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臭氧-CNTs预沉积耦合方法缓解膜污染研究
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作者 郭瑾 曾嘉 +4 位作者 魏娜 王宇飞 吴曜辰 刘秋杉 刘国涵 《北京工业大学学报》 CAS CSCD 北大核心 2024年第12期1486-1500,共15页
以腐殖酸(humic acid,HA)和海藻酸钠(sodium alginate,SA)作为模型污染物,考察了臭氧预氧化和碳纳米管(carbon nanotubes,CNTs)预沉积联合技术对膜污染形成过程和形成规律的影响。通过测定HA和SA物化特性的变化,结合膜滤过程中比通量变... 以腐殖酸(humic acid,HA)和海藻酸钠(sodium alginate,SA)作为模型污染物,考察了臭氧预氧化和碳纳米管(carbon nanotubes,CNTs)预沉积联合技术对膜污染形成过程和形成规律的影响。通过测定HA和SA物化特性的变化,结合膜滤过程中比通量变化,辅以Hermia模型和传统滤饼过滤模型,分析了臭氧预氧化和CNTs预沉积缓解膜污染的机理。结果表明,经臭氧氧化后,HA和SA的电负性和亲水性增强,且由于发生微絮凝作用,粒径增大。臭氧预氧化对于HA造成的膜污染无明显改善作用,当氧化后HA粒径接近基膜孔径时,膜孔被完全堵塞甚至加重膜污染;臭氧破坏了SA的凝胶特性,大幅缓解了膜表面的滤饼层污染。不同孔径的基膜进行CNTs预沉积后,表面CNTs层可以拦截吸附部分HA和SA分子,从而缓解了HA和SA造成的膜污染。0.45μm PVDF基膜孔径与CNTs层的孔径相差最大,经CNTs预沉积后,在膜表面形成一层致密的过滤层,缓解膜污染的幅度最大。臭氧预氧化与CNTs预沉积联用后,在CNTs沉积量较高的情况下能够缓解HA造成的膜污染,对SA造成的膜污染也起到明显缓解作用,在有效降低膜表面滤饼形成的同时,能够延长膜孔堵塞时间或增加膜孔堵塞到滤饼的过渡阶段时间。 展开更多
关键词 臭氧预氧化 碳纳米管 膜污染 Hermia模型 传统滤饼过滤模型 膜改性
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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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CNT modified by mesoporous carbon anchored by Ni nanoparticles for CO_(2) electrochemical reduction 被引量:4
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作者 Juan Du Aibing Chen +1 位作者 Senlin Hou Jing Guan 《Carbon Energy》 SCIE CAS 2022年第6期1274-1284,共11页
The design of novel catalysts for efficient electroreduction of CO_(2) into valueadded chemicals is a promising approach to alleviate the energy crisis.Herein,we successfully modify the carbon nanotube by a layer of m... The design of novel catalysts for efficient electroreduction of CO_(2) into valueadded chemicals is a promising approach to alleviate the energy crisis.Herein,we successfully modify the carbon nanotube by a layer of mesoporous carbon shell anchored by nickel(Ni)nanoparticles.Ni species effectively enable carbon deposition derived from pyrolysis of surfactant 1-hexadecyl trimethyl ammonium bromide to form a mesoporous carbon shell.At the same time,Ni nanoparticles can be embedded in the mesoporous carbon shell due to the confinement effect.Owing to the dispersive Ni nanoparticles and N-doping active sites of mesoporous carbon,the as-prepared electrocatalyst exhibits exciting catalytic performance for the selective reduction of CO_(2) to carbon monoxide(CO)with a maximum Faradaic efficiency of 98%at a moderate overpotential of−0.81 V(vs.reversible hydrogen electrode)and a high partial current density of 60 mA cm^(−2) in H-cell with an aqueous electrolyte. 展开更多
关键词 carbon dioxide electrochemical reduction carbon monoxide cnt highly dispersed nickel nanoparticles
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Ni nanoparticles confined by yolk-shell structure of CNT-mesoporous carbon for electrocatalytic conversion of CO_(2): Switching CO to formate 被引量:4
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作者 Juan Du Aibing Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第7期224-229,I0006,共7页
