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Review on current development of polybenzimidazole membrane for lithium battery
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作者 Yonggui Deng Arshad Hussain +3 位作者 Waseem Raza Xingke Cai Dongqing Liu Jun Shen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第4期579-608,共30页
With the rapid development of portable technology,lithium batteries have emerged as potential candidates for high-performance energy storage systems owing to their high energy density and cycling stability.Among the k... With the rapid development of portable technology,lithium batteries have emerged as potential candidates for high-performance energy storage systems owing to their high energy density and cycling stability.Among the key components of a lithium battery system,the separator plays a critical role as it directly influences the battery performance benchmark(cycling performance and safety).However,traditional polyolefin separators(polypropylene/polyethylene)are unable to meet the demands of highperformance and safer battery systems due to their poor electrolyte compatibility,thermal runaways,and ultimate growth of dendrites.In contrast,membranes fabricated using polybenzimidazole(PBI)exhibit excellent electrolyte wettability and outstanding thermal dimensional stability,thus holding great potential as separators for high-performance and high-safety batteries.In this paper,we present a comprehensive review of the general requirements for separators,synthesis technology for separators,and research trends focusing PBI membranes in lithium batteries to alleviate the current commercial challenges faced by conventional polyolefin separators.In addition,we discuss the future development direction for PBI battery separators by considering various factors such as production cost,ecological footprint,preparation technology,and battery component compatibility.By exploring these perspectives,we aim to promote the continued application and exploration of PBI-based materials to advance lithium battery technology. 展开更多
关键词 Lithium batteries SEPARATORS Porous separators polybenzimidazole Membrane
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Gel-state polybenzimidazole proton exchange membranes with flexible alkyl sulfonic acid side chains for a wider operating temperature range(25–240 ℃) 被引量:1
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作者 Taizhong Zhu Danyi Zhu +3 位作者 Jiazhen Liang Liang Zhang Fei Huang Lixin Xue 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第10期91-101,I0005,共12页
High-temperature proton exchange membrane fuel cells(HT-PEMFC) possess distinct technical advantages of high output power, simplified water/heat management, increased tolerance to fuel impurities and diverse fuel sour... High-temperature proton exchange membrane fuel cells(HT-PEMFC) possess distinct technical advantages of high output power, simplified water/heat management, increased tolerance to fuel impurities and diverse fuel sources, within the temperature range of 120–200 ℃. However, for practical automobile applications, it was crucial to