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细菌纤维素基CNFs/ZnO吸波材料的制备及性能
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作者 刘平安 林宝舜 +2 位作者 丁会玲 肖亮 张志杰 《华南理工大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第8期138-145,共8页
随着电子信息技术的不断发展,电磁污染问题日益严重,高效吸波材料的研究受到越来越多的关注。该文以生物多孔材料细菌纤维素为碳源,采用碳化改性和水热法两步制备了细菌纤维素基CNFs/ZnO复合材料,研究了二水合醋酸锌的浓度对CNFs/ZnO复... 随着电子信息技术的不断发展,电磁污染问题日益严重,高效吸波材料的研究受到越来越多的关注。该文以生物多孔材料细菌纤维素为碳源,采用碳化改性和水热法两步制备了细菌纤维素基CNFs/ZnO复合材料,研究了二水合醋酸锌的浓度对CNFs/ZnO复合材料吸波性能的影响。通过X射线衍射仪(XRD)、冷场发射扫描电子显微镜(FESEM)、矢量网络分析仪(VNA)对复合材料的结构、形貌和吸波性能进行表征。结果表明:CNFs/ZnO复合材料被成功制备,其中碳纳米纤维(CNFs)没有明显的衍射峰,呈无定形状态;碳化和改性CNFs均保持了细菌纤维素三维网络多孔架构的精细纳米纤维微观形貌,但是CNFs变得卷曲且直径明显减小;CNFs/ZnO复合材料中,ZnO被紧密吸引在CNFs表面或随机插入CNFs的空隙中。通过改变二水合醋酸锌的浓度可以控制ZnO在复合材料中的含量,进而调控复合材料的电磁参数,获得良好的阻抗匹配。当二水合醋酸锌的浓度为0.25 mol/L时,ZnO在CNFs上分散得最为均匀,此时CNFs和ZnO的电阻损耗、介电损耗和界面极化等协同作用于三维多孔网络结构上,增加了复合材料对电磁波的多次反射、散射和长程耗散作用。该条件下制备的CNFs/ZnO复合材料,在涂层厚度为2.8 mm、频率为15.1 GHz附近时,其最佳反射损耗为−57.5 dB,有效吸收带宽为7.1 GHz,是一种可靠的复合吸波材料。 展开更多
关键词 细菌纤维素 碳纳米纤维 ZNO 复合材料 吸波性能
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锂硫电池中CNTs-CNFs夹层对多硫化物的捕获和加速转化机理
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作者 陈磊 袁业辉 +1 位作者 宋瑞 张超 《天津工业大学学报》 CAS 北大核心 2024年第4期44-49,共6页
为有效抑制多硫化锂(LiPSs)的穿梭效应,通过静电纺丝、电化学沉积和化学气相生长技术在碳纳米纤维(CNFs)上垂直生长碳纳米管(CNTs),开发了一种超薄、轻质的多功能三维多层交联碳纳米纤维-碳纳米管(CNTs-CNFs)夹层,并研究CNTs-CNFs对锂... 为有效抑制多硫化锂(LiPSs)的穿梭效应,通过静电纺丝、电化学沉积和化学气相生长技术在碳纳米纤维(CNFs)上垂直生长碳纳米管(CNTs),开发了一种超薄、轻质的多功能三维多层交联碳纳米纤维-碳纳米管(CNTs-CNFs)夹层,并研究CNTs-CNFs对锂硫电池(LSBs)电化学性能的影响。研究结果表明:CNTs-CNFs薄膜优异的导电性和丰富的孔隙结构为LSBs提供了均匀的导电网络和LiPSs的吸附过滤屏障,与无夹层相比,含有CNTs-CNFs夹层的电池具有更优异的容量保持率和循环稳定性,在0.2 C电流密度下具有1296.7 mA·h/g的初始放电比容量,在100次循环后仍能提供了864.7 mA·h/g的放电比容量,容量保持率为66.68%。 展开更多
关键词 多硫化锂(LiPSs) 碳纳米纤维-碳纳米管(CNTs-cnfs) 夹层 三维多层交联 锂硫电池(LSBs)
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Atmosphere-free activation methodology for holey graphene/cellulose nanofiber-based film electrode with highly efficient capacitance performance 被引量:4
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作者 Heng Wu Wenyu Yuan +1 位作者 Xiaowen Yuan Laifei Cheng 《Carbon Energy》 SCIE CAS CSCD 2023年第1期233-246,共14页
An efficient chamber-induced activation method was applied for the preparation of holey graphene/cellulose nanofiber-based film with high specific surface area(SSA)and multiple channels through the graphene nanosheets... An efficient chamber-induced activation method was applied for the preparation of holey graphene/cellulose nanofiber-based film with high specific surface area(SSA)and multiple channels through the graphene nanosheets.With the cellulose nanofiber(CNF)simultaneously serving as“dispersing agent,”“spacer,”and“activating agent,”the graphene oxide(GO)nanosheets are perforated by the pyrolysis gas from CNF in the confined space inside the hybrid films,uniformly dispersed,and sandwiched between CNF networks with less agglomeration and restacking.Additionally,we have proved that H2O and H2 are primarily responsible for the activation and etching of GO/CNF film.As the CNF content increases,the mesoporosity of the activated reduced GO/CNF(A-RGO/CNF)film increases,and the graphene nanosheets show more nanopore perforations.Benefitting from the high SSA,high density,moderate mesoporosity,and abundant channels for ion diffusion through the graphene nanosheets,the A-RGO/CNF film exhibits the highest specific capacitance of 323(236)F g^(−1)(F cm^(−3))at 1Ag^(−1).For the A-RGO5/CNF5 film containing half CNF and half GO,an excellent comprehensive electrochemical performance including superior rate performance(208(160)F g^(−1)(F cm^(−3))at 60Ag^(−1))is exhibited.Moreover,the A-RGO5/CNF5 electrode in an all-solid-state flexible symmetric supercapacitor delivers a high specific capacitance of 250(193)F g^(−1)(F cm^(−3))at 1Ag^(−1).This study provides a novel idea for the preparation of holey graphene-based film for supercapacitor electrodes.The strategy of simultaneously employing CNF as“dispersing agent,”“spacer,”and“activating agent”also offers a new vision for the assembly of homogeneous nanohybrid material and the utilization of pyrolysis gas. 展开更多