Electrochemical reduction of CO_(2)(CO_(2)ER) to formate has been a promising route to produce value-added chemicals.Developing low-cost and efficient electrocatalysts with high product selectivity is still a grand ch... Electrochemical reduction of CO_(2)(CO_(2)ER) to formate has been a promising route to produce value-added chemicals.Developing low-cost and efficient electrocatalysts with high product selectivity is still a grand challenge.Herein,a novel Ni nanoparticles-anchored CNT coated by mesoporous carbon with yolk-shell structure (CNT/Ni@mC) catalysis was designed for CO_(2)ER.Ni nanoparticles were confined in the cavity between CNT and mesoporous carbon shell and the confined space can be controlled by tuning the amount of silica precursor.The mesoporous carbon shell and confined space are beneficial to charge transmission during CO_(2)ER.In contrast to previous studies,the CNT/Ni@mC catalyst presents selectivity toward formate rather than CO.Electrochemical in situ attenuated total reflection Fourier transform infrared spectroscopy measurements indicate the presence of a COO* intermediate that converts to formate under CO_(2)ER conditions.The well-defined structural feature of the confined space of the Ni-based catalyst for selective CO_(2)ER to formate may facilitate in-depth mechanistic understandings on structural factors that affect CO_(2)ER performance. 展开更多
关键词 carbon dioxide electrochemical reduction Nickel-based catalyst FORMATE Yolk-shell cnt
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Dispersion and Performance Properties of Carbon Nanotubes (CNTs) Based Polymer Composites: A Review 被引量:9
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作者 Bhagwan F. Jogi Mayur Sawant +1 位作者 Madan Kulkarni Prakash K. Brahmankar 《Journal of Encapsulation and Adsorption Sciences》 2012年第4期69-78,共10页
Carbon nanotubes (CNTs) based polymer composites have variety of engineering applications (electromagnetic shielding, antistatic coatings, high-strength low-density corrosion-resistant components, lightweight energy s... Carbon nanotubes (CNTs) based polymer composites have variety of engineering applications (electromagnetic shielding, antistatic coatings, high-strength low-density corrosion-resistant components, lightweight energy storage and many more);due to their excellent mechanical, electrical, chemical, magnetic, etc. properties. In the polymer nanocomposites CNTs are dispersed in the polymeric matrix. However the dispersion may be uniform or may not be uniform. The biggest challenge is the effective dispersion of individual CNTs in the polymer matrices, as CNTs tends to form clusters and bundles due to strong van der Waals’ forces of attraction. The aggregated structure continue until physical (Mechanical) or chemical modification (Encapsulation/surface modification) of CNTs. Few modification methods such as vigorous mixing of the polymers damages CNTs structure, and may hinder their properties. But these problems can be overcome by mechanical or chemical modification of CNTs surfaces. In the chemical modification, the modifier or the long tail surfactant may encapsulate and/or partially wrap the CNTs surfaces. In this review, recent work on CNTs based polymer nanocomposite is carried out with few modifiers/encapsulating agents. Incorporation of CNTs in polymer matrix changes the performance