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Preparation and Mechanical Properties of PAN/HNTs Composite Nanofibers 被引量:6
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作者 Liu Zan Qin Xixi +1 位作者 Qin Dunzhong Cheng Zhilin 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2017年第1期92-98,共7页
The enhanced composite nanofibers have attracted great attention for application in recent years. The electrospinning technique was considered to be a prospective production pattern for them. This paper provided a pro... The enhanced composite nanofibers have attracted great attention for application in recent years. The electrospinning technique was considered to be a prospective production pattern for them. This paper provided a promising technique to prepare the polyacrylonitrile (PAN)/halloysite nanotube (HNT) composite nanofbers by using the electrospinning method. The PAN/HNTs composite nanofbers with well enhanced performance were successfully fabricated from a mixture of PAN/DMF/HNTs dispersion solution processed by the electrospinning technique. For achieving good dispersion in PAN polymer, the highly dispersed HNTs were obtained by using polycarboxylate modifcation employing the in-situ spray-drying method. The structure and properties of the composite nanofbers were characterized by TEM, XRD, EDX, IR, and DSC techniques. The obtained PAN/HNTs composite nanofbers with different HNTs contents were about 300-500 nm in diameter. In addition, the mechanical properties of PAN/HNTs composite nanofbers were tested, which exhibited an excellently enhanced performance. 展开更多
关键词 PAN HNTs COMPOSITE nanofber ELECTROSPINNING
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Electrospinning of Neat Graphene Nanofbers 被引量:5
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作者 Zhanpo Han Jiaqing Wang +10 位作者 Senping Liu Qinghua Zhang Yingjun Liu Yeqiang Tan Shiyu Luo Fan Guo Jingyu Ma Peng Li Xin Ming Chao Gao Zhen Xu 《Advanced Fiber Materials》 SCIE CAS 2022年第2期268-279,共12页
Macroscopic assembly of graphene sheets has renovated the preparation of neat carbonaceous fbers with integrating high performance and superior functionalities,beyond the pyrolysis of conventional polymeric precursors... Macroscopic assembly of graphene sheets has renovated the preparation of neat carbonaceous fbers with integrating high performance and superior functionalities,beyond the pyrolysis of conventional polymeric precursors.To date,graphene microfbers by the liquid crystalline wet-spinning method have been established.However,how to reliably prepare continuous neat graphene nanofbers remains unknown.Here,we present the electrospinning of neat graphene nanofbers enabled by modulating colossally extensional fow state of graphene oxide liquid crystals.We use polymer with mega molecular weight as transient additives to realize the colossal extensional fow and electrospinning.The neat graphene nanofbers feature high electronic quality and crystallinity and exhibit high electrical conductivity of 2.02×10^(6) S/m that is to be comparable with single crystal graphite whisker.The electrospinning of graphene nanofbers was extended to prepare large-area fabric with high fexibility and superior specifc electrical/thermal conductivities.The electrospinning of graphene nanofbers opens the door to nanofbers of rich two-dimensional sheets and the neat graphene nanofbers may grow to be a new species after conventional carbonaceous nanofbers and whiskers in broad functional applications. 展开更多
关键词 ELECTROSPINNING Graphene nanofber Functional fabrics
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Advanced functional nanofibers:strategies to improve performance and expand functions
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作者 Xinyu Chen Honghao Cao +6 位作者 Yue He Qili Zhou Zhangcheng Li Wen Wang Yu He Guangming Tao Chong Hou 《Frontiers of Optoelectronics》 EI CSCD 2022年第4期125-143,共19页