关键词 cellulose nanofiber chamber-induced activation holey graphene SUPERCAPACITOR
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Cellulose nanofiber-derived carbon aerogel for advanced room-temperature sodium–sulfur batteries 被引量:1
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作者 Wu Yang Wang Yang +4 位作者 Ren Zou Yongfa Huang Haihong Lai Zehong Chen Xinwen Peng 《Carbon Energy》 SCIE CAS CSCD 2023年第1期1-15,共15页
Room-temperature sodium–sulfur(RT/Na–S)batteries are regarded as promising large-scale stationary energy storage systems owing to their high energy density and low cost as well as the earth-abundant reserves of sodi... Room-temperature sodium–sulfur(RT/Na–S)batteries are regarded as promising large-scale stationary energy storage systems owing to their high energy density and low cost as well as the earth-abundant reserves of sodium and sulfur.However,the diffusion of polysulfides and sluggish kinetics of conversion reactions are still major challenges for their application.Herein,we developed a powerful and functional separator to inhibit the shuttle effect by coating a lightweight three-dimensional cellulose nanofiber-derived carbon aerogel on a glass fiber separator(denoted NSCA@GF).The hierarchical porous structures,favorable electronic conductivity,and three-dimensional interconnected network of N,S-codoped carbon aerogel endow a multifunctional separator with strong polysulfide anchoring capability and fast reaction kinetics of polysulfide conversion,which can act as the barrier layer and an expanded current collector to increase sulfur utilization.Moreover,the hetero-doped N/S sites are believed to strengthen polysulfide anchoring capability via chemisorption and accelerate the redox kinetics of polysulfide conversion,which is confirmed from experimental and theoretical results.As a result,the assembled Na–S coin cells with the NSCA@GF separator showed a high reversible capacity(788.8 mAh g^(−1) at 0.1 C after 100 cycles)and superior cycling stability(only 0.059%capacity decay per cycle over 1000 cycles at 1 C),thereby demonstrating the significant potential for application in high-performance RT/Na–S batteries. 展开更多
关键词 carbon aerogel cellulose nanofiber N S codoping redox kinetics sodium–sulfur batteries
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Bacterial Cellulose Nanofibers as Reinforcement for Preparation of Bamboo Pulp Based Composite Paper 被引量:1
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作者 朱冰洁 李喆 +1 位作者 陈仕艳 王华平 《Journal of Donghua University(English Edition)》 CAS 2023年第3期247-254,共8页
Bamboo fibers(BFs),with features of renewability and biodegradability,have been widely used in paper-making products.In order to improve the mechanical properties and water absorption behaviors of the BF paper,bacteri... Bamboo fibers(BFs),with features of renewability and biodegradability,have been widely used in paper-making products.In order to improve the mechanical properties and water absorption behaviors of the BF paper,bacterial cellulose nanofibers(BCNFs)as environmentally friendly nano-fibrillated cellulose(NFC)were combined with BFs.The structures and properties of the BF/BCNF composite paper were characterized by field emission scanning electron microscopy(FE-SEM),X-ray diffraction(XRD),Fourier transforms infrared(FTIR)spectroscopy,mechanical tests,pore size tests,and water absorption tests.The results indicated that the addition of BCNFs could significantly improve the water absorption capacity and mechanical properties.The water absorption ratio of the BF/BCNF composite paper with a BCNF mass fraction of 9%comes to 443%,about 1.33 times that of the pure BF paper.At the same BCNF content,the tensile strength of the BF/BCNF composite paper in dry and wet states was 12.37 MPa and 200.9 kPa,respectively,increasing by 98.24%and 136.91%as compared with that of the BF paper. 展开更多