properties such as tensile strength, tensile modulus, elongation at break, toughness, Dynamic mechanical thermal analysis (DMTA), etc. The phase morphology of the composite materials throws light on the properties of CNTs based polymer nanocomposite. Moreover phase morphology may be directly correlated with the behavior of the material, hence reviewed here through transmission electron microscopy (TEM) and scanning electron microscopy (SEM). Furthermore review is also carried out on the non-isothermal crystallization (DSC) and rheology of CNTs polymer nanocomposite. 展开更多
关键词 carbon NANOTUBES (cnts) Encapsulation/Surface Modification Transmission Electron MICROSCOPY (TEM) Mechanical Properties CRYSTALLIZATION
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CNTs/Cu层状复合材料的制备及其组织和性能研究
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作者 徐雪霞 王勇 +4 位作者 李文彬 董国振 李国维 刘洹钰 丁海民 《热加工工艺》 北大核心 2024年第14期69-72,共4页
采用扩散结合法将分散后的碳纳米管附着在铜箔表面,经裁剪、堆叠和预压后使用真空热压烧结炉进行烧结,制备出具有优良导电性的CNTs/Cu层状复合材料。使用SEM、EDS和XRD等对样品的微观形貌和成分进行表征,使用显微硬度计和导电率检测仪... 采用扩散结合法将分散后的碳纳米管附着在铜箔表面,经裁剪、堆叠和预压后使用真空热压烧结炉进行烧结,制备出具有优良导电性的CNTs/Cu层状复合材料。使用SEM、EDS和XRD等对样品的微观形貌和成分进行表征,使用显微硬度计和导电率检测仪等对样品性能进行测试。结果表明:在热压烧结过程中,一定量铜扩散到CNTs层中,有效改善了碳纳米管层和铜层的结合能力。相比于纯铜,CNTs/Cu层状复合材料在硬度提高45%的同时,在平行于碳纳米管层方向导电率达到91%IACS,而垂直于碳纳米管层方向也仍具有80.6%IACS的导电率。 展开更多
关键词 碳纳米管 扩散结合法 cnts/Cu复合材料 导电性
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CNT/乙炔黑复合导电剂对LiNi_(0.5)Co_(0.2)Mn_(0.3)O_(2)的影响 被引量:1
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作者 曹米红 张骞 +1 位作者 李路成 陈军 《电池》 CAS 北大核心 2024年第3期348-353,共6页
为解决乙炔黑单一导电剂自身团聚的问题,采用含碳纳米管(CNT)的导电浆料进行改性。复合后,直径80~100 nm的球形乙炔黑颗粒均匀分散在直径20 nm的CNT表面,比表面积提高至107.96 m^(2)/g。与乙炔黑导电剂电池相比,CNT/乙炔黑电池的电化学... 为解决乙炔黑单一导电剂自身团聚的问题,采用含碳纳米管(CNT)的导电浆料进行改性。复合后,直径80~100 nm的球形乙炔黑颗粒均匀分散在直径20 nm的CNT表面,比表面积提高至107.96 m^(2)/g。与乙炔黑导电剂电池相比,CNT/乙炔黑电池的电化学阻抗更小、CV曲线面积更大,氧化峰和还原峰的电位差较小(0.19 V),以200 mA/g在2.75~4.20 V循环,首次充放电比容量分别为151.8 mAh/g和155.5 mAh/g,首次库仑效率为97.6%。第200次循环的放电比容量为141.9 mAh/g,容量保持率为92.4%。在5.0 C倍率下,CNT/乙炔黑电池的放电比容量为116.9 mAh/g,倍率性能更好。 展开更多
关键词 锂离子电池 三元正极材料 复合导电剂 乙炔黑 碳纳米管(cnt)
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原位生长的CNTs@MoS_(2)杂化物增强水性膨胀型防火涂料的耐火和隔热性能
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作者 王晓明 朱耿增 +7 位作者 金义杰 贾丹 段海涛 詹胜鹏 杨田 凃杰松 章武林 马利欣 《表面技术》 EI CAS CSCD 北大核心 2024年第4期200-210,共11页
目的设计并研制一种耐火和隔热性能突出的水性膨胀型防火涂料。方法以碳纳米管(CNTs)、四水合钼酸铵、十六烷基溴化铵(CTAB)、硫脲为原料,通过简单的一步水热法原位生长出一种新型的CNTs@MoS_(2)杂化物,并采用FT-IR、XRD、拉曼光谱、SE... 目的设计并研制一种耐火和隔热性能突出的水性膨胀型防火涂料。方法以碳纳米管(CNTs)、四水合钼酸铵、十六烷基溴化铵(CTAB)、硫脲为原料,通过简单的一步水热法原位生长出一种新型的CNTs@MoS_(2)杂化物,并采用FT-IR、XRD、拉曼光谱、SEM等手段对复合杂化物进行表征。再将CNTs@MoS_(2)杂化物作为增效剂分散在水性膨胀型防火涂料(CNTs@MoS_(2)/WES)中,通过大板实验和涂层、炭焦层表面分析评价了涂层的耐火和隔热性能。结果与WES(膨胀倍率为3.90)、CNTs/WES涂层(膨胀倍率为6.04)、MoS_(2)/WES涂层(膨胀倍率为4.59)相比,CNTs@MoS_(2)/WES涂层具有最高的膨胀倍率(8.88)。CNTs@MoS_(2)/WES涂层所涂覆的钢板在燃烧40min后背面温度最低(133.3℃),这充分表明该涂层具有优异的隔热性能。结论制备的CNTs@MoS_(2)杂化物表现出稳定的网络交织结构,有效提高了它在涂料中的分散性能。此外,CNTs@MoS_(2)/WES涂层优异的耐火和隔热性能主要归因于:1)CNTs@MoS_(2)/WES涂层及其炭焦层具有更致密和完整的表面,阻隔了热量的传递;2)CNTs的添加增强了炭焦层的致密性,抑制了膨胀过程中产生的气体泄漏,提升了涂层膨胀倍率;3)MoS_(2)提高了膨胀层强度且促进了炭焦层的形成,减少了裂纹和孔隙的产生。 展开更多
关键词 碳纳米管(cnts) 二硫化钼(MoS_(2)) 协同效应 耐火性能 阻燃机理
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Ag-doped CNT/HAP nanohybrids in a PLLA bone scaffold show significant antibacterial activity 被引量:1