Nanofbers have a wide range of applications in many felds such as energy generation and storage,environmental sensing and treatment,biomedical and health,thanks to their large specifc surface area,excellent fexibility... Nanofbers have a wide range of applications in many felds such as energy generation and storage,environmental sensing and treatment,biomedical and health,thanks to their large specifc surface area,excellent fexibility,and superior mechanical properties.With the expansion of application felds and the upgrade of application requirements,there is an inevitable trend of improving the performance and functions of nanofbers.Over the past few decades,numerous studies have demonstrated how nanofbers can be adapted to more complex needs through modifcations of their structures,materials,and assembly.Thus,it is necessary to systematically review the feld of nanofbers in which new ideas and technologies are emerging.Here we summarize the recent advanced strategies to improve the performances and expand the functions of nanofbers.We frst introduce the common methods of preparing nanofbers,then summarize the advances in the feld of nanofbers,especially up-to-date strategies for further enhancing their functionalities.We classify these strategies into three categories:design of nanofber structures,tuning of nanofber materials,and improvement of nanofbers assemblies.Finally,the optimization methods,materials,application areas,and fabrication methods are summarized,and existing challenges and future research directions are discussed.We hope this review can provide useful guidance for subsequent related work. 展开更多
关键词 Functional nanofber nanofber fabrication nanofber structure nanofber materials nanofber assembly
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新型高效低阻“纳米纤维嵌入式”复合滤料的制备 被引量:3
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作者 王一帆 钱晓明 《纺织导报》 CAS 2018年第1期59-62,共4页
以DMF为溶剂溶解PAN粉末,采用高压静电纺丝技术制备直径约为400 nm的PAN纳米纤维,以独特的结构复合,经针刺制成新型"纳米纤维嵌入式"复合滤料。结果表明,"纳米纤维嵌入式"复合滤料具有优异的过滤性能,尤其对于1~2μ... 以DMF为溶剂溶解PAN粉末,采用高压静电纺丝技术制备直径约为400 nm的PAN纳米纤维,以独特的结构复合,经针刺制成新型"纳米纤维嵌入式"复合滤料。结果表明,"纳米纤维嵌入式"复合滤料具有优异的过滤性能,尤其对于1~2μm及以下的超微粒子具有极大的过滤潜能。 展开更多
关键词 纳米纤维 嵌入式 静电纺 过滤效率 压力损失
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自组装多肽的合成,多肽自组装成纳米纤维凝胶及其与珊瑚,BMP-2组成复合材料--结构观察与展望 被引量:2
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作者 陈辰 《中国医疗器械信息》 2016年第6X期15-18,共4页
目的:合成含有连接蛋白核心序列Link N的多肽两亲性分子RADA16,研究其自组装形成凝胶支架的超微结构。将RADA16,珊瑚和BMP-2组成复合材料体系,研究其超微结构。方法:将RADA16溶解于10%无菌蔗糖溶液中,浓度为1%(10mg/ml,m/v),将RADA16用... 目的:合成含有连接蛋白核心序列Link N的多肽两亲性分子RADA16,研究其自组装形成凝胶支架的超微结构。将RADA16,珊瑚和BMP-2组成复合材料体系,研究其超微结构。方法:将RADA16溶解于10%无菌蔗糖溶液中,浓度为1%(10mg/ml,m/v),将RADA16用等体积细胞培养基DMEM/F12溶液触发多肽自组装,扫描电镜。将RADA16与BMP-2溶液等比例混合(1:1),再将其浸没珊瑚,并用等体积细胞培养基DMEM/F12溶液触发多肽自组装,扫描电镜检测。结果:成功合成RADA16多肽两亲性分子,多肽溶液RADA16混合自组装形成凝胶。原子力显微镜检测显示:RADA16自组装形成纳米纤维,直径大于31.9士3.8nm,长度可达到几微米。扫描电镜显示:RADA16自组装形成片层与网状结构。RADA16附着于珊瑚孔隙中,BMP-2粘附于多肽上,成功合成复合材料体系(自组装多肽,珊瑚,BMP-2)。结论:多肽RADA16在特定的条件下可以自组装形成纳米级凝胶支架(RADARADARADARADARADA),复合材料体系(自组装多肽,珊瑚,BMP-2)可以作为骨折修复组织工程的生物支架材料。 展开更多
关键词 珊瑚 多肽 BMP-2 自组装 纳米纤维 凝胶 支架
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The Critical Roles of the Gas Flow in Fabricating Polymer Nanofbers:A Mini‑review
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作者 Chao Zhang Mingjun Chen +2 位作者 Haoyi Li Weimin Yang Jing Tan 《Advanced Fiber Materials》 SCIE CAS 2022年第2期162-170,共9页