broaden their low-temperature operating window and enable cold start-up capability. Herein, gel-state phosphoric acid(PA) doped sulfonated polybenzimidazole(PBI) proton exchange membranes(PEMs) were designed and synthesized via PPA sol-gel process and in-situ sultone ring-opening reactions with various proton transport pathways based on absorbed PA, flexible alkyl chain connected sulfonic acid groups and imidazole sites. The effects of flexible alkyl sulfonic acid side chain length and content on PA doping level, proton conductivity, and membrane stability under different temperature and relative humidity(RH) were thoroughly investigated. The prepared gel-state membranes contained a self-assembled lamellar and porous structure that facilitated the absorption of a large amount of PA with rapid proton transporting mechanisms. At room temperature, the optimized membrane exhibited a proton conductivity of 0.069 S cm^(-1), which was further increased to 0.162 and 0.358 S cm^(-1)at 80 and 200 ℃, respectively, without additional humidification. The most significant contribution of this work was demonstrating the feasibility of gel-state sulfonated PBI membranes in expanding HT-PEMFC application opportunities over a wider operating range of 25 to 240 ℃. 展开更多
关键词 Wide temperature range Proton exchange membrane Fuel cell Gel-state polybenzimidazole
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A new long-side-chain sulfonated poly(2,6-dimethyl-1,4-phenylene oxide)(PPO)/polybenzimidazole(PBI)amphoteric membrane for vanadium redox flow battery 被引量:3
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作者 Bowen Jiang Lei Hu +5 位作者 Xiaoming Yan Jiahui Sun Li Gao Yan Dai Xuehua Ruan Gaohong He 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第7期1918-1924,共7页
A new amphoteric membrane was prepared by blending long-side-chain sulfonated poly(2,6-dimethyl-1,4-phenylene oxide)(S-L-PPO)and polybenzimidazole(PBI)for vanadium redox flow battery(VRFB)application.An acid-base pair... A new amphoteric membrane was prepared by blending long-side-chain sulfonated poly(2,6-dimethyl-1,4-phenylene oxide)(S-L-PPO)and polybenzimidazole(PBI)for vanadium redox flow battery(VRFB)application.An acid-base pair structure formed between the imidazole of PBI and sulfonic acid of S-L-PPO resulted in lowered swelling ratio.It favors to reduce the vanadium permeation.While,the increased sulfonic acid concentration ensured that proton conductivity was still at a high level.As a result,a better balance between the vanadium ion permeation(6.1×10^-9 cm^2·s^-1)and proton conductivity(50.8 m S·cm^-1)in the S-L-PPO/PBI-10%membrane was achieved.The VRFB performance with S-L-PPO/PBI-10%membrane exhibited an EE of 82.7%,which was higher than those of pristine S-L-PPO(81.8%)and Nafion 212(78.0%)at 120 m A·cm^-2.In addition,the S-LPPO/PBI-10%membrane had a much longer self-discharge duration time(142 h)than that of Nafion 212(23 h). 展开更多
关键词 Amphoteric membrane Poly(2 6-dimethyl-1 4-phenylene oxide)(PPO) Vanadium redox flow battery polybenzimidazole(pbi) Long side chain
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醚氧-烷基间隔三离子侧链型PBI碱性膜研究
