刘莹 朱迎春 《肉类研究》 北大核心 2024年第2期1-8,共8页
采用热处理制备明胶(gelatin,GN)-结冷胶(gellan gum,GG)复合凝胶,通过持水性和溶胀度的测定优化GN和GG的添加量,在此基础上为进一步改善复合凝胶的性能,添加金针菇纳米纤维素(cellulose nanofibril,CNF)制得CNF-GN-GG复合凝胶,探究CNF... 采用热处理制备明胶(gelatin,GN)-结冷胶(gellan gum,GG)复合凝胶,通过持水性和溶胀度的测定优化GN和GG的添加量,在此基础上为进一步改善复合凝胶的性能,添加金针菇纳米纤维素(cellulose nanofibril,CNF)制得CNF-GN-GG复合凝胶,探究CNF对复合凝胶持水性、溶胀度、质构及流变性能的影响,并对其结构进行表征。结果表明:当GN添加量为5%、GG添加量为0.4%时,复合凝胶具有较好的持水性和溶胀度;CNF的添加增加了复合凝胶的持水性和溶胀度,提高了储能模量和损耗模量,同时也增大了复合凝胶的硬度、咀嚼性和胶黏性;通过测定复合凝胶的ζ电位和红外光谱发现,添加CNF使ζ电位绝对值增大、凝胶体系内的氢键增强、蛋白交联度增加,微观结构也显示CNF促进了凝胶网络的形成并使结构更加均匀、致密。由此表明,CNF的添加能够提升复合凝胶的性质并使凝胶体系更加稳定,CNF添加量为0.6%时较为适宜。 展开更多
关键词 明胶 结冷胶 金针菇纳米纤维素 复合凝胶
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透明纤维素纳米丝/水性聚氨酯抗菌复合膜的制备及其性能研究
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作者 马维 杨茜茜 +2 位作者 杨昱彤 陆鑫 任学宏 《化工新型材料》 CAS CSCD 北大核心 2024年第11期214-218,225,共6页
采用乙醇作为溶剂,将高效抗菌组分N-卤胺抗菌剂1-氯-2,2,5,5-四甲基-咪唑啉哃(MC)引入纤维素纳米丝/水性聚氨酯(CNF/WPU)复合膜体系,通过溶液浇筑法制备了透明CNF/WPU-MC抗菌复合膜,探讨了工艺条件对复合膜机械性能、外观形貌、氯含量... 采用乙醇作为溶剂,将高效抗菌组分N-卤胺抗菌剂1-氯-2,2,5,5-四甲基-咪唑啉哃(MC)引入纤维素纳米丝/水性聚氨酯(CNF/WPU)复合膜体系,通过溶液浇筑法制备了透明CNF/WPU-MC抗菌复合膜,探讨了工艺条件对复合膜机械性能、外观形貌、氯含量、溶胀性、质量损失率的影响,并得出最佳工艺参数。在此基础上,研究了抗菌复合膜的结构、抗菌性能、存储稳定性等。结果表明,CNF/WPU-MC抗菌复合膜具有优异的吸湿性和机械性能,且能够在5min接触时间内使接种的金黄色葡萄球菌和大肠杆菌菌株失活,具有快速杀菌特性,可为包装用抗菌薄膜材料的研发及应用提供理论基础和科学依据。 展开更多
关键词 N-卤胺 纤维素纳米丝 水性聚氨酯 透明 抗菌复合膜
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ZIF-67原位负载纳米纤维素基锂离子电池隔膜的制备及性能研究
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作者 徐涌林 陈卓玲 +3 位作者 崔京浩 郭滨珲 陈思颖 李薇 《中国造纸》 CAS 北大核心 2024年第5期63-72,共10页
本研究以纳米纤维素(CNF)为原料,经乙酰化、原位负载ZIF-67和浸渍电解液制备出一种新型ZIF-67@乙酰化纳米纤维素(ZIF-67@ACNF)锂离子电池隔膜,系统探讨了ZIF-67的粒径对隔膜结构及性能的影响。结果表明,当ZIF-67的粒径从0.46µm(ZIF... 本研究以纳米纤维素(CNF)为原料,经乙酰化、原位负载ZIF-67和浸渍电解液制备出一种新型ZIF-67@乙酰化纳米纤维素(ZIF-67@ACNF)锂离子电池隔膜,系统探讨了ZIF-67的粒径对隔膜结构及性能的影响。结果表明,当ZIF-67的粒径从0.46µm(ZIF-67_(4)@ACNF隔膜)减小至0.25µm(ZIF-67_(8)@ACNF隔膜)时,隔膜的孔隙率从74.2%减小至52.1%,离子电导率从0.75 mS/cm下降至0.22 mS/cm,界面电阻从112.5Ω增加至1115.7Ω,锂离子迁移数从0.41减小至0.31,电化学稳定窗口从5.1 V减小至4.5 V。采用ZIF-67_(4)@ACNF隔膜组装电池,在室温、0.5 C的条件下进行电池充/放电测试,初始容量达到159.6 mAh/g,循环200圈后容量保持率达到90%。 展开更多
关键词 乙酰化纳米纤维素 ZIF-67 隔膜 锂离子电池
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可再生纤维荧光纳米复合膜的构筑
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作者 张丽颖 陈俊为 +1 位作者 刘冰灵 温娅萍 《广州化工》 CAS 2024年第6期128-130,141,共4页
以量子点(QDs)和纤维素纳米复合材料共混所制备的发光膜,在显示器等带有光学特征的领域有较广泛的应用。而现阶段所用QDs通常是II-VI族半导体纳米粒子,金属含量阻碍了它在医学等领域的应用。研究表明,采用碳点(CDs)代替金属量子点,将双... 以量子点(QDs)和纤维素纳米复合材料共混所制备的发光膜,在显示器等带有光学特征的领域有较广泛的应用。而现阶段所用QDs通常是II-VI族半导体纳米粒子,金属含量阻碍了它在医学等领域的应用。研究表明,采用碳点(CDs)代替金属量子点,将双醛基纳米纤维素(DNF)和CDs两种原材料共混再分散到明胶溶液中,可以构筑更加高性能的荧光复合膜。总之,该研究为制备可再生纤维荧光纳米复合膜提供一定的实验指导和理论支持,并为研究发光膜材料提供了新思路。 展开更多
关键词 碳点 双醛纳米纤维素 可再生荧光纳米复合膜
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均质法和超声法制备NFC及其纳米纸性能研究 被引量:4
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作者 姚志明 陈港 +4 位作者 方志强 况宇迪 邝其通 许雅希 张宝军 《中国造纸》 CAS 北大核心 2016年第7期19-24,共6页