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作者 Cijun Shuai Xiaoxin Shi +3 位作者 Kai Wang Yulong Gu Feng Yang Pei Feng 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2024年第2期105-120,共16页
Bacterial infection is a major problem following bone implant surgery.Moreover,poly-l-lactic acid/carbon nanotube/hydroxyapatite(PLLA/CNT/HAP)bone scaffolds possess enhanced mechanical properties and show good bioacti... Bacterial infection is a major problem following bone implant surgery.Moreover,poly-l-lactic acid/carbon nanotube/hydroxyapatite(PLLA/CNT/HAP)bone scaffolds possess enhanced mechanical properties and show good bioactiv-ityregardingbonedefectregeneration.Inthisstudy,wesynthesizedsilver(Ag)-dopedCNT/HAP(CNT/Ag-HAP)nanohybrids via the partial replacing of calcium ions(Ca2+)in the HAP lattice with silver ions(Ag+)using an ion doping technique under hydrothermal conditions.Specifically,the doping process was induced using the special lattice structure of HAP and the abundant surface oxygenic functional groups of CNT,and involved the partial replacement of Ca2+in the HAP lattice by doped Ag+as well as the in situ synthesis of Ag-HAP nanoparticles on CNT in a hydrothermal environment.The result-ing CNT/Ag-HAP nanohybrids were then introduced into a PLLA matrix via laser-based powder bed fusion(PBF-LB)to fabricate PLLA/CNT/Ag-HAP scaffolds that showed sustained antibacterial activity.We then found that Ag+,which pos-sesses broad-spectrum antibacterial activity,endowed PLLA/CNT/Ag-HAP scaffolds with this activity,with an antibacterial effectiveness of 92.65%.This antibacterial effect is due to the powerful effect of Ag+against bacterial structure and genetic material,as well as the physical destruction of bacterial structures due to the sharp edge structure of CNT.In addition,the scaffold possessed enhanced mechanical properties,showing tensile and compressive strengths of 8.49 MPa and 19.72 MPa,respectively.Finally,the scaffold also exhibited good bioactivity and cytocompatibility,including the ability to form apatite layers and to promote the adhesion and proliferation of human osteoblast-like cells(MG63 cells). 展开更多
关键词 Ag-doped carbon nanotube/hydroxyapatite(cnt/HAP) Antibacterial properties Bone scaffold
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High‑Performance Cellulose Nanofibers/Carbon Nanotubes Composite for Constructing Multifunctional Sensors and Wearable Electronics 被引量:1
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作者 Yali Liu Sufeng Zhang +1 位作者 Lei Li Nan Li 《Advanced Fiber Materials》 SCIE EI CAS 2024年第3期758-771,共14页
The green preparation of highly dispersed carbon nanotube(CNT)conductive inks remains a critical challenge in the field of flexible electronics.Herein,a waterborne CNT dispersion approach mediated by carboxylated cell... The green preparation of highly dispersed carbon nanotube(CNT)conductive inks remains a critical challenge in the field of flexible electronics.Herein,a waterborne CNT dispersion approach mediated by carboxylated cellulose nanofibers(C-CNFs)was proposed.CNFs,special biomass materials with excellent nanostructures