关键词 bamboo fiber(BF) bacterial cellulose nanofiber(Bcnf) mechanical property water absorption
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高性能柔性自支撑CNFs@UIO-66@PANI复合膜电极材料的制备及应用
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作者 吴鹏九 李珊珊 +4 位作者 徐传健 刘长海 王世颖 王文昌 陈智栋 《材料科学与工程学报》 CAS CSCD 北大核心 2024年第4期569-577,共9页
以纳米纤维素(CNFs)为柔性基体,在其表面通过溶剂热反应原位生长UIO-66纳米层,随后通过原位聚合将聚苯胺(PANI)沉积在CNFs@UIO-66表面,真空抽滤得到柔性纳米膜,并组装成柔性固态超级电容器。考察了CNFs/UIO-66比例以及苯胺(ANI)浓度对CN... 以纳米纤维素(CNFs)为柔性基体,在其表面通过溶剂热反应原位生长UIO-66纳米层,随后通过原位聚合将聚苯胺(PANI)沉积在CNFs@UIO-66表面,真空抽滤得到柔性纳米膜,并组装成柔性固态超级电容器。考察了CNFs/UIO-66比例以及苯胺(ANI)浓度对CNFs@UIO-66@PANI复合膜电化学性能的影响。结果表明,CNFs/UIO-66的比例对复合膜的电化学性能有关键影响,当CNF/UIO-66比例为1∶1电流密度在1 A·g^(-1)时,复合膜比容量高达1287 F·g^(-1),随着CNF/UIO-66中UIO-66比例的增加,复合膜的比电容下降;当CNF/UIO-66比例为1∶3时,复合膜的比电容降至554 F·g^(-1)。将复合膜组装成柔性对称固态超级电容器,当功率密度为200 W·kg^(-1)时,能量密度为47.39 Wh·kg^(-1),在10 A·g^(-1)的电流密度下循环5000次后,循环稳定性高达100%,表现出极佳的稳定性,亦证实了CNFs@UIO-66@PANI复合膜在柔性储能领域的巨大应用潜力。 展开更多
关键词 纳米纤维素 UIO-66 PANI 固态超级电容器
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Morphological, Mechanical and Thermal Properties of Poly(lactic acid)(PLA)/Cellulose Nanofibrils(CNF) Composites Nanofiber for Tissue Engineering 被引量:3
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作者 YANG Zhangqiang SI Junhui 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第1期207-215,共9页
Composite nanofiber membranes based on biodegradable poly(lactic acid)(PLA) and cellulose nanofibrils(CNF) were produced via electrospinning. The influence of CNF content on the morphology, thermal properties, and mec... Composite nanofiber membranes based on biodegradable poly(lactic acid)(PLA) and cellulose nanofibrils(CNF) were produced via electrospinning. The influence of CNF content on the morphology, thermal properties, and mechanical properties of PLA/CNF composite nanofiber membranes were characterized by field scanning electron microscopy(FE-SEM), differential scanning calorimetry(DSC), thermogravimetric analysis(TGA), and dynamic mechanical analysis(DMA), respectively. The results show that the PLA/CNF composite nanofibers with smooth, free-bead surface can be successfully fabricated with various CNF contents. The introduction of CNF is an effective approach to improve the crystalline ability, thermal stability and mechanical properties for PLA/CNF composite fibers. The Young's moduli and tensile strength of the PLA/CNF composite nanofiber reach 106.6 MPa and 2.7 MPa when the CNF content is 3%, respectively, which are one times higher and 1.5 times than those of pure PLA nanofiber. Additionally, the water contact angle of PLA/CNF composite nanofiber membranes decreases with the increase of the CNF loading, resulting in the enhancement of their hydrophilicity. 展开更多
关键词 poly(lactic acid)(PLA) cellulose nanofibrils(cnf) electrospinning mechanical and thermal properties
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Electrostatic Self-Assembly of Ti_(3)C_(2)T_(x) MXene/Cellulose Nanofiber Composite Films for Wearable Supercapacitor and Joule Heater
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作者 Guoqiang Zhou Xiao Wang +7 位作者 Ting Wan Chaozheng Liu Weimin Chen Shaohua Jiang Jingquan Han Youguo Yan Meichun Li Changtong Mei 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第6期409-418,共10页
The titanium carbide nanosheets(MXene)hold great potential for fabricating high-performance electronics due to their two-dimensional layered structure,high electrical conductivity,and versatile surface chemistry.Howev... The titanium carbide nanosheets(MXene)hold great potential for fabricating high-performance electronics due to their two-dimensional layered structure,high electrical conductivity,and versatile surface chemistry.However,assembling the small MXene nanosheets into flexible macroscopic films for wearable electronics still remains a challenge.Herein,we report the hierarchical assembling of MXene nanosheets and cellulose nanofibers into high-performance composite films via an electrostatic self-assembly strategy induced by polyethyleneimine.Benefited