Polymer nanofbers attract more and more attention from academia and industry continuously due to their desirable properties,including high specifc surface area,high porosity,and numerous chemically-active surface grou... Polymer nanofbers attract more and more attention from academia and industry continuously due to their desirable properties,including high specifc surface area,high porosity,and numerous chemically-active surface groups on the fber surface.Gas fow was widely adopted to fabricate nanofbers such as solution blown,melt blown,gas fow-assisted melt electrospinning,and bubble electrospinning.However,a comprehensive review covered the roles that gas fow played in fabricating nanofbers,and their mechanism has not been analysed yet.This review classifes the roles of gas fow into jet initialization,jet stretching,increasing production,surface modifcation,and inhibition of thermal degradation,to deepen the understanding of gas fow during nanofber preparation.The mechanism of gas fows in the above felds is reviewed in detail. 展开更多
关键词 Gas fow nanofber ELECTROSPINNING
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Multi‑compartment Organ‑on‑a‑Chip Based on Electrospun Nanofber Membrane as In Vitro Jaundice Disease Model 被引量:1
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作者 Fan Lei Minhua Liang +3 位作者 Yang Liu Hanhao Huang Haofei Li Hua Dong 《Advanced Fiber Materials》 SCIE CAS 2021年第6期383-393,共11页
Organ-on-a-chip(OOC)is now becoming a potential alternative to the classical preclinical animal models,which reconstitutes in vitro the basic function of specifc human tissues/organs and dynamically simulates physiolo... Organ-on-a-chip(OOC)is now becoming a potential alternative to the classical preclinical animal models,which reconstitutes in vitro the basic function of specifc human tissues/organs and dynamically simulates physiological or pathological activities in tissue and organ level.Despite of the much progress achieved so far,there is still an urgent need to explore new biomaterials to construct a reliable and efcient tissue-tissue interface and a general fabrication strategy to expand from single-organ OOC to multi-organ OOC in an easy manner.In this paper,we propose a novel strategy to prepare doublecompartment organ-on-a-chip(DC-OOC)using electrospun poly(l-lactic acid)/collagen I(PLLA/Col I)nanofber membrane as tissue-tissue interface.The unique features of PLLA/Col I nanofber membrane like excellent biocompatibility,strong afnity to multiple cells,adjustable orientation,controllable thickness and porosity endow the tissue-tissue interface with excellent semi-permeability,appropriate mechanical support,inducible cell orientation,good cell adhesion and proliferation.The integration of 3D printing technology during the fabrication process enables precise size control of the tissue-tissue interface and stable bonding with microfuidic channels.More importantly,our fabrication strategy and OOC confguration makes it easy to extend from DC-OOC to multi-compartment organ-on-a-chip(MC-OOC).To show its possible application,in vitro jaundice disease model is established by constructing blood vessel/skin/liver/lung organ-on-a-chip via MC-OOC.The downward trends of the cell viability after perfusion of bilirubin,the variation in cell sensitivity to bilirubin for diferent type of cells and recovery of cell viability after blue light therapy prove the feasibility of this jaundice disease model.We believe this general strategy of constructing tissue-tissue interface and multi-organ OOC can be used for many other in vitro physiological and pathological models. 展开更多
关键词 Multi-compartment organ-on-a-chip Electrospun nanofber Tissue–tissue interface 3D printing Jaundice disease
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Characterization of TEMPO-oxidized chitin nanofbers with various oxidation times and its application as an enzyme immobilization support
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作者 Rui Chen Wen-Can Huang +1 位作者 Wei Wang Xiangzhao Mao 《Marine Life Science & Technology》 2021年第1期85-93,共9页