and abundant active surface groups,are used as green dispersants.During the dispersion process,benefiting from chemical charge and dimensional matching,C-CNF/CNT wicking-driven stable composite structures(CCNTs)were co-assembled via hydrogen bonding,electrostatic stabilization andπ–πstacking between the interfaces,generating controlled orientational structures and promoting stable dispersion and conductivity of CNTs,which were demonstrated via molecular dynamics simulations combined with a variety of physicochemical characterization methods.The dispersion concentration of CNTs in a CCNT slurry can reach 80 wt%,and the obtained CCNT slurry has a low zeta potential(less than−60 mV)and good stability.Due to the film-forming properties of CNFs and in-plane oriented self-assembly of CCNT,the composite self-supporting films were fabricated with high electrical conductivity(67 S cm^(−1))and mechanical performance(tensile strength of 153 MPa).In addition,the resulting biobased CCNT ink is compatible with a variety of printing processes and adaptable to various substrates.Moreover,this ink can be used to construct multifunctional advanced sensors with electrochemical,electrothermal,and deformation/piezoresistive responses,which demonstrate excellent performance in monitoring human health. 展开更多
关键词 carbon nanotubes(cnts) Cellulose nanofibers(CNFs) Conductive inks Dispersion PRINTABILITY Multifunctional sensors
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Effects of Orientation of Carbon Nanotubes on CNT Bundle Based Silk Composite Using Finite Element Method
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作者 Md Shihamul Islam Jerzy Szpunar 《Modeling and Numerical Simulation of Material Science》 2013年第1期33-38,共6页
Carbon Nanotubes (CNTs) have exceptional mechanical properties. They are the stiffest and strongest material, yet discovered, because of their high length to diameter ratio. In this paper a Representative Volume Eleme... Carbon Nanotubes (CNTs) have exceptional mechanical properties. They are the stiffest and strongest material, yet discovered, because of their high length to diameter ratio. In this paper a Representative Volume Element (RVE) model of CNT-silk composite is made. Then the orientations of the CNTs in the composite are varied and the effects of this variation are observed. The change is mainly observed between the interfaces of CNT and silk. Also there is a change in Young’s Modulus. COMSOL Multiphysics 4.2a is used for building model and performing simulations. 展开更多
关键词 carbon NANOTUBES (cnts) Orientation Interface Young’s MODULUS RVE FEM COMSOL MULTIPHYSICS 4.2a
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Study on Low-Temperature Properties of the Asphalt Modified by Carbon Nanotubes(CNTs)and Crumb Rubber(CR)
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作者 Liu Yumei Zheng Mulian +3 位作者 Liu Xia Wang Chongtao Cheng Yong Wang Ke 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2022年第1期36-47,共12页