from the nacre-like microstructure of MXene"bricks"and cellulose nanofibers"mortars"interlocked by polyethyleneimine via hydrogen bonding and electrostatic interaction,composite films possess integrated superior flexibility,high tensile strength,and stable electrical conductivity,which are advantageous for wearable electronic applications.To provide a proof-of-concept design,a symmetric quasi-solid-state supercapacitor with the as-prepared composite film as electrode is fabricated,which exhibits a specific capacitance of 93.9 mF cm^(-2)at a current density of 0.1 mA cm^(-2)and almost constant capacitive behavior under different bending states.In addition,the composite film possesses capacities of electrothermal conversion and complete degradation in a hydrogen peroxide solution.These results demonstrate that the electrostatically self-assembled composite films hold great promise in the development of highly flexible,mechanically robust,and environmentally friendly energy storage and conversion devices. 展开更多
关键词 cellulose nanofiber interfacial interaction Joule heater MXene supercapaaitor
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EPR/PP/M-CNF纳米复合材料的制备及性能研究
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作者 韩贤新 王宇威 +5 位作者 樊丽权 姜永旺 岳莹 许珂琳 李玉鑫 刘喜军 《齐齐哈尔大学学报(自然科学版)》 2024年第4期70-74,共5页
纤维素纳米纤维(CNF)经碱液预处理得到碱预处理纤维素纳米纤维(APCNF),再通过二元乙丙橡胶接枝乙烯醇(EPR-g-VA)接枝共聚物溶液处理后,得到改性纤维素纳米纤维(M-CNF)。然后将M-CNF添加到EPR/PP共混体系中,制备EPR/PP/M-CNF纳米复合材... 纤维素纳米纤维(CNF)经碱液预处理得到碱预处理纤维素纳米纤维(APCNF),再通过二元乙丙橡胶接枝乙烯醇(EPR-g-VA)接枝共聚物溶液处理后,得到改性纤维素纳米纤维(M-CNF)。然后将M-CNF添加到EPR/PP共混体系中,制备EPR/PP/M-CNF纳米复合材料。通过扫描电子显微镜、偏光显微镜、热重分析仪、动态热机械分析仪、电子万能试验机等对EPR/PP/M-CNF纳米复合材料的微观形貌、球晶尺寸、热稳定性以及力学性能进行分析测试。结果表明,EPR、EPR-g-VA包覆APCNF形成“核-壳”结构;相对于EPR/PP共混物,EPR/PP/M-CNF纳米复合材料的热学性能和力学性能均有明显提高,EPR/PP/M-CNF纳米复合材料的冲击强度和初始热分解温度分别为13.80 kJ/m^(2)和368.73℃,并且复合材料中PP相的球晶尺寸变小,晶界面模糊。 展开更多
关键词 聚丙烯 二元乙丙橡胶 复合材料 纤维素纳米纤维
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石蜡/TOCNF相变气凝胶的制备及结构性能调控
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作者 卢静 孙龙飞 +2 位作者 赵寒飞 魏璐琳 刘琳 《浙江理工大学学报(自然科学版)》 2024年第6期777-786,共10页
为了防止固-液相变材料在相变过程中的液体泄漏,提高相变材料的稳定性,减少团聚,增加传热表面积,以TEMPO氧化纤维素纳米纤维(TEMPO-oxidized cellulose nanofibers,TOCNF)作为稳定剂,以石蜡作为油相,经过高速分散得到石蜡/TOCNF Picker... 为了防止固-液相变材料在相变过程中的液体泄漏,提高相变材料的稳定性,减少团聚,增加传热表面积,以TEMPO氧化纤维素纳米纤维(TEMPO-oxidized cellulose nanofibers,TOCNF)作为稳定剂,以石蜡作为油相,经过高速分散得到石蜡/TOCNF Pickering乳液(paraffins/TOCNF Pickering emulsion,PTPE),并将其与作为气凝胶主体的TOCNF混合,通过冷冻干燥制备石蜡/TOCNF相变气凝胶(paraffins/TOCNF phase change aerogels,PTA);分析TOCNF质量分数、溶液pH值对Pickering乳液尺寸形貌及稳定性的影响,探讨不同Pickering乳液添加量下所得PTA的形貌结构、储热容量、热稳定性和力学性能等。结果表明:当稳定剂TOCNF质量分数为0.5%、pH值为7~11时,所得Pickering乳液粒径较小且尺寸均一,平均粒径分布在8.3~14.8μm,具有优异的稳定性;经乳化分散后,石蜡颗粒均匀镶嵌在PTA孔壁表面,无液体泄漏。所得PTA潜热值可高达225.8J/g,并具有良好的机械性能。该文以TOCNF作为乳化剂和气凝胶的骨架,通过Pickering乳液模板法制备的具有三维多孔网络结构的相变气凝胶,一定程度上解决了目前纤维素复合相变气凝胶存在的液体泄漏、潜热低与机械强度差等难题。 展开更多
关键词 纤维素纳米纤维 Pickering乳液 乳液稳定性 相变材料 气凝胶
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The Effect of Uncaria gambir on Optical Properties and Thermal Stability of CNF/PVA Biocomposite Films
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作者 Remon Lapisa Anna Niska Fauza +6 位作者 Dieter Rahmadiawan Krismadinata Dori Yuvenda Randi Purnama Putra Waskito Nandy Putra Hairul Abral 《Journal of Renewable Materials》 EI CAS 2024年第9期1593-1603,共11页
Cellulose-based film has gained popularity as an alternative to synthetic polymers due to its outstanding properties.Among all types of cellulose materials available,cellulose nanofiber(CNF)has great potential to be u... Cellulose-based film has gained popularity as an alternative to synthetic polymers due to its outstanding properties.Among all types of cellulose materials available,cellulose nanofiber(CNF)has great potential to be utilized in a diverse range of applications,including as a film material.In this study,CNF biocomposite film was prepared by using polyvinyl alcohol(PVA)as a matrix and Uncaria gambir extract as a filler.This study aims to investigate the effect of Uncaria gambir extract on the optical