Chitin nanofbers have recently received increased attention and are considered to be a promising material for a wide range of applications because of their excellent characteristics.In this study,2,2,6,6-tetramethylpi... Chitin nanofbers have recently received increased attention and are considered to be a promising material for a wide range of applications because of their excellent characteristics.In this study,2,2,6,6-tetramethylpiperidine-1-oxyl(TEMPO)-oxidized chitin nanofbers(CNFs)with various oxidation times were prepared and characterized.CNFs with diferent oxidation times were then utilized for enzyme immobilization,using chymotrypsin as a model enzyme.The efects of oxidation time on enzyme immobilization were explored.Results showed characteristics of chitin nanofbers can be controlled by adjusting oxidation time.CNFs treated with TEMPO for 360 min showed the lowest crystallinity(79.13±1.43%),the shortest length(241.70±74.61 nm),the largest width(12.67±3.43 nm),and the highest transmittance(73.01%at 800 nm).The activity of immobilized enzymes and enzyme loading showed good correlation to the carboxylate content of CNFs.The enzyme efciency based on CNFs and the content of carboxylate groups peaked at the oxidization time of 60 min.When the additional amount of chymotrypsins(CTs)was 500 or 2000 mg/g carrier,the highest loading amount of CTs was 307.17±4.08 or 726.82±12.05 mg/g carrier,respectively. 展开更多
关键词 CHITIN nanofber CHYMOTRYPSIN IMMOBILIZATION
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A Multifunctional Airfow Sensor Enabled by Optical Micro/nanofber 被引量:4
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作者 Zhang Zhang Yuran Kang +7 位作者 Ni Yao Jing Pan Wen Yu Yao Tang Yue Xu Liqiang Wang Lei Zhang Limin Tong 《Advanced Fiber Materials》 SCIE CAS 2021年第6期359-367,共9页
Fiber-optic anemometers have attracted an increasing attention over the past decade owing to their high sensitivity,wide dynamic range,low power consumption,and immunity to electromagnetic interference.However,expensi... Fiber-optic anemometers have attracted an increasing attention over the past decade owing to their high sensitivity,wide dynamic range,low power consumption,and immunity to electromagnetic interference.However,expensive instruments may limit their practical applications.Herein,a new type of airfow sensor based on optical micro/nanofber(MNF)is proposed and realized.The sensing element is a fexible polydimethylsiloxane(PDMS)cantilever embedded with a U-shaped MNF.Upon exposure to airfow,the induced defection of the cantilever results in a bending-dependent transmittance variation of the embedded MNF.The performance of the sensor can be engineered by tuning the cantilever thickness and/or the MNF diameter.When four cantilevers are arranged in two orthogonal directions,the transmittance of each cantilever will be dependent on both fow speed and direction.By analysing the output signals of the four cantilevers,omnidirectional airfow with fow speed within 15 m/s were experimentally measured.In addition,a variety of voice and respiratory signals can be monitored and distinguished in real-time using an optimized cantilever with a resolution of 0.012 m/s,presenting great potential for health monitoring applications. 展开更多
关键词 Optical micro/nanofber Airfow sensor ANEMOMETER Wearable sensor
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功能性纳米纤维在个体防护服装上的应用 被引量:2
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作者 芦长椿 《纺织导报》 CAS 北大核心 2017年第B10期52-56,共5页
多功能纳米纤维,既有纳米材料的特性也增添了诸如阻燃性、对机械性危害和生物/化学制剂的防护功能,用其制作的个体防护服装,具有轻质、低成本、无毒性、透气和穿着舒适等特点。本文简要介绍了功能性纳米纤维的技术特征及其在个体防护服... 多功能纳米纤维,既有纳米材料的特性也增添了诸如阻燃性、对机械性危害和生物/化学制剂的防护功能,用其制作的个体防护服装,具有轻质、低成本、无毒性、透气和穿着舒适等特点。本文简要介绍了功能性纳米纤维的技术特征及其在个体防护服装上的应用研究现状,并就国内外在这一领域的差距进行了详细解读。 展开更多
关键词 功能性纳米纤维 碳纳米管 个体防护服装 个体防护装备 芳香族聚酰胺纤维
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碱性白炭黑/NBR/HNBR复合材料在车用耐油胶管中的应用研究 被引量:1