The effect of adding crumb rubber(CR)and carbon nanotubes(CNTs)on the low-temperature properties of virgin asphalt was studied.Using the force-ductility test and the bending beam rheometer(BBR)test,the deformation res... The effect of adding crumb rubber(CR)and carbon nanotubes(CNTs)on the low-temperature properties of virgin asphalt was studied.Using the force-ductility test and the bending beam rheometer(BBR)test,the deformation resistance and rheological properties of asphalt samples at low temperatures were evaluated,respectively.Based on the result of BBR test,the creep functions of the Burgers model and the Zener model were used to fit the low-temperature creep characteristics of the asphalt samples.Furthermore,the differential scanning calorimetry(DSC)test and the attenuated total reflection-Fourier transform infrared spectroscopy(ATR-FTIR)test were utilized to appraise the low-temperature stability and chemical properties of asphalt samples,respectively.The results showed that CR significantly improved the low-temperature properties of virgin asphalt,while CNTs had little effect.Moreover,during the degradation of CR,aromatic and aliphatic components were released.In particular,the aliphatic components of CR-modified asphalt were much higher than those of virgin asphalt,which had a significant effect on improving the low-temperature properties of the asphalt.The DSC test results showed that CR enhanced the low-temperature stability of the asphalt,while the addition of CNTs presented a slightly negative effect. 展开更多
关键词 low-temperature properties crumb rubber(CR) carbon nanotubes(cnts) creep characteristic asphalt components
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AuNP@Co_(3)(HITP)_(2)-CNT纳米结构的制备及电化学传感性能
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作者 岳王香 戴灿源 +5 位作者 李京谦 胡珂祺 李轶凡 王文达 徐宏妍 胡杰 《微纳电子技术》 CAS 2024年第6期54-61,共8页
利用一步水热法和化学还原法制备了基于金纳米颗粒负载Co_(3)(HITP)_(2)-碳纳米管(AuNP@Co_(3)(HITP)_(2)-CNT)的纳米复合材料。利用X射线光电子能谱仪(XPS)和扫描电子显微镜(SEM)对其表面微观形貌和元素组成进行表征。构建了前列腺特... 利用一步水热法和化学还原法制备了基于金纳米颗粒负载Co_(3)(HITP)_(2)-碳纳米管(AuNP@Co_(3)(HITP)_(2)-CNT)的纳米复合材料。利用X射线光电子能谱仪(XPS)和扫描电子显微镜(SEM)对其表面微观形貌和元素组成进行表征。构建了前列腺特异性抗原(PSA)/牛血清蛋白(BSA)/PSA抗体(Ab)/AuNP@Co_(3)(HITP)_(2)-CNT/玻碳电极(GCE)电化学免疫传感器,并对PSA进行了检测,用循环伏安法(CV)、差分脉冲伏安法(DPV)和电化学阻抗谱(EIS)对其进行电化学性能分析测试。实验结果表明:基于AuNP@Co_(3)(HITP)_(2)-CNT纳米复合材料的电化学免疫传感器对PSA有较宽的检测范围,可达40 fg/mL~100 ng/mL,同时具有较好的特异性、稳定性和可重复性。 展开更多
关键词 电化学免疫传感器 导电金属有机框架(C-MOF) 纳米结构 碳纳米管(cnt) 金纳米颗粒(AuNP) 前列腺特异性抗原(PSA)
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CNTs增强EPDM绝热材料抗粒子增强机制研究
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作者 郭梦飞 杨佳沛 +4 位作者 余凯旋 刘凯 胡博智 杨家升 张延超 《固体火箭技术》 CSCD 北大核心 2024年第6期876-883,共8页
为了揭示碳纳米管(CNTs)增强三元乙丙橡胶(EPDM)绝热材料(CNTs-EPDM)的烧蚀特性以及CNTs对EPDM抗粒子冲刷性能的影响机制,采用粒子冲刷烧蚀发动机构建了高温高速粒子冲刷烧蚀环境,测试了CNTs-EPDM的抗粒子冲刷性能;采用扫描电镜、透射... 为了揭示碳纳米管(CNTs)增强三元乙丙橡胶(EPDM)绝热材料(CNTs-EPDM)的烧蚀特性以及CNTs对EPDM抗粒子冲刷性能的影响机制,采用粒子冲刷烧蚀发动机构建了高温高速粒子冲刷烧蚀环境,测试了CNTs-EPDM的抗粒子冲刷性能;采用扫描电镜、透射电镜观察CNTs-EPDM的烧蚀炭化层形貌,分析了微观尺度下CNTs对炭化层特性、炭化层内热化学消耗、气相沉积等的影响。结果表明,高温高速粒子射流冲刷烧蚀环境下,CNTs对炭化层力学性能的增强发挥主导作用,即相对于EPDM基础配方,CNTs-EPDM配方的炭化层展示出优异的抗压缩性能,帮助其更好地抵挡高温高速粒子射流的冲刷,由此增强了CNTs-EPDM的抗烧蚀性能,其炭化速率比基础配方下降了68.1%。 展开更多
关键词 固体火箭发动机 EPDM绝热材料 碳纳米管(cnts) 粒子冲刷 烧蚀机理
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A review of carbon nanotubes in modern electrochemical energy storage
