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An efficient strategy for the preparation of MIL-53(Al)-NH_(2)membranes with high ion selectivity and desalination performance
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作者 Wenmin Li Zheng Liu +4 位作者 Xingya Li Rongqiang Fu Zhaoming Liu Tingting Xu Tongwen Xu 《中国科学技术大学学报》 CAS CSCD 北大核心 2024年第6期41-47,I0010,共8页
The efficient extraction of sodium(Na^(+))and lithium(Li^(+))from seawater and salt lakes is increasingly demanding due to their great application value in chemical industries.However,coexisting cations such as divale... The efficient extraction of sodium(Na^(+))and lithium(Li^(+))from seawater and salt lakes is increasingly demanding due to their great application value in chemical industries.However,coexisting cations such as divalent calcium(Ca^(2+))and magnesium(Mg^(2+))ions are at the subnanometer scale in diameter,similar to target monovalent ions,making ion separation a great challenge.Here,we propose a simple and fast secondary growth method for the preparation of MIL-53(Al)-NH_(2)membranes on the surface of anodic aluminum oxide.Such membranes contain angstrom-scale(~7Å)channels for the entrance of small monovalent ions and water molecules,endowing the selectivities for monovalent cations over divalent cations and water over salt molecules.The resulting high-connectivity MIL-53(Al)-NH_(2)membranes exhibit excellent ion separation performance(a selectivity of 121.42 for Na^(+)/Ca^(2+)and 93.81 for Li^(+)/Mg^(2+))and desalination performance(a water/salt selectivity of up to 5196).This work highlights metal–organic framework membranes as potential candidates for realizing ion separation and desalination in liquid treatment. 展开更多
关键词 metal-organic framework mil-53(Al)-NH_(2) membrane ion selectivity DESALINATION
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Outstanding proton conductivity over wide temperature and humidity ranges and enhanced mechanical, thermal stabilities for surface-modified MIL-101-Cr-NH_(2)/Nafion composite membranes
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作者 Xu Li Dongwei Zhang +7 位作者 Si Chen Yingzhao Geng Yong Liu Libing Qian Xi Chen Jingjing Li Pengfei Fang Chunqing He 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第11期1734-1746,共13页
High-performance proton exchange membranes are of great importance for fuel cells.Here,we have synthesized polycarboxylate plasticizer modified MIL-101-Cr-NH_(2)(PCP-MCN),a kind of hybrid metal-organic framework,which ... High-performance proton exchange membranes are of great importance for fuel cells.Here,we have synthesized polycarboxylate plasticizer modified MIL-101-Cr-NH_(2)(PCP-MCN),a kind of hybrid metal-organic framework,which exhibits a superior proton conductivity.PCP-MCN nanoparticles are used as additives to fabricate PCP-MCN/Nafion composite membranes.Microstructures and characteristics of PCP-MCN and these membranes have been extensively investigated.Significant enhancement in proton conduction for PCP-MCN around 55℃ is interestingly found due to the thermal motion of the PCP molecular chains.Robust mechanical properties and higher thermal decomposition temperature of the composite membranes are directly ascribed to strong intermolecular interactions between PCP-MCN and Nafion side chains,i.e.,the formation of substantial acid–base pairs(-SO_(3)^(-)…^(+)H–NH-),which further improves compatibility between additive and Nafion matrix.At the same humidity and temperature condition,the water uptake of composite membranes significantly increases due to the incorporation of porous additives with abundant functional groups and thus less crystallinity degree in comparison to pristine Nafion.Proton conductivity(σ)over wide ranges of humidities(30-100%RH at 25℃)and temperatures(30-98℃ at 100%RH)for prepared membranes is measured.The s in PCPMCN/Nafion composite membranes is remarkably enhanced,i.e.0.245 S/cm for PCP-MCN-3wt.