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作者 杨睿祯 陈婉婷 +3 位作者 王小舟 崔福军 贺高红 吴雪梅 《现代化工》 CAS CSCD 北大核心 2024年第3期97-102,109,共7页
基于侧链接枝改性合成了一系列具有醚氧-烷基-醚氧链段间隔分布的三阳离子侧链型聚苯并咪唑膜(oat-PBI-x)。侧链中两段柔性的含醚链段有助于亲水通道和氢键网络的形成,促进OH-快速传递,而己烷基间隔段可打破侧链全亲水属性,有效抑制膜... 基于侧链接枝改性合成了一系列具有醚氧-烷基-醚氧链段间隔分布的三阳离子侧链型聚苯并咪唑膜(oat-PBI-x)。侧链中两段柔性的含醚链段有助于亲水通道和氢键网络的形成,促进OH-快速传递,而己烷基间隔段可打破侧链全亲水属性,有效抑制膜过度溶胀。在IEC为1.40 mmol/g时膜的综合性能达到最佳。80℃时电导率为144.4 mS/cm,拉伸强度保持在21 MPa,在80℃、1 mol/L KOH溶液中浸泡900 h后电导率保留率为91.7%。将其应用于H_(2)/O_(2)燃料电池,可在1549 mA/cm^(2)的高电流密度下达到611 mW/cm^(2)的峰值功率密度。 展开更多
关键词 阴离子交换膜 聚苯并咪唑 多阳离子侧链 醚氧键 燃料电池
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Sulfonated polybenzimidazole/amine functionalized titanium dioxide(s PBI/AFT) composite electrolyte membranes for high temperature proton exchange membrane fuel cells usage 被引量:4
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作者 Muhammad AImran Tiantian Li +3 位作者 Xuemei Wu Xiaoming Yan Abdul-Sammed Khan Gaohong He 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第9期2425-2437,共13页
The novel sulfonated polybenzimidazole(sPBI)/amine functionalized titanium dioxide(AFT) composite membrane is devised and studied for its capability of the application of high temperature proton exchange membrane fuel... The novel sulfonated polybenzimidazole(sPBI)/amine functionalized titanium dioxide(AFT) composite membrane is devised and studied for its capability of the application of high temperature proton exchange membrane fuel cells(HT-PEMFCs),unlike the prior low temperature AFT endeavors.The high temperature compatibility was actualized because of the filling of free volumes in the rigid aromatic matrix of the composite with AFT nanoparticles which inhibited segmental motions of the chains and improved its thermal stability.Besides,amine functionalization of TiO2 enhanced their dispersion character in the sPBI matrix and shortened the interparticle separation gap which finally improved the proton transfer after establishing interconnected pathways and breeding more phosphoric acid(PA) doping.In addition,the appeared assembled clusters of AFT flourished a superior mechanical stability.Thus,the optimized sPBI/AFT(10 wt%) showed 65.3 MPa tensile strength;0.084 S·cm^-1 proton conductivity(at 160℃;in anhydrous conditions),28.6% water uptake and PA doping level of 23 mol per sPBI repeat unit.The maximum power density peak for sPBI/AFT-10 met the figure of0.42 W·cm^-2 at 160℃(in dry conditions) under atmospheric pressure with 1.5 and 2.5 stoichiometric flow rates of H2/air.These results affirmed the probable fitting of sPBI/AFT composite for HT-PEMFC applications. 展开更多
关键词 Sulfonated polybenzimidazole Titanium dioxide High temperature fuel cells Proton exchange membrane LEACHING AGGLOMERATION Polymerization
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SPBI/ePTFE质子交换复合膜的制备与性能表征
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作者 张琪 何瑞玲 +1 位作者 赵娟 钟璟 《化工新型材料》 CAS CSCD 北大核心 2023年第8期233-237,共5页