properties and thermal stability of the produced film.The formation of the CNF biocomposite films was confirmed using Fourier Transform Infrared Spectroscopy,their transmittance characteristics were measured using UV-Vis spectroscopy and a transmittance meter,while their reflectance was determined using a reflectance meter.The results revealed that the addition of Uncaria gambir extract to the CNF biocomposite film improved its UV-shielding properties,as indicated by the lower percentage of transmittance in the visible region,10%–70%.In addition,its reflectance increased to 10.6%compared to the CNF film without the addition of Uncaria gambir extract.Furthermore,the thermal stability of the CNF biocomposite film with the addition of Uncaria gambir extract improved to around 400℃–500℃.In conclusion,the results showed that CNF biocomposite film prepared by adding Uncaria gambir extract can be a promising candidate for optical and thermal management materials. 展开更多
关键词 cellulose nanofiber biocomposite film optical properties Uncaria gambir thermal stability
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KGM/CNF-不锈钢网油水分离材料的制备及其油水分离性能研究
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作者 刘磊 陈浩然 +2 位作者 王思佳 汪源浩 谭凤芝 《表面技术》 EI CAS CSCD 北大核心 2024年第14期199-206,215,共9页
目的在KGM/CNF包覆不锈钢网表面制备超亲水、水下超疏油功能材料,实现油水体系的分离。方法采用溶液浸泡法在不锈钢网上沉积魔芋葡甘聚糖(Konjac Gluco Mannan,KGM)/纤维素纳米纤维(CelluloseNanoFiber,CNF),构造超亲水/水下超疏油表面... 目的在KGM/CNF包覆不锈钢网表面制备超亲水、水下超疏油功能材料,实现油水体系的分离。方法采用溶液浸泡法在不锈钢网上沉积魔芋葡甘聚糖(Konjac Gluco Mannan,KGM)/纤维素纳米纤维(CelluloseNanoFiber,CNF),构造超亲水/水下超疏油表面。通过加热使KGM脱乙酰化、KGM/CNF分子间氢键重构、CNF在材料表面重新排布,制备了KGM/CNF-不锈钢网油水分离材料;利用扫描电镜、傅里叶变换红外光谱仪、X射线衍射仪和界面接触角对油水分离材料的表面形貌及物化性质进行了表征和研究,采用红外测油仪研究了油水分离性能。结果KGM/CNF-不锈钢网油水分离材料在空气中具有优异的超亲水性(WCA=0°)和水下超疏油性能(OCA≥151°)。通过油水分离性能研究发现,KGM/CNF-不锈钢网油水分离材料在自身重力下可以对大豆油、汽油等不同油水混合物进行高效分离,对油水混合物的分离效率可达97.40%,分离通量为1236.75L/(m^(2)·h)。结论KGM/CNF-不锈钢网油水分离材料以不锈钢网为载体,弥补了力学强度差的缺点,具有优异的油水分离性能以及良好的耐腐蚀性和循环使用性;该材料制备方法简单,制备过程绿色环保、成本低,在油水体系的分离中具有较好的潜在应用前景。 展开更多
关键词 油水分离 不锈钢网 接触角 魔芋葡甘聚糖 纤维素纳米纤维
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PVA/CNF@CuS近红外隔热膜的制备及性能
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作者 裴海燕 鲁佳丽 潘玮 《塑料工业》 CAS CSCD 北大核心 2023年第3期184-189,共6页
将具有近红外吸收能力的硫化铜(CuS)负载在具有高强度的纳米纤维素(CNF)上,得到CNF@CuS复合物,然后将CNF@CuS添加到聚乙烯醇(PVA)基体中,制备高强度和良好隔热性能于一体的PVA/CNF@CuS近红外隔热膜。通过扫描电镜、X射线衍射仪、傅里叶... 将具有近红外吸收能力的硫化铜(CuS)负载在具有高强度的纳米纤维素(CNF)上,得到CNF@CuS复合物,然后将CNF@CuS添加到聚乙烯醇(PVA)基体中,制备高强度和良好隔热性能于一体的PVA/CNF@CuS近红外隔热膜。通过扫描电镜、X射线衍射仪、傅里叶变换红外光谱仪、紫外-可见光谱仪、拉伸性能测试及隔热性能测试等对其进行结构表征及性能测试。结果表明:CNF@CuS与PVA基体具有良好的界面相容性,CNF@CuS与PVA的质量比为2∶100时,复合膜的拉伸强度由纯PVA的34.5 MPa增加到72.9 MPa,同时复合膜可以透过大部分可见光并对近红外光具有良好的屏蔽效果,且具有良好的隔热性能。 展开更多
关键词 聚乙烯醇 硫化铜 纳米纤维素 纳米纤维素@硫化铜 近红外隔热膜
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Tensile Properties of Mechanically-Defibrated Cellulose Nanofiber-Reinforced Polylactic Acid Matrix Composites Fabricated by Fused Deposition Modeling 被引量:5
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作者 KURITA Hiroki BERNARD Chrystelle +1 位作者 LAVROVSKY Agathe NARITA Fumio 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第1期68-74,共7页
Biodegradable polymers are highly attractive as potential alternatives to petroleum-based polymers in an attempt to achieve carbon neutrality whilst maintaining the mechanical properties of the structures.Among these ... Biodegradable polymers are highly attractive as potential alternatives to petroleum-based polymers in an attempt to achieve carbon neutrality whilst maintaining the mechanical properties of the structures.Among these polymers,polylactic acid(PLA)is particularly promising due to its good mechanical properties,biocompatibility and thermoplasticity.In this work,we aim to enhance the mechanical properties of PLA using mechanically-defibrated cellulose nanofibers(CNFs)that exhibit remarkable mechanical properties and biodegradability.We also employ fused deposition modeling(FDM),one of the three-dimensional printing methods for thermoplastic polymers,for the low-cost fabrication of the products.Mechanically-defibrated CNF-reinforced PLA matrix composites are fabricated by FDM.Their tensile properties are investigated in two printing directions(0°/90°and+45°/-45°).The discussion about the relationship between printing direction and tensile behavoir of mechanically-defibrated CNF-reinforced PLA matrix composite is the unique point of this study.We further discuss the microstructure and fracture surface of mechanically-defibrated CNF-reinforced PLA matrix composite by scanning electron microscope. 展开更多