%/Nafion is twice that of Nafion membrane at 98℃ and 100%RH,because of the establishment of well-interconnected proton transport ionic water channels and perhaps faster protonation–deprotonation processes.The composite membranes possess weak humidity-dependence of proton transport and higher water uptake due to excellent water retention ability of PCP-MCN.In particular,when 3 wt.%PCP-MCN was added to Nafion,the power density of a single-cell fabricated with this composite membrane reaches impressively 0.480,1.098 W/cm^(2) under 40%RH,100%RH at 60℃,respectively,guaranteeing it to be a promising proton exchange membrane. 展开更多
关键词 Nafion composite membrane Surface-modified mil-101-Cr-NH_(2) Proton conductivity Single-cell performance
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A Rapid-Ab/Desorption and Portable Photothermal MIL- 101(Cr) Nanofibrous Composite Membrane Fabricated by Spray-Electrospinning for Atmosphere Water Harvesting 被引量:1
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作者 Ailin Li Jian Xiong +3 位作者 Ye Liu Liming Wang Xiaohong Qin Jianyong Yu 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第1期111-118,共8页
MIL-101(Cr)is a promising moisture absorbent for solar-driven water harvesting from moisture to tackle the worldwide water shortage issue.However,the MIL-101(Cr)powder suffers from a long ab/desorption cycle due to th... MIL-101(Cr)is a promising moisture absorbent for solar-driven water harvesting from moisture to tackle the worldwide water shortage issue.However,the MIL-101(Cr)powder suffers from a long ab/desorption cycle due to the crystal aggregation caused by its inherent powder properties.Here,we demonstrate a MIL-101(Cr)nanofibrous composite membrane with a nanofibrous matrix where MIL-101(Cr)is monodisperse in the 3D porous nanofibrous matrix through a simple spray-electrospinning strategy.The continuous porous nanofibrous matrix not only offers sufficient sites for MIL-101(Cr)loading but also provides rapid moisture transport channels,resulting in a super-rapid ab/desorption duration of 50 min(including an absorption process for 40 min and a desorption process for 10 min)and multicycle daily water production of 15.9 L kg^(−1) d^(−1).Besides,the MIL-101(Cr)nanofibrous composite membrane establishes a high solar absorption of 92.8%,and excellent photothermal conversion with the surface temperature of 70.7°C under one-sun irradiation.In addition,the MIL-101(Cr)nanofibrous composite membrane shows excellent potential for practical application due to its flexibility,portability,and use stability.This work provides a new perspective of shortening MOF ab/desorption duration by introducing a porous nanofibrous matrix to improve the specific water production for the solar-driven ab/desorption water harvesting technique. 展开更多
关键词 ELECTROSPINNING fast vapor transport mil-101(Cr) MOF composite membrane solar-driven moisture harvesting
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金属有机骨架MIL-96膜的制备和表征 被引量:3
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作者 南江普 董学良 +2 位作者 汪文进 黄康 金万勤 《南京工业大学学报(自然科学版)》 CAS 北大核心 2013年第1期6-9,共4页