采用化学法-萘钠溶液对疏水增强聚四氟乙烯(ePTFE)基底改性,往基底孔中填充磺化聚苯并咪唑(SPBI)电解质,通过多次真空抽滤和热处理法制备SPBI/ePTFE-x质子交换复合膜。分别采用红外光谱、扫描电镜、酸碱滴定法、干湿称重法和交流阻抗法... 采用化学法-萘钠溶液对疏水增强聚四氟乙烯(ePTFE)基底改性,往基底孔中填充磺化聚苯并咪唑(SPBI)电解质,通过多次真空抽滤和热处理法制备SPBI/ePTFE-x质子交换复合膜。分别采用红外光谱、扫描电镜、酸碱滴定法、干湿称重法和交流阻抗法等手段考察不同厚度的ePTFE基底对质子交换复合膜微观结构和性能的影响。结果表明:SPBI电解质成功填充于ePTFE基底中,膜表面光滑且致密。基底越厚可填充的SPBI越多,复合膜的IEC随基底ePTFE的厚度增加而增大,吸水率也随之增大。SPBI/ePTFE-5复合膜水平和厚度方向的溶胀度为5.26%和2.41%,说明具有较好的尺寸稳定性。SPBI/ePTFE-5复合膜基底厚度薄,传输质子的路径短,有利于质子间的传递,获得了最佳的质子电导率,在160℃时达到0.18S/cm,表明SPBI/ePTFE-5质子交换复合膜在高温下具有良好的质子传导性能。 展开更多
关键词 磺化聚苯并咪唑 聚四氟乙烯 质子交换复合膜 质子电导率
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Synthesis of a new aromatic diacid containing pyridine ring and related polybenzimidazole 被引量:2
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作者 Tao Ma Yan Feng Li Shu Jiang Zhang Feng Chun Yang Chen Liang Gong Jiu Jiang Zhao 《Chinese Chemical Letters》 SCIE CAS CSCD 2010年第8期976-978,共3页
A new aromatic diacid monomer containing pyridine unit,4-phenyl-2,6-bis[4-(4-carboxyphenoxy) phenyl]pyridine 3,was successfully synthesized in three steps,starting from 4-hydroxyacetophenone.The corresponding pyridi... A new aromatic diacid monomer containing pyridine unit,4-phenyl-2,6-bis[4-(4-carboxyphenoxy) phenyl]pyridine 3,was successfully synthesized in three steps,starting from 4-hydroxyacetophenone.The corresponding pyridine-containing polybenzimidazole was prepared via polycondensation of 3 with tetraaminodiphenyl ether(TADE) in poly(phosphoric acid)(PPA).The resulting polybenzimidazole exhibits excellent solubility,good thermal stabilities and high thermal resistance. 展开更多
关键词 polybenzimidazoleS Pyridine-containing diacid monomer Synthesis Thermal stabilities
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Synthesis and Photophysical Properties of Dy^(3+) and Gd^(3+) Polymeric Complexes with Functionalized Polybenzimidazole Containing β-Diketone Side Group 被引量:1
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作者 吴骞 钟超凡 +2 位作者 郭荣芳 何爱红 黄华良 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第5期562-567,共6页
The polymeric ligand PBIa (functionalized polybenzimidazole containing β-diketone side group) was successfully synthesized via the reaction of polybenzimidazole (PBI) with 3-Br-acetylacetone in DM SO solvent usin... The polymeric ligand PBIa (functionalized polybenzimidazole containing β-diketone side group) was successfully synthesized via the reaction of polybenzimidazole (PBI) with 3-Br-acetylacetone in DM SO solvent using Nail as the deprotonation reagent. Its corresponding polymeric complexes of Dy^3+ and Gd^3+ were prepared and characterized by FT-IR, ^1H NMR, molar conductance measurements, and thermal analysis. The photoluminescence properties and the probable mechanism of the Dy and Gd complexes were studied. The measurement and analysis of the thermal properties showed that these were thermal stable. 展开更多
关键词 lanthanide complexes polybenzimidazole polymeric complexes photophysical properties rare earths
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Porous polybenzimidazole membranes with positive charges enable an excellent anti-fouling ability for vanadium-methylene blue flow battery 被引量:2