关键词 cellulose nanofiber(cnf) polylactic acid(PLA) tensile property fused deposition modeling
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ZIF-67@Cellulose nanofiber hybrid membrane with controlled porosity for use as Li-ion battery separator 被引量:6
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作者 Xiuxuan Sun Wangwang Xu +3 位作者 Xiuqiang Zhang Tingzhou Lei Sun-Young Lee Qinglin Wu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第1期170-180,I0006,共12页
Zeolitic imidazolate framework-67(ZIF-67) was synthesized on the surface of cellulose nanofibers(CNFs)in methonal to address the problems of unhomogeneous pore size and pore distribution of pure CNF membrane.A combina... Zeolitic imidazolate framework-67(ZIF-67) was synthesized on the surface of cellulose nanofibers(CNFs)in methonal to address the problems of unhomogeneous pore size and pore distribution of pure CNF membrane.A combination of Energy Dispersive X-Ray Spectroscopy(EDS),X-ray photoelectron spectroscopy(XPS) and X-ray powder diffraction(XRD) patterns were used to determine the successful synthesis of ZIF-67@CNFs.The size of the ZIF-67 particles and pore size of the ZIF-67@CNF membrane were50-200 nm and 150-350 nm, respectively.The prepared ZIF-67@CNF membrane exhibited excellent thermal stability,lower thermal shrinkage and high surface wettability.The discharge capacity retention of the Li-ion batteries(LIBs) made with ZIF-67@CNF,glass fiber(GF),CNF and commercial polymer membranes after 100 th cycle at 0.5 C rate were 88.41%,86.22%,83.27%,and 81.03%,respectively.LIBs with ZIF-67@CNF membrane exhibited a better rate capability than these with other membranes.No damage of porous structure or peel-off of ZIF-67 was observed in the SEM images of ZIF-67@CNF membrane after100 th cycle.The improved cycling performance,rate capability,and good electrochemical stability implied that ZIF-67@CNFs membrane can be considered as a good alternative LIB separator. 展开更多
关键词 cellulose nanofibers ZIF-67 Li-ion battery Membrane property Battery performance
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CoN_(x)C active sites-rich three-dimensional porous carbon nanofibers network derived from bacterial cellulose and bimetal-ZIFs as efficient multifunctional electrocatalyst for rechargeable Zn–air batteries 被引量:7
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作者 Wenming Zhang Jingjing Chu +2 位作者 Shifeng Li Yanan Li Ling Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第12期323-332,共10页
In this work, a CoNxC active sites-rich three-dimensional porous carbon nanofibers network derived from bacterial cellulose and bimetal-ZIFs is prepared via a nucleation growth strategy and a pyrolysis process.The mat... In this work, a CoNxC active sites-rich three-dimensional porous carbon nanofibers network derived from bacterial cellulose and bimetal-ZIFs is prepared via a nucleation growth strategy and a pyrolysis process.The material displays excellent electrocatalytic activity for the oxygen reduction reaction, reaching a high limiting diffusion current density of -7.8 mA cm^(-2), outperforming metal–organic frameworks derived multifunctional electrocatalysts, and oxygen evolution reaction and hydrogen evolution reaction with low overpotentials of 380 and 107 mV, respectively. When the electrochemical properties are further evaluated, the electrocatalyst as an air cathode for Zn-air batteries exhibits a high cycling stability for63 h as well as a maximum power density of 308 mW cm^(-2), which is better than those for most Zn-air batteries reported to date. In addition, a power density of 152 mW cm^(-2) is provided by the solid-state Zn-air batteries, and the cycling stability is outstanding for 24 h. The remarkable electrocatalytic properties are attributed to the synergistic effect of the 3 D porous carbon nanofibers network and abundant inserted CoNxC active sites, which enable the fast transmission of ions and mass and simultaneously provide a large contact area for the electrode/electrolyte. 展开更多