采用反应晶种法在片式多孔α-Al2O3支撑体表面制备金属有机骨架MIL-96膜。采用X线衍射仪(XRD)和扫描电子显微镜(SEM)对MIL-96膜进行相结构和形貌表征,并考察膜的热稳定性和化学稳定性。在不同的操作温度下,对MIL-96膜的单组分气体H2、CH... 采用反应晶种法在片式多孔α-Al2O3支撑体表面制备金属有机骨架MIL-96膜。采用X线衍射仪(XRD)和扫描电子显微镜(SEM)对MIL-96膜进行相结构和形貌表征,并考察膜的热稳定性和化学稳定性。在不同的操作温度下,对MIL-96膜的单组分气体H2、CH4、N2和CO2的渗透行为进行详细研究。结果表明:随着操作温度的升高,气体的渗透性呈现出微弱的先下降后上升的趋势,在130℃时渗透性最小,这主要源于MIL-96骨架的柔性。温度升高导致分子热运动加剧,不利于气体渗透;但当温度高于130℃时,MIL-96的柔性骨架受温度影响引起晶格震动,膜的有效孔径增加,从而气体渗透性增加。同时,H2与CH4、H2与N2、H2与CO2的理想选择性都稍有增加。 展开更多
关键词 反应晶种法 金属有机骨架 mil-96 气体渗透
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金属有机骨架材料MIL-96的制备及其对萘的吸附性能研究 被引量:1
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作者 邓双双 彭夫敏 《化工新型材料》 CAS CSCD 北大核心 2019年第8期163-168,共6页
通过水热法合成铝基-金属有机骨架(MOFs)MIL-96材料,并将其作为吸附剂用于脱除水溶液中的萘。采用扫描电子显微镜、X射线衍射仪和N2吸附-脱附等方法对材料进行表征。通过考察吸附动力学、吸附等温线以及热力学特征研究了MIL-96材料的吸... 通过水热法合成铝基-金属有机骨架(MOFs)MIL-96材料,并将其作为吸附剂用于脱除水溶液中的萘。采用扫描电子显微镜、X射线衍射仪和N2吸附-脱附等方法对材料进行表征。通过考察吸附动力学、吸附等温线以及热力学特征研究了MIL-96材料的吸附性能。研究结果表明:在温度298K、MIL-96材料用量为0.5g/L时,对萘的最大去除率达到约98%;MIL-96对萘的吸附特征符合准二级吸附动力学模型,Temkin和D-R等温吸附模型对萘吸附过程的描述比其他模型准确;Temkin等温吸附方程中吸附热相关系数表明,MIL-96吸附水溶液中萘的过程为吸热过程,热力学参数中正的标准焓变(ΔHo)值也说明该吸附过程为吸热过程。 展开更多
关键词 金属有机骨架 mil-96 吸附
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Highly conductive and robust composite anion exchange membranes by incorporating quaternized MIL-101(Cr) 被引量:2
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作者 Xueyi He Mingyue Gang +6 位作者 Zhen Li Guangwei He Yongheng Yin Li Cao Bei Zhang Hong Wu Zhongyi Jiang 《Science Bulletin》 SCIE EI CAS CSCD 2017年第4期266-276,共11页
With well-defined channels and tunable functionality, metal-organic frameworks (MOFs) have inspired the design of a new class of ion-conductive compounds. In contrast to the extensive studies on proton- conductive M... With well-defined channels and tunable functionality, metal-organic frameworks (MOFs) have inspired the design of a new class of ion-conductive compounds. In contrast to the extensive studies on proton- conductive MOFs and related membranes attractive for fuel cells, rare reports focus on MOFs in preparation of anion exchange membranes. In this study, chloromethylated MIL-101 (Cr) was prepared and incor- porated into chloromethylated poly (ether ether ketone) (PEEK) as a multifunctional filler to prepare imidazolium PEEK/imidazolium MIL-101(Cr) (ImPEEK/ImMIL-101(Cr)) anion exchange membrane after synchronous quaternization. The successful synthesis and chloromethylation of MIL-101(Cr) were veri- fied by transmission electron microscopy, X-ray diffraction and Fourier transform infrared spectroscopy while the enhanced performance of composite membranes in hydroxide conductivity, mechanical strength and dimensional stability were evaluated by alternating-current impedance, electronic stretching machine and measurement of swelling ratio. Specifically, incorporating 5.0wt% ImMIL-101(Cr) afforded a 71.4% increase in hydroxide conductivity at 20℃, 100% RH. Besides, the composite membranes exhibited enhanced dimensional stability and mechanical strength due to the rigid framework of ImMIL- 101(Cr). At room temperature and the ImM1L-101(Cr) content of 10wt%, the swelling ratio of the ImPEEK/lmMIL-101(Cr) was 70.04% lower while the tensile strength was 47.5% higher than that of the pure membrane. 展开更多
关键词 mil-101(Cr)Poly (ether ether ketone) Chloromethylation Quaternization Composite anion exchange membranes
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利用可生物降解共聚膜引导骨再生 被引量:3
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作者 黄岚峰 刘建国 徐莘香 《中国修复重建外科杂志》 CAS CSCD 1999年第5期321-325,共5页