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作者 Dongju Chen Guangyu Liu +2 位作者 Jie Liu Changkun Zhang Zhizhang Yuan 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第5期247-254,共8页
A cost-effective, high-performance and highly stable membrane has always been in intensively needed in aqueous organic-based flow batteries. Here we present a porous polybenzimidazole(PBI) membrane with positive charg... A cost-effective, high-performance and highly stable membrane has always been in intensively needed in aqueous organic-based flow batteries. Here we present a porous polybenzimidazole(PBI) membrane with positive charges that endow the membrane with a high rejection and an excellent anti-fouling ability for target organic molecule and asymmetric structure that affords a high conductivity for vanadiummethylene blue flow battery(V-MB FB). The morphologies and thickness of separating layer in particular of the porous PBI can be well adjusted by simply altering the polymer concentration in the cast solution and further afford the membrane with a controllable property in terms of both ion selectivity and ion conductivity. As a result, a V-MB FB assembled with a porous PBI membrane delivers a coulombic efficiency(CE) of 99.45% and an energy efficiency(EE) of 86.10% at a current density of 40 mA cm^(-2), which is 12% higher than that afforded by a Nafion 212 membrane. Most importantly, the V-MB FB demonstrates a methylene blue(MB) utilization of 97.55% at a theoretical capacity of 32.16 Ah L^(-1)(based on the concentration of MB in the electrolyte) because of the high ion conductivity of the membrane, which favors reducing the cost of a battery. The results suggest that the designed porous PBI membranes exhibit a very promising prospect for methylene blue-vanadium flow battery. 展开更多
关键词 Electrochemical energy storage technology Vanadium-methylene blue flow battery Porous pbi membranes Anti-fouling stability
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Modified silicon carbide whisker reinforced polybenzimidazole used for high temperature proton exchange membrane 被引量:1
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作者 Yangben Cai Zhouying Yue +1 位作者 Qianlu Jiang Shiai Xu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第3期820-825,共6页
Polybenzimidazole containing ether bond(OPBI) was reinforced with silicon carbide whisker(m Si C) modified by 3-aminopropyltriethoxysilane(KH550), and then doped with phosphoric acid(PA) to obtain OPBI/m Si C/... Polybenzimidazole containing ether bond(OPBI) was reinforced with silicon carbide whisker(m Si C) modified by 3-aminopropyltriethoxysilane(KH550), and then doped with phosphoric acid(PA) to obtain OPBI/m Si C/PA membranes. These OPBI/m Si C/PA membranes have excellent mechanical strength and oxidative stability and can be used for high temperature proton exchange membrane(HT-PEM). The tensile strength of OPBI/m Si C/PA membranes ranges from 27.3 to 36.8 MPa, and it increases at first and then decreases with the increase of m Si C content. The high m Si C content and PA doping level contribute to improving the proton conductivity of membranes. The proton conductivity of PBI/m Si C-10/PA membrane is 27.1 m S cm-1 at 170℃ without humidity, with an increase of 55.7% compared with that of OPBI/PA membrane. These excellent properties make OPBI/m Si C/PA membranes promising membrane materials for HT-PEM applications. 展开更多