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作者 SONG Yao-ming QIU Shi-xin +7 位作者 FENG Shu-xin ZUO Rui ZHANG Ya-ting JIA Ke XIA Xue CHEN Ming-ming JI Ke-meng WANG Cheng-yang 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第6期1037-1074,共38页
The quest for sustainable energy storage solutions is more critical than ever,with the rise in global energy demand and the urgency of transition from fossil fuels to renewable sources.Carbon nanotubes(CNTs),with thei... The quest for sustainable energy storage solutions is more critical than ever,with the rise in global energy demand and the urgency of transition from fossil fuels to renewable sources.Carbon nanotubes(CNTs),with their exceptional electrical conduct-ivity and structural integrity,are at the forefront of this endeavor,offering promising ways for the advance of electrochemical energy storage(EES)devices.This review provides an analysis of the synthesis,properties,and applications of CNTs in the context of EES.We explore the evolution of CNT synthesis methods,including arc discharge,laser ablation,and chemical vapor deposition,and highlight the recent developments in metal-organic framework-derived CNTs and a novel CNT aggregate with a three-dimensional ordered macroporous structure.We also examine the role of CNTs in improving the performance of various EES devices such as lith-ium-ion,lithium-metal,lithium-sulfur,sodium,and flexible batteries as well as supercapacitors.We underscore the challenges that remain,including the scalability of CNT synthesis and the integration of CNTs in electrode materials,and propose potential solu-tions and future research directions.The review presents a forward-looking perspective on the pivotal role of CNTs in shaping the fu-ture of sustainable EES technologies. 展开更多
关键词 carbon nanotubes cnt synthesis Metal-ion batteries Lithium-sulfur batteries Flexible batteries SUPERCAPACITORS
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Impacts of Parameter Scaling for Low-Power Applications Using CNTFET (Carbon Nanotube Field Effect Transistor) Models: A Comparative Assessment
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作者 Atheer Al-Shaggah Abdoul Rjoub Mohammed Khasawneh 《Journal of Energy and Power Engineering》 2014年第6期1142-1152,共11页
This paper provides an extension to the earlier work wherein a comparison between different models that had studied the effects of several parameters scaling on the performance of carbon nano tube field-effect transis... This paper provides an extension to the earlier work wherein a comparison between different models that had studied the effects of several parameters scaling on the performance of carbon nano tube field-effect transistors was presented. The evaluation for the studied models, with regard to the scaling effects, was to determine those which best reflect the very essence of carbon nano-tube technologies. Whereas the models subject this comparison (Fettoy, Roy, Stanford, and Southampton) were affected to varying degrees due to such parametric variations, the Stanford model was shown as still being valid for a wide range of chiralities and diameter sizes; a model that is also applicable for circuit simulations. In this paper, we present a comparative assessment of the various models subject to the study with regard to the effect of incorporating multiple carbon nanotubes in the channel region. We also assess the effect of oxide thickness on transistor performance in terms of the supply voltage threshold effects. Results leveraging our findings in this ongoing research endeavor reveal that many research efforts were not efficient to high degree due to high delay and not valid for circuit simulations. 展开更多