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作者 赵桂英 王忠光 +3 位作者 徐彦红 李敬伟 於舜尧 李牧聪 《橡塑技术与装备》 CAS 2018年第19期12-16,共5页
以丁腈橡胶(NBR)为主体材料,氢化丁腈(HNBR)为改性剂,选用NBR/HNBR并用比为80/20,研究了新型材料碱性白炭黑、超细滑石粉、纳米纤维粉等对并用胶性能的影响。结果表明,碱性白炭黑胶料的伸长率最大,其拉伸强度、撕裂强度稍小于N550胶料,... 以丁腈橡胶(NBR)为主体材料,氢化丁腈(HNBR)为改性剂,选用NBR/HNBR并用比为80/20,研究了新型材料碱性白炭黑、超细滑石粉、纳米纤维粉等对并用胶性能的影响。结果表明,碱性白炭黑胶料的伸长率最大,其拉伸强度、撕裂强度稍小于N550胶料,但明显大于超细滑石粉、纳米纤维粉;老化后拉伸强度变化率为+11%,伸长率变化率为-7.3%,硬度变化值为+4邵A,压缩永久变形为20.4%;经高温耐油后,拉伸强度、伸长率及体积变化率分别为+0.6%、-12.5%、-2.91%;胶料的各项物性远高于耐油胶管内层胶的性能指标,同时在优化成本,降低混炼能耗,减少环境污染等方面具有明显的优势。 展开更多
关键词 耐油胶管 NBR/HNBR 碱性白炭黑 纳米纤维粉 性能
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MnO/碳纳米纤维复合结构的制备及其储锂性能研究
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作者 蒋嘉琳 马超 +2 位作者 王婷 杨洋 杨刚 《常熟理工学院学报》 2017年第4期22-24,共3页
MnO负极材料由于其比容量高、资源丰富、成本低而备受关注.然而,在脱锂/嵌锂过程中,体积变化大(>170%)仍然是MnO材料面临的严重问题,导致其倍率性能差,容量衰减快.在碳纳米纤维(CNF)网络中生长均匀的MnO晶体,CNF的束缚作用可以有效... MnO负极材料由于其比容量高、资源丰富、成本低而备受关注.然而,在脱锂/嵌锂过程中,体积变化大(>170%)仍然是MnO材料面临的严重问题,导致其倍率性能差,容量衰减快.在碳纳米纤维(CNF)网络中生长均匀的MnO晶体,CNF的束缚作用可以有效地减小MnO在循环过程中的体积变化.本文设计并合成了CNF/MnO柔性锂离子电池电极,碳纳米纤维在锂离子脱出/嵌入过程中发挥导电通道的作用,并且弹性束缚MnO纳米颗粒.当电流密度为0.2 A·g^(-1)和1 A·g^(-1)时,CNF/MnO作为无粘合剂的负极,在第100次循环后比容量分别保持在983.8 mAh·g^(-1)和600 mAh·g^(-1),远高于纯MnO和纯CNF负极.该工作为高可逆锂储存装置中具有潜在应用价值的CNF/MnO新型柔性无粘合剂负极提供了一种简便且可扩展的合成方法. 展开更多
关键词 碳纳米纤维 负极材料 锂离子电池
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Advances in Biosensing and Environmental Monitoring Based on Electrospun Nanofbers 被引量:4
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作者 Shixiong Kang Kun Zhao +2 位作者 Deng‑Guang Yu Xiaolu Zheng Caoxing Huang 《Advanced Fiber Materials》 SCIE CAS 2022年第3期404-435,共32页
Electrospun nanofbers(NFs)are directly produced by electrospinning technology.They are useful in a series of applications such as excellent performance in biosensing and environmental monitoring,due to their large spe... Electrospun nanofbers(NFs)are directly produced by electrospinning technology.They are useful in a series of applications such as excellent performance in biosensing and environmental monitoring,due to their large specifc surface area and high porosity.The wide range of materials used provide a solid foundation and core guarantee for electrospun NFs to sense,which are used in a variety of polymers,small molecules,colloidal particles,and composites.Biosensing primarily aims at small biomolecules,biomacromolecules,wearable human motion monitoring,and food safety testing.Environmental monitoring encompasses the detection of gases,humidity,volatile organic compounds,and monitoring the degradation of heavy metal ions.We aim to sort out some recent research for electrospun NFs in the sensing area,which may inspire emerging smart sensing devices and bring a novel approach for biomedical development and environmental remediation.We highlight the powerful applications of electrospun NFs in the rapidly growing feld of wearable electronic devices,which may spur the industry’s novel perspectives on the development of wearables.Finally,we point out some unresolved difculties in the sensing feld for electrospun NFs and propose possible and novel ideas for this development. 展开更多
关键词 BIOSENSING Environmental monitoring SENSORS Wearables Electrospun nanofbers
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Diameter Refnement of Electrospun Nanofbers:From Mechanism,Strategies to Applications 被引量:2
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作者 Xian Wen Jian Xiong +2 位作者 Sailing Lei Liming Wang Xiaohong Qin 《Advanced Fiber Materials》 SCIE CAS 2022年第2期145-161,共17页