关键词 polybenzimidazole Silicon carbide whisker Phosphoric acid doping Proton exchange membrane Proton conductivity
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POLYCAPROLACTAM MODIFIED BY POLYBENZIMIDAZOLE
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作者 杨桂生 卢凤才 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 1990年第1期79-86,共8页
Three polycaprolactam samples modified by 0.05—0.50% polybenzimidazole (PBI) by weight were prepared. Their structure and mechanical properties were characterized by means of FT-IR, SEM, DTA, density tensile, impac... Three polycaprolactam samples modified by 0.05—0.50% polybenzimidazole (PBI) by weight were prepared. Their structure and mechanical properties were characterized by means of FT-IR, SEM, DTA, density tensile, impact and viscoelastic method. PBI delayed the superimposed polymerization-crystallization process of the activated anionic polymerization of caprolactam. The monomer casting (MC) nylons modified by PBI had lower crystallinities, lower T;and more nearly perfect spherulites than MC nylon itself, and showed a typical toughening effect. 展开更多
关键词 POLYCAPROLACTAM polybenzimidazole Modified MC nylon Sphemlite.
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螺环柔性侧链PBI基阴离子交换膜的性能
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作者 杨照照 王小舟 +3 位作者 陈婉婷 崔福军 贺高红 吴雪梅 《膜科学与技术》 CAS CSCD 北大核心 2023年第6期71-78,88,共9页
提出具有高碱稳定性的螺环柔性侧链PBI基阴离子交换膜结构(ASD-PBI-x)概念.以二溴丁烷和1,3-二(4-哌啶基)丙烷为原料制备了螺环阳离子基团,以聚苯并咪唑(PBI)为基材,接枝螺环阳离子柔性侧链,主链和侧链结构均具有强碱稳定性,双醚柔性间... 提出具有高碱稳定性的螺环柔性侧链PBI基阴离子交换膜结构(ASD-PBI-x)概念.以二溴丁烷和1,3-二(4-哌啶基)丙烷为原料制备了螺环阳离子基团,以聚苯并咪唑(PBI)为基材,接枝螺环阳离子柔性侧链,主链和侧链结构均具有强碱稳定性,双醚柔性间隔基团提高了刚性螺环结构的成膜性,并促进了膜内良好的微相分离形貌形成.结果表明,该系列膜具有良好的性能,其中接枝度为90%的ASD-PBI-90膜在80℃时的电导率为83.2 mS/cm,在1 mol/L KOH、80℃浸泡1080 h后,膜的OH-电导率保持率达到94.2%.将该膜用于氢氧燃料电池,在60℃时单电池的峰值功率密度为367 mW/cm^(2).ASD-PBI膜具有优异的碱稳定性、良好的电导率和电池性能,有望应用于氢氧燃料电池领域. 展开更多
关键词 阴离子交换膜 螺环 聚苯并咪唑 碱稳定性 燃料电池
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基于PBI-BN的固体酸浸渍型高温膜的制备及其性能研究
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作者 赵雨桐 宋微 +1 位作者 张军芳 邵志刚 《电源技术》 CAS 北大核心 2023年第10期1248-1253,共6页
为了解决高温质子交换膜燃料电池中磷酸流失问题,以磷酸五氢铯[CsH_(5)(PO4)2]代替磷酸作为质子导体,基于聚苯并咪唑(PBI)/CsH_(5)(PO_(4))_(2)复合膜的研究基础,进一步在PBI膜中添加六方氮化硼(BN),从而改善固体酸与基膜的相互作用,制... 为了解决高温质子交换膜燃料电池中磷酸流失问题,以磷酸五氢铯[CsH_(5)(PO4)2]代替磷酸作为质子导体,基于聚苯并咪唑(PBI)/CsH_(5)(PO_(4))_(2)复合膜的研究基础,进一步在PBI膜中添加六方氮化硼(BN),从而改善固体酸与基膜的相互作用,制备了一系列复合膜。扫描电子显微镜(SEM)和能量色散X射线谱(EDS)结果证明CsH_(5)(PO_(4))_(2)均匀分散在高温浸渍制备的复合膜的表面和内部。浸渍量测试结合X射线衍射图谱(XRD)和傅里叶变换红外光谱(FTIR)结果表明,BN掺杂量为2.5%(质量分数)的复合膜可以达到最高的固体酸浸渍率。掺杂量为10%(质量分数)时,复合膜的机械性能下降。电导率测试结果表明掺杂BN有利于提高复合膜的质子电导率,并进一步测试了PBI-CsH_(5)(PO_(4))_(2)和PBI-2.5%BN-CsH_(5)(PO_(4))_(2)复合膜组装的燃料电池性能。结果表明,在160℃下,采用PBI-2.5%BN-CsH_(5)(PO_(4))_(2)复合膜组装的燃料电池获得了更高的性能,峰值功率密度为220.618 mW/cm^(2)。这些研究表明PBI-2.5%BN-CsH_(5)(PO_(4))_(2)复合膜在高温燃料电池中具有良好的应用前景。 展开更多
关键词 聚苯并咪唑 氮化硼 CsH5(PO4)2 高温质子交换膜