目的 采用生物降解可吸收材料聚己内酯( P C L)和聚乳酸( P L A)共聚膜修复长骨节段性骨缺损,探讨其引导性骨再生的效果及机制。方法 采用兔桡骨中段12 cm 节段性骨缺损(保留骨膜)动物模型24 只,平均分成两组... 目的 采用生物降解可吸收材料聚己内酯( P C L)和聚乳酸( P L A)共聚膜修复长骨节段性骨缺损,探讨其引导性骨再生的效果及机制。方法 采用兔桡骨中段12 cm 节段性骨缺损(保留骨膜)动物模型24 只,平均分成两组,实验组用膜包绕骨缺损区,对照组缺损区不处置,分别于术后3、6 及12 周处死动物,进行 X 线片、大体及组织学观察。结果 实验组缺损区骨生长明显优于对照组,术后 3 周实验组可见明显的骨痂沿膜外生长;术后 6 周以桥接的外骨痂形成骨性连接;术后12 周膜内外均形成骨性连接,对照组从术后6 周开始表现为骨不连。结论 利用可生物降解的膜性材料可引导骨组织再生,通过膜外骨痂以及形成相对迟缓的膜内骨痂共同完成骨缺损的修复;膜性材料通过屏障作用一方面有效地阻挡纤维组织长入缺损区,防止骨不连形成,另一方面在局部形成营养物质浓聚,并通过表面的微孔为骨细胞生长充当支架,促进骨缺损愈合。 展开更多
关键词 骨缺损 引导性骨再生 膜生物降解材料
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含铝MOFs材料的合成及吸附性能实验
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作者 胡玉平 王双飞 +1 位作者 蒙小波 曾颖 《材料导报》 EI CAS CSCD 北大核心 2012年第20期105-107,共3页
采用水热法合成了一种新的含铝多孔金属有机骨架材料(Metal-organic frameworks,MOFs)Al12O(OH)18(H2O)3(Al2(OH)4)[btc]6.24H2O(MIL-96(Al)),并用高压吸附仪测试了MIL-96在不同压力和温度下对CO2和SO2的吸附性能。结果表明,该配合物BET... 采用水热法合成了一种新的含铝多孔金属有机骨架材料(Metal-organic frameworks,MOFs)Al12O(OH)18(H2O)3(Al2(OH)4)[btc]6.24H2O(MIL-96(Al)),并用高压吸附仪测试了MIL-96在不同压力和温度下对CO2和SO2的吸附性能。结果表明,该配合物BET和Langmuir比表面积分别为507m2/g和668m2/g,热稳定性较好,温度低于350℃时结构较稳定。在相同温度和压力条件下,MIL-96对CO2的吸附性能远远高于对SO2的吸附性能;在较低温度下,温度越高,MIL-96吸附能力越强,但在100℃时的饱和吸附量(4.27mmol/g)小于80℃时的饱和吸附量(5.15mmol/g),这种现象是由于水蒸气的逸出造成的。 展开更多
关键词 mil-96(Al) 合成 吸附性能CO2 SO2
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Morphology and size controlled synthesis of Co-doped MIL-96 by different alkaline modulators for sensitively detecting alpha-fetoprotein 被引量:1
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作者 Chaonan Gu Jingjing Li +3 位作者 Guang Yang Liming Zhang Chun-Sen Liu Huan Pang 《Chinese Chemical Letters》 SCIE CAS CSCD 2020年第9期2263-2267,共5页
This work introduces a simple and facile approach for the morphology and size controlled synthesis of Co-doped MIL-96.By using different bases as modulators,Co-doped MIL-96 was obtained with sizes that varied from 5 ... This work introduces a simple and facile approach for the morphology and size controlled synthesis of Co-doped MIL-96.By using different bases as modulators,Co-doped MIL-96 was obtained with sizes that varied from 5 μm to 300 nm,and four different morphologies,including hexagonal prism,icosahedron,hexagonal spindle and ellipsoid.Among these,nano-sized Co-doped MIL-96 with an ellipsoid morphology exhibited the highest electroactive surface area and good conductivity as well as the best electrochemical sensing performance towards α-fetoprotein. 展开更多
关键词 Morphology/size mil-96 MODULATOR APTASENSOR ALPHA-FETOPROTEIN
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基于平行人工膜渗透分析法对药物跨血脑屏障渗透性的仿生系统优化及其评价研究
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作者 黄韩韩 刘雪婧 +4 位作者 关皓月 许鸣镝 黄寅 牛剑钊 刘倩 《药物分析杂志》 CAS CSCD 北大核心 2022年第11期1936-1940,共5页
目的:基于平行人工膜渗透分析法(parallel artificial membrane permeability analysis,PAMPA),对化合物跨血脑屏障(blood-brain barrier,BBB)仿生系统进行优化。以氯丙嗪、氯氮平、马普替林及维拉帕米等10种化合物进行渗透性考察,建立... 目的:基于平行人工膜渗透分析法(parallel artificial membrane permeability analysis,PAMPA),对化合物跨血脑屏障(blood-brain barrier,BBB)仿生系统进行优化。以氯丙嗪、氯氮平、马普替林及维拉帕米等10种化合物进行渗透性考察,建立1种快速、简便的化合物BBB渗透性考察方法。方法:使用μFlux型化合物渗透性测定仪,以人工仿生膜为载体,将BBB涂膜液涂于仿生膜上制备人工渗透膜。对该平行人工膜模型进行方法学验证,考察其线性、重现性及重复性。以人工渗透膜模拟人的BBB,考察化合物经人工渗透膜的有效渗透速率(Pe),并与文献报道的通过96孔板测得的跨膜渗透速率(Pm)进行比较,验证人工渗透膜的准确性。结果:该方法测得的各化合物均具有良好的线性关系(r>0.999),不同日期测定维拉帕米Pe值一致(P>0.05),该方法具有良好的重现性与重复性。对各化合物实验结果经过统计学分析,以平行人工膜测定的Pe与96孔板测定的Pm在统计学上具有一定的一致性(选择系数为1.00363)。结论:基于化合物跨BBB仿生系统优化PAMPA法能测定化合物跨过BBB渗透性,可为创新化合物跨BBB研究提供体外预测。 展开更多
关键词 平行人工膜渗透分析法(PAMPA) 有效渗透速率 血脑屏障(BBB) 96孔板 跨膜渗透速率 线性回归 被动扩散
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