Electrospinning has drawn wide attention for its powerful capacity to produce ultrafne nanofbers(UNFs)from various materials.These UNFs demonstrated signifcantly enhanced performance,such as ultra-high surface area,mo... Electrospinning has drawn wide attention for its powerful capacity to produce ultrafne nanofbers(UNFs)from various materials.These UNFs demonstrated signifcantly enhanced performance,such as ultra-high surface area,more porosity and stronger mechanical properties.Here,we comprehensively review their basic principles,state-of-the-art methods and preponderant applications.We begin with a brief introduction to the refnement theory of polymer jets,followed by discussion of factors afecting fber refnement.We then discuss the refning strategies from the aspects of solution properties,spinning parameters,auxiliary force and post-treatment.Afterward,we highlight the most relevant and recent applications associated with the remarkable features of UNFs,including fltration materials,supercapacitors,biomedical materials and other applications.At the end,we ofer perspectives on the challenges,opportunities,and new directions for future development of electrospun UNFs. 展开更多
关键词 ELECTROSPINNING Diameter refnement Ultrafne nanofbers PRINCIPLES APPLICATIONS
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Polyacrylonitrile Nanofber‑Reinforced Flexible Single‑Ion Conducting Polymer Electrolyte for High‑Performance,Room‑Temperature All‑Solid‑State Li‑Metal Batteries 被引量:2
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作者 Hui Cheng Chaoyi Yan +4 位作者 Raphael Orenstein Mahmut Dirican Shuzhen Wei Nakarin Subjalearndee Xiangwu Zhang 《Advanced Fiber Materials》 SCIE CAS 2022年第3期532-546,共15页
Single-ion conducting polymer electrolytes(SIPEs)can be formed by anchoring charge delocalized anions on the side chains of a crosslinked polymer matrix,thereby eliminating the severe concentration polarization efect ... Single-ion conducting polymer electrolytes(SIPEs)can be formed by anchoring charge delocalized anions on the side chains of a crosslinked polymer matrix,thereby eliminating the severe concentration polarization efect in conventional dual-ion polymer electrolytes.Addition of a plasticizer into the polymer matrix confers advantages of both liquid and solid electrolytes.However,plasticized SIPEs usually face a trade-of between conductivity and mechanical strength.With insufcient strength,potentially there is short-circuiting failure during cycling.To address this challenge,a simple and mechanicallyrobust SIPE was developed by crosslinking monomer lithium(4-styrenesulfonyl)(trifuoromethylsulfonyl)imide(LiSTFSI)and crosslinker poly(ethylene glycol)diacrylate(PEGDA),with plasticizer propylene carbonate(PC),on electrospun polyacrylonitrile nanofbers(PAN-NFs).The well-fabricated polymer matrix provided fast and efective Li^(+) conductive pathways with a remarkable ionic conductivity of 8.09×10^(-4) S cm^(−1) and a superior lithium-ion transference number close to unity(t_(Li+)=0.92).The introduction of PAN-NFs not only improved the mechanical strength and fexibility but also endowed the plasticized SIPE with a wide electrochemical stability window(4.9 V vs.Li^(+)/Li)and better cycling stability.Superior longterm lithium cycling stability and dynamic interfacial compatibility were demonstrated by lithium symmetric cell testing.Most importantly,the assembled all-solid-state Li metal batteries showed stable cycling performance and remarkable rate capability both in low and high current densities.Therefore,this straightforward and mechanically reinforced SIPE exhibits great potential in the development of advanced all-solid-state Li-metal batteries. 展开更多
关键词 Single-ion conducting polymer electrolyte Electrospun nanofbers Mechanical properties All-solid-state batteries Rate capability
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Physicochemical and in Vitro Antibacterial Evaluation of Metronidazole Loaded Eudragit S‑100 Nanofbrous Mats for the Intestinal Drug Delivery 被引量:1
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作者 Priyanka Prakash Rade Prabhanjan Shridhar Giram +2 位作者 Ajinkya A.Shitole Neeti Sharma Baijayantimala Garnaik 《Advanced Fiber Materials》 SCIE CAS 2022年第1期76-88,共13页