关键词 Bacterial cellulose Bimetal-ZIFs CoNxC active sites 3D nitrogen-doped porous carbon nanofiber Zn-air batteries
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Antibacterial Properties of Novel Bacterial Cellulose Nanofiber Containing Silver Nanoparticles 被引量:2
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作者 杨加志 刘晓丽 +1 位作者 黄立勇 孙东平 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第12期1419-1424,共6页
In this work,we describe a novel facile method to prepare long one-dimensional hybrid nanofibers by using hydrated bacterial cellulose nanofibers(BCF)as a template.Silver(Ag)nanoparticles with an average diameter of 1... In this work,we describe a novel facile method to prepare long one-dimensional hybrid nanofibers by using hydrated bacterial cellulose nanofibers(BCF)as a template.Silver(Ag)nanoparticles with an average diameter of 1.5 nm were well dispersed on BCF via a simple in situ chemical-reduction between AgNO3and NaBH4at a relatively low temperature.A growth mechanism is proposed that Ag nanoparticles are uniformly anchored onto BCF by coordination with BC-containing hydroxyl groups.The bare BCF and as-prepared Ag/BCF hybrid nanofibers were characterized by several techniques including transmission electron microscopy,X-ray diffraction,thermogravimetric analyses,and ultraviolet-visible(UV-Vis)absorption spectra.The antibacterial properties of Ag/BCF hybrid nanofibers against Escherichia coli(E.coli,Gram-negative)and Staphylococcu saureus(S.saureus,Gram-positive)bacteria were evaluated by using modified Kirby Bauer method and colony forming count method.The results show that Ag nanoparticles are well dispersed on BCF surface via in situ chemical-reduction.The Ag/BCF hybrid nanofiber presents strong antibacterial property and thus offers its candidature for use as functional antimicrobial agents. 展开更多
关键词 bacterial cellulose nanofiber antimicrobial agents SILVER
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In Situ Synthesis of Cuprous Oxide/Cellulose Nanofibers Gel and Antibacterial Properties 被引量:1
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作者 Ying Hu Qinfei Ke +2 位作者 Zhe Li Wanli Han Zhiyong Yan 《Computers, Materials & Continua》 SCIE EI 2018年第9期517-527,共11页
Cellulose nanofibers were synthesized by acetobacter xylinum(xylinum 1.1812).The cellulose nanofibers with 30-90 nm width constructed three-dimension network gel,which could be used as a wound dressing since it can pr... Cellulose nanofibers were synthesized by acetobacter xylinum(xylinum 1.1812).The cellulose nanofibers with 30-90 nm width constructed three-dimension network gel,which could be used as a wound dressing since it can provide moist environment to a wound.However,cellulose nanofibers have no antimicrobial activity to prevent wound infection.To achieve antimicrobial activity,the cellulose nanofibers can load cuprous oxide(Cu2O)particles on the surface.The cuprous oxide is a kind of safe antibacterial material.The copper ions can be reduced into cuprous oxides by reducing agents such as glucose,N2H4 and sodium hypophosphite.The cellulose nanofibers network gel was soaked in CuSO4 solution and filled with copper ions.The cuprous oxide nanoparticles were in situ synthesized by glucose and embedded in cellulose nanofibers network.The morphologies and structure of the composite gel were analyzed by FESEM,FTIR,WAXRD and inductively coupled plasma(ICP).The sizes of Cu2O embedded in cellulose nanofibers network are 200-500 nm wide.The peak at 605 cm−1 attributed to Cu(I)-O vibration of Cu2O shits to 611 cm−1 in the Cu2O/cellulose composite.The Cu2O/cellulose nanofibers composite reveals the obvious characteristic XRD pattern of Cu2O and the results of ICP show that the content of Cu2O in the composite is 13.1%.The antibacterial tests prove that the Cu2O/cellulose nanofibers composite has the high antibacterial activities which is higher against S.aureus than against E.coli. 展开更多