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Influence of solvent on ion conductivity of polybenzimidazole proton exchange membranes for vanadium redox flow batteries
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作者 Yahui Wang Kaimin Feng +2 位作者 Liming Ding Lihua Wang Xutong Han 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第6期1701-1708,共8页
Polybenzimidazole(PBI)is a kind of proton transport membrane material,and its ion conductivity is a key factor affecting its application in vanadium redox flow batteries(VRFBs).The casting solvent of PBI has a signifi... Polybenzimidazole(PBI)is a kind of proton transport membrane material,and its ion conductivity is a key factor affecting its application in vanadium redox flow batteries(VRFBs).The casting solvent of PBI has a significant influence on the acid doping level of PBI membranes which is closely related to ionic conductivity.In this paper,3,3′-diaminobenzidine(DABz)and 4,4′-Dicarboxydiphenylether(DCDPE)were used as raw materials by solution condensation to prepare the PBI with ether bond groups.The chemical structure of PBI was determined by1H NMR and FT-IR,and the prepared PBI had good solubility which can be dissolved in a variety of solvents.The PBI proton exchange membranes were prepared by solution coating with 5 different solvents of N,N-dimethylformamide(DMF),N,N-dimethylacetamide(DMAc),dimethyl sulfoxide(DMSO),1-methyl-2-pyrrolidone(NMP),methane sulfonic acid(MSA).The effects of different solvents on the ion conductivity and physicochemical properties were discussed in detail.The results showed that the PBI membrane prepared by using MSA as solvent(the PBI+MSA membrane)exhibits high water uptake,acid doping level and low vanadium ion permeability.The VRFB assembled with the PBI+MSA membrane exhibited higher coulombic efficiency(CE)99.87%and voltage efficiency(VE)84.50%than that of the commercial Nafion115 membrane at100 m A·cm-2,and after 480 cycles,the EE value can still be maintained at 83.73%.The self-discharge time of a single battery was recorded to be as long as 1000 h.All experimental data indicated that MSA is the best solvent for casting PBI membrane. 展开更多
关键词 polybenzimidazole SOLVENT Acid doping level Ion conductivity Proton exchange membrane Vanadium redox flow batteries
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1-甲基环丙烯结合气调处理对‘帕拉英达’和‘吉禄’芒果保鲜效果的影响
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作者 杞廷美 李艳娇 +3 位作者 赵兴东 彭磊 林奇 包媛媛 《保鲜与加工》 CAS 北大核心 2024年第3期1-13,20,共14页
为探究1-甲基环丙烯(1-Methylcyclopropene,1-MCP)结合气调处理对采后‘帕拉英达’和‘吉禄’芒果贮藏品质的影响,以元江晚熟芒果品种‘帕拉英达’和‘吉禄’为试材,分别用0.5μL/L 1-MCP、微孔膜、PBI气调保鲜袋、1-MCP+微孔膜及1-MCP+... 为探究1-甲基环丙烯(1-Methylcyclopropene,1-MCP)结合气调处理对采后‘帕拉英达’和‘吉禄’芒果贮藏品质的影响,以元江晚熟芒果品种‘帕拉英达’和‘吉禄’为试材,分别用0.5μL/L 1-MCP、微孔膜、PBI气调保鲜袋、1-MCP+微孔膜及1-MCP+PBI气调保鲜袋对芒果进行处理,对其外观指标、失重率、硬度、可溶性固形物(TSS)含量、VC含量、可滴定酸(TA)含量、呼吸强度、商品率以及呼吸代谢相关酶活性变化进行检测分析。结果表明:在(13±1)℃贮藏过程中,与未作任何处理的对照组相比,5种处理在一定时间内均能延缓‘帕拉英达’和‘吉禄’果实黄化指数、病情指数、腐烂指数、色差、失重率、可溶性固形物含量和呼吸强度的上升,抑制果实硬度、VC含量、可滴定酸含量及商品率的下降,显著抑制果实呼吸代谢相关酶活性变化。综合分析,在(13±1)℃贮藏环境中,1-MCP+PBI气调保鲜袋处理对‘帕拉英达’和‘吉禄’芒果的保鲜效果最优,更有利于果实的贮藏。研究结果可为低纬度、高海拔地区晚熟芒果采后保鲜提供技术参考和科学依据。 展开更多
关键词 1-甲基环丙烯 微孔膜 pbi气调保鲜袋 自发气调 晚熟芒果 呼吸代谢酶 贮藏品质