Metronidazole(MTZ)loaded Eudragit S-100(ES-100)nonwoven nanofbrous mats were successfully electrospun and evaluated for intestinal drug delivery.MTZ was varied in the range of 1–15%(w/w)in ES-100 nanofbrous mats,the ... Metronidazole(MTZ)loaded Eudragit S-100(ES-100)nonwoven nanofbrous mats were successfully electrospun and evaluated for intestinal drug delivery.MTZ was varied in the range of 1–15%(w/w)in ES-100 nanofbrous mats,the morphological characterization of nanofbrous mats was carried out using FE-SEM and the average diameter of nanofber was found in the range 150–600 nm.WAXD and DSC demonstrated the amorphous nature of MTZ in ES-100 nanofbrous mats.Their contact angle analysis confrmed the hydrophobic nature.The mechanical strength of ES-100 nanofbrous mats decreased with increasing MTZ concentration.The drug release profles showed 74%MTZ release from ES-100d within 2 h at pH 6.8 which is the colonic environment.Antibacterial activities against gram-positive bacteria(Staphylococcus aureus)and gramnegative bacteria(Escherichia coli)showed that the ES-100 nanofbrous mats loaded with MTZ exhibited good activity. 展开更多
关键词 ES-100 METRONIDAZOLE nanofbers Antibacterial Intestinal drug delivery
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碳纳米管/聚丙烯腈纳米纤维的制备
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作者 张文晶 彭宁 +3 位作者 陆巍 陈玉龙 李万鹏 白续铎 《科技创新导报》 2010年第29期20-21,共2页
本文通过接枝共聚合方法合成了多壁碳纳米管/聚丙烯腈(MWCNTs/PAN)接枝共聚物,然后用静电纺丝装置对MWCNTs/PAN的二甲基甲酰胺(DMF)溶液进行电纺。重点研究了反应物配比、浓度、电压参数对电纺MWCNTs/PAN纳米纤维的影响。讨论了纳米纤... 本文通过接枝共聚合方法合成了多壁碳纳米管/聚丙烯腈(MWCNTs/PAN)接枝共聚物,然后用静电纺丝装置对MWCNTs/PAN的二甲基甲酰胺(DMF)溶液进行电纺。重点研究了反应物配比、浓度、电压参数对电纺MWCNTs/PAN纳米纤维的影响。讨论了纳米纤维平均直径及直径分布的影响因素。 展开更多
关键词 多壁碳纳米管 聚丙烯腈 静电纺丝 纳米纤维 直径
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Engineered Spindles of Little Molecules Around Electrospun Nanofbers for Biphasic Drug Release
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作者 Hua He Mian Wu +3 位作者 Jingwen Zhu Yaoyao Yang Ruiliang Ge Deng‑Guang Yu 《Advanced Fiber Materials》 SCIE CAS 2022年第2期305-317,共13页
Biphasic drug release is a popular advanced drug controlled release profle that has been drawing increasing attention from many felds.Electrospun nanofbers and their derivatives can be act as a strong platform for dev... Biphasic drug release is a popular advanced drug controlled release profle that has been drawing increasing attention from many felds.Electrospun nanofbers and their derivatives can be act as a strong platform for developing biphasic release dosage forms.In this study,a modifed coaxial electrospinning was implemented,in which little molecule solutions that contain a drug ibuprofen(IBU)and polyethylene glycol(PEG)were exploited as a sheath fuid to surround the core solutions composed of polymer ethyl cellulose(EC)and IBU.The prepared nanofber-based structural hybrids,i.e.,engineered spindles-on-astring(SOS)products,were successfully created and subjected to a series of characterizations.Scanning electron microscopy and transmission electron microscopy results showed the engineered SOS structures.IBU and the carriers EC and PEG had good compatibility,as suggested by X-ray difraction and Fourier transform infrared spectroscopy assessments.In vitro dissolution tests verifed that the SOS products were able to provide a typical biphasic release profle,releasing 40%of the loaded IBU within 1 h in an immediate manner in the frst phase,and the rest of the IBU in a sustained manner in the second phase.A combined mechanism of erosion and difusion is proposed for manipulating the IBU molecule release behaviors. 展开更多
关键词 nanofbers SPINDLES Modifed coaxial electrospinning Biphasic release Poorly water-soluble drug
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