关键词 cellulose nanofiber cuprous oxide in SITU synthesis ANTIBACTERIAL
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Structural Properties and Potential Applications of Cellulose Nanofiber from Bamboo Shoot Shell 被引量:2
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作者 林柃敏 骆贤亮 +5 位作者 庞杰 王琦 严志明 庄玮婧 郑宝东 郑亚凤 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2017年第3期533-542,共10页
Bamboo shoot shell(BSS),a by-product from bamboo shoot processing industries,is a natural resource of cellulose. In this study,high-pressure homogenization assisted with acidolysis treatment was employed to produce ... Bamboo shoot shell(BSS),a by-product from bamboo shoot processing industries,is a natural resource of cellulose. In this study,high-pressure homogenization assisted with acidolysis treatment was employed to produce BSS cellulose nanofiber(CNF),and the structure was characterized by powder X-ray diffraction(XRD),Fourier-transform infrared(FT-IR) spectroscopy,atomic force microscopy(AFM),high resolution transmission electron microscopy(HTTEM),thermogravimetric analysis(TGA),and ^13 C nuclear magnetic resonance(NMR). Moreover,the structure and properties of CNF were compared with those of BSS insoluble dietary fiber(IDF). The results showed that CNF was in the form of a grid-like micro fiber,and its particle size was obviously reduced,while the crystallinity,thermal stability and solubility were increased. The results indicated that high-pressure homogenization assisted with acidolysis treatment was an effective method to prepare the BSS CNF,which could be a promising biopolymer reinforced material. 展开更多
关键词 bamboo shoot shell cellulose nanofiber structures and properties
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Octadecylamine Graft-modified Cellulose Nanofiber and Its Reinforcement to Poly(butylene adipate-co-terephthalate) Composites 被引量:3
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作者 Leilei Hou Jinghuan Chen Jingang Liu 《Paper And Biomaterials》 CAS 2022年第3期42-50,共9页
Biodegradable polymers such as poly(butylene adipate-coterephthalate)(PBAT)have attracted great interest as alternatives to traditional petroleum-based polymers.Nonetheless,it is necessary to improve some properties o... Biodegradable polymers such as poly(butylene adipate-coterephthalate)(PBAT)have attracted great interest as alternatives to traditional petroleum-based polymers.Nonetheless,it is necessary to improve some properties of PBAT,such as mechanical strength.Cellulose nanofiber(CNF)can improve PBAT mechanical strength,but its dispersion and compatibility in the PBAT matrix require further improvement.In this study,octadecylamine(ODA)was utilized to graft-modify CNF to change the fiberto-fiber interaction and improve its compatibility with the PBAT matrix.PBAT composites with 1 wt%CNF were prepared using a masterbatch premixing method to avoid CNF aggregation during extrusion.The effects of ODA graft modification on CNF properties were studied;varying degrees of CNF modification were investigated for their effect on PBAT properties.ODA-modified CNF(OCNF)/PBAT melt-extruded composites possessing 17.2%higher tensile strength than pure PBAT polymer were obtained without affecting the thermal stability of PBAT.As a result,surface modification of CNF with ODA is an effective strategy for improving CNF-PBAT compatibility. 展开更多
关键词 cellulose nanofiber OCTADECYLAMINE GLUTARALDEHYDE PBAT compatibility
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