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操作条件对PBI/H_3PO_4体系高温PEMFC的性能影响 被引量:2
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作者 胡经纬 张华民 +2 位作者 翟云峰 刘刚 衣宝廉 《电源技术》 CAS CSCD 北大核心 2006年第11期883-886,共4页
全面研究了PBI/H3PO4体系高温质子交换膜燃料电池(PEMFC)的操作性能,研究了温度、压力、阴极气体成分(空气/氧气)对电池稳态操作性能的影响,同时,测试了电池的变压变温和变负载操作曲线,并且运用电化学交流阻抗谱的方法解释了操作条件... 全面研究了PBI/H3PO4体系高温质子交换膜燃料电池(PEMFC)的操作性能,研究了温度、压力、阴极气体成分(空气/氧气)对电池稳态操作性能的影响,同时,测试了电池的变压变温和变负载操作曲线,并且运用电化学交流阻抗谱的方法解释了操作条件对电池性能影响的原因,同时应用薄膜旋转圆盘电极技术初步研究了氧还原反应在两种不同的反应界面(Pt/C-PBI/H3PO4和Pt/C-Nafion/H2SO4)的差别。 展开更多
关键词 pbi/H3PO4体系 高温PEMFC 电化学交流阻抗谱 薄膜电极
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磷酸流失对H_3PO_4/PBI高温PEMFC性能的影响 被引量:2
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作者 翟云峰 张华民 +1 位作者 叶威 衣宝廉 《电池》 CAS CSCD 北大核心 2008年第1期3-7,共5页
考察了H3PO4/PBI高温PEMFC单体电池间放时的磷酸流失及对电池性能的影响。用磷钼蓝法测定了电极排水中的磷酸流失量;运用交流阻抗技术测试了电池内阻的变化;用SEM-EDX测量了运行不同时间后MEA中磷酸的含量。在正常操作时,电极排水中都... 考察了H3PO4/PBI高温PEMFC单体电池间放时的磷酸流失及对电池性能的影响。用磷钼蓝法测定了电极排水中的磷酸流失量;运用交流阻抗技术测试了电池内阻的变化;用SEM-EDX测量了运行不同时间后MEA中磷酸的含量。在正常操作时,电极排水中都含有少量的磷酸,且阴极侧比阳极侧的流失量大;500 h磷酸的流失总量很小,约为H3PO4/PBI膜中吸附磷酸量的0.43%;单体电池500 h间歇运行过程中内阻的变化不明显;运行不同时间后,阴极催化层中的磷酸减少,而阳极催化层中的磷酸含量比阴极高,但H3PO4/PBI膜中的磷酸含量未明显减少。在电池中有液态水存在时,磷酸的流失严重,返水5 s的流失量约是正常操作时500 h两极流失总量的3倍。正常操作时,电池中没有液态水存在,磷酸流失对电池性能的影响很小;当电池中存在液态水时,磷酸的流失严重,导致电池的性能降低。 展开更多
关键词 高温PEMFC H3PO4/pbi 性能衰减 磷酸流失
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真空蒸发法制备PbI_2多晶薄膜研究 被引量:3
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作者 李玉红 张弘 +2 位作者 李振生 李丹民 贺德衍 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2005年第5期1239-1242,共4页
用真空蒸发法在玻璃衬底上制备了PbI2多晶薄膜,对样品的微结构、表面形貌、化学组分及电阻率进行了测试分析.结果表明,样品具有良好的多晶结构,并沿六角密堆积结构的c轴向高度择优取向.室温下样品暗电导率为3.09×10-11(Ω·cm)... 用真空蒸发法在玻璃衬底上制备了PbI2多晶薄膜,对样品的微结构、表面形貌、化学组分及电阻率进行了测试分析.结果表明,样品具有良好的多晶结构,并沿六角密堆积结构的c轴向高度择优取向.室温下样品暗电导率为3.09×10-11(Ω·cm)-1,电导激活能为0.78eV. 展开更多
关键词 pbi2多晶薄膜 真空蒸发 辐射探测
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pBI121载体酶切位点添加及拟南芥Na^+/H^+逆向转运蛋白基因表达载体的构建 被引量:8
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作者 张俊莲 王蒂 +1 位作者 张金文 陈正华 《分子植物育种》 CAS CSCD 2006年第6期811-818,共8页
对pBI121载体GUS基因后的终止子序列(SacⅠ-EcoRⅠ)通过PCR扩增法进行了酶切位点的添加,即在SacⅠ后添加了XhoⅠ、在EcoRⅠ前添加了KpnⅠ。序列分析发现,两个酶切位点的添加是成功的,但扩增的终止子序列与原序列的同源性间有差异,即有4... 对pBI121载体GUS基因后的终止子序列(SacⅠ-EcoRⅠ)通过PCR扩增法进行了酶切位点的添加,即在SacⅠ后添加了XhoⅠ、在EcoRⅠ前添加了KpnⅠ。序列分析发现,两个酶切位点的添加是成功的,但扩增的终止子序列与原序列的同源性间有差异,即有4个碱基发生了变异,特别是第17个碱基位点出现了缺失。利用绿色荧光蛋白(GFP)对添加酶切位点载体进行了终止子活性的检测,结果发现,它与携带GFP的pBI121载体一样,GFP基因能正常表达,说明pBI121载体终止子序列酶切位点的添加是成功的。利用改造后的载体(pBI121-GZ)构建了CaMV35S启动子驱动AtNHX1基因的植物表达载体。 展开更多
关键词 pbi121 终止子 限制性酶 绿色荧光蛋白 植物表达载体
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低温等离子体处理对PBI纤维性能的影响 被引量:1
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作者 郭昌盛 杨建忠 +1 位作者 宋庆文 田孟琪 《棉纺织技术》 CAS 北大核心 2015年第10期4-7,共4页
探讨空气低温等离子体处理对PBI纤维性能的影响。测试了低温等离子体处理前后PBI纤维的断裂强度、表面摩擦因数、芯吸效应、接触角以及微观形态。试验表明:经过空气低温等离子体处理后PBI纤维的吸湿性得到进一步提高,强度和摩擦因数也... 探讨空气低温等离子体处理对PBI纤维性能的影响。测试了低温等离子体处理前后PBI纤维的断裂强度、表面摩擦因数、芯吸效应、接触角以及微观形态。试验表明:经过空气低温等离子体处理后PBI纤维的吸湿性得到进一步提高,强度和摩擦因数也适度增大,且在放电功率150W、放电气压20Pa和放电时间180s的条件下,纤维处理效果最好。认为:通过低温等离子体处理,PBI纤维在保证其吸湿性的基础上,可以提高其与其他材质复合黏结的牢度。 展开更多
关键词 pbi纤维 低温等离子体处理 强伸性能 摩擦性能 接触角 微观形貌
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