以漂白硫酸盐桉木浆纤维为原料,进行TEMPO氧化预处理,再采用均质法和超声法及二者结合法分别制备出纳米纤丝纤维素(Nanofibrillated Cellulose,NFC),再经溶液浇铸法制备纳米纸。重点探讨了不同制备方法对NFC特性及其纳米纸性能的影响。... 以漂白硫酸盐桉木浆纤维为原料,进行TEMPO氧化预处理,再采用均质法和超声法及二者结合法分别制备出纳米纤丝纤维素(Nanofibrillated Cellulose,NFC),再经溶液浇铸法制备纳米纸。重点探讨了不同制备方法对NFC特性及其纳米纸性能的影响。结果表明,不同能耗下,超声2 h、4 h比均质2次、5次制备的NFC的透明性更好,长径比更大,直径更小,最小宽度可达19 nm。工艺能耗低于20 k Wh时,与均质处理相比,超声处理强度(能耗)的增加更有利于纳米纸拉伸强度和透湿率的提高,同时超声2 h、4 h比均质2次、5次制备的NFC纳米纸的光学性能更好,其中超声4h制备的NFC得到的纳米纸拉伸强度与透光率最高,分别为155.8 MPa、89.45%,优于一般的聚合物薄膜,有望应用于柔性显示电子器件的基材。 展开更多
关键词 均质 超声 nfc 纳米纸
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毛竹NFC/SiO_2气凝胶的制备和疏水改性 被引量:1
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作者 李婧 刘志明 《纤维素科学与技术》 CAS CSCD 2016年第1期49-54,共6页
以毛竹为原料,高压均质法制备纳米纤丝化纤维素(NFC),再采用溶胶―凝胶法制备NFC/二氧化硅(SiO_2)气凝胶。采用傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)、扫描电子显微镜(SEM)、能谱(EDS)等对其进行表征,通过改变正硅酸乙酯/无水乙醇... 以毛竹为原料,高压均质法制备纳米纤丝化纤维素(NFC),再采用溶胶―凝胶法制备NFC/二氧化硅(SiO_2)气凝胶。采用傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)、扫描电子显微镜(SEM)、能谱(EDS)等对其进行表征,通过改变正硅酸乙酯/无水乙醇的体积比获得样品微观形貌较佳的反应工艺条件,并采用十八烷基三氯硅烷的正己烷溶液对NFC/SiO_2气凝胶进行疏水改性,用接触角测量仪测试改性NFC/SiO_2气凝胶的疏水性能。研究结果表明NFC/SiO_2气凝胶在正硅酸乙酯/无水乙醇体积比为1.25%时,二氧化硅复合效率高,且所获得的气凝胶形貌较好,二氧化硅以颗粒的形式附着在纳米纤丝化纤维素表面。改性NFC/SiO_2气凝胶接触角为132°,达到疏水状态。 展开更多
关键词 毛竹 纳米纤丝化纤维素(nfc) 模板 正硅酸乙酯/无水乙醇醇解液 疏水改性
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Ultrathin and Flexible CNTs/MXene/Cellulose Nanofibrils Composite Paper for Electromagnetic Interference Shielding 被引量:30
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作者 Wentao Cao Chang Ma +3 位作者 Shuo Tan Mingguo Ma Pengbo Wan Feng Chen 《Nano-Micro Letters》 SCIE EI CAS CSCD 2019年第4期276-292,共17页
As the rapid development of portable and wearable devices,different electromagnetic interference(EMI)shielding materials with high efficiency have been desired to eliminate the resulting radiation pollution.However,li... As the rapid development of portable and wearable devices,different electromagnetic interference(EMI)shielding materials with high efficiency have been desired to eliminate the resulting radiation pollution.However,limited EMI shielding materials are successfully used in practical applications,due to the heavy thickness and absence of sufficient strength or flexibility.Herein,an ultrathin and flexible carbon nanotubes/MXene/cellulose nanofibrils composite paper with gradient and sandwich structure is constructed for EMI shielding application via a facile alternating vacuum-assisted filtration process.The composite paper exhibits outstanding mechanical properties with a tensile strength of 97.9±5.0 MPa and a fracture strain of 4.6±0.2%.Particularly,the paper shows a high electrical conductivity of 2506.6 S m?1 and EMI shielding effectiveness(EMI SE)of 38.4 dB due to the sandwich structure in improving EMI SE,and the gradient structure on regulating the contributions from reflection and absorption.This strategy is of great significance in fabricating ultrathin and flexible composite paper for highly efficient EMI shielding performance and in broadening the practical applications of MXene-based composite materials. 展开更多
关键词 MXene Carbon NANOTUBES cellulose NANOFIBRILS Mechanical property Electromagnetic interference SHIELDING
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