关键词 Ballistic effects cnt carbon nanotubes) CNFET carbon nanotube field-effect transistor) energy-saving technologies low-power applications compact modeling SPICE simulations.
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刮涂法制备GR/CNTs/PDMS柔性应变传感器
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作者 崔芳斌 张周强 +1 位作者 李成 陈芙蓉 《轻工机械》 CAS 2024年第6期52-57,共6页
针对柔性应变传感器的稳定性差、灵敏度低等问题,课题组研究采用石墨烯(graphene, GR)和碳纳米管(carbon nanotubes, CNTs)作为导电层,聚二甲基硅氧烷(polydimethylsiloxane, PDMS)作为基底,利用刮涂法制备了一种三明治型的柔性应变传... 针对柔性应变传感器的稳定性差、灵敏度低等问题,课题组研究采用石墨烯(graphene, GR)和碳纳米管(carbon nanotubes, CNTs)作为导电层,聚二甲基硅氧烷(polydimethylsiloxane, PDMS)作为基底,利用刮涂法制备了一种三明治型的柔性应变传感器。研究过程中,在导电材料质量分数为4%,石墨烯与碳纳米管质量比为3∶2的条件下,通过拉伸试验机对柔性应变传感器的力学性能、灵敏度和稳定性进行了测试。结果表明:在0~20%应变范围内,传感器具有良好的线性度,应力-应变线性相关系数为0.997 03;在0~20%应变范围内,随着应变的增加,灵敏度保持不变;此外,经过200次拉伸、放缩实验后,传感器仍保持良好的稳定性。 展开更多
关键词 柔性应变传感器 石墨烯 碳纳米管 刮涂法 灵敏度
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定位夹具对CNTs/6061Al复合材料超声波焊接接头质量影响研究
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作者 熊志林 谭范文 陈湘 《湖南工业职业技术学院学报》 2024年第2期1-5,共5页
采用超声波焊接制备CNTs增强铝基复合材料,针对超声波焊接定位不准,接头搭接面不贴合等问题,基于定位夹具以保证焊接过程质量,在工艺参数组合焊接能量500J,焊接压力0.45MPa,焊接振幅35μm下进行焊接试验。利用扫描电镜(SEM)、能谱仪(EDS... 采用超声波焊接制备CNTs增强铝基复合材料,针对超声波焊接定位不准,接头搭接面不贴合等问题,基于定位夹具以保证焊接过程质量,在工艺参数组合焊接能量500J,焊接压力0.45MPa,焊接振幅35μm下进行焊接试验。利用扫描电镜(SEM)、能谱仪(EDS)等对接头界面组织和成分进行了研究,并对焊接接头进行了剪切力和硬度测试。结果表明:在定位夹具下焊接的接头界面发生明显塑性且CNTs在铝基体扩散较好,接头强度显著提升,剪切力平均值达到786.55N、硬度为72HV,本研究对现有的有色金属超声波焊接制造工艺提出一种新的解决思路和方案,具有一定的工程应用价值和经济效益。 展开更多
关键词 超声波焊接 定位夹具 碳纳米管 铝基复合材料 接头强度
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锰基金属有机骨架复合CNT电极的制备及其储锂性能
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作者 王亚清 苏芸 +2 位作者 李娜 都玲玲 王斌 《微纳电子技术》 CAS 2024年第9期11-17,共7页
为了制备出高性能的锂离子电池负极材料,以1,4-二氰基苯、碳纳米管(CNT)和氯化锰为原料,通过溶剂热法成功合成了一种新型锰基金属有机框架复合碳纳米管(Mn-MOF/CNT)材料。通过扫描/透射电子显微镜(SEM/TEM)、X射线衍射仪(XRD)和比表面... 为了制备出高性能的锂离子电池负极材料,以1,4-二氰基苯、碳纳米管(CNT)和氯化锰为原料,通过溶剂热法成功合成了一种新型锰基金属有机框架复合碳纳米管(Mn-MOF/CNT)材料。通过扫描/透射电子显微镜(SEM/TEM)、X射线衍射仪(XRD)和比表面积分析仪研究了Mn-MOF/CNT的结构和形貌。将Mn-MOF/CNT用作锂离子电池负极材料,表现出较好的储锂性能。Mn-MOF/CNT负极材料在0.1 A·g^(-1)的电流密度下,首圈循环的充电比容量达到1143 mA·h·g^(-1),经过100圈循环后,充电比容量还能保持787 mA·h·g^(-1)。同时,Mn-MOF/CNT负极材料展现出了优异的倍率性能,经过10 A·g^(-1)的大电流密度循环后,电流密度再恢复到0.1 A·g^(-1)时,其充电比容量仍然可以恢复到729 mA·h·g^(-1)。因此该新型Mn-MOF/CNT负极材料具有潜在的商业化前景。 展开更多
关键词 负极材料 锂离子电池 锰基金属有机骨架(Mn-MOF) 电化学性能 碳纳米管(cnt)
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CNTs/KClO_4复合材料的形貌特征及热行为 被引量:7
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作者 张步允 焦清介 +4 位作者 任慧 贾永杰 张阔 武冠男 刘国权 《含能材料》 EI CAS CSCD 北大核心 2011年第4期401-404,共4页
为有效避免点火药中纳米级氧化剂颗粒的团聚,进一步提高点传火稳定性,通过NH4ClO4溶液和KOH溶液的复分解反应制备了碳纳米管/高氯酸钾(CNTs/KClO4)复合材料。用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、差热分析(DSC)和比表面积(SSA... 为有效避免点火药中纳米级氧化剂颗粒的团聚,进一步提高点传火稳定性,通过NH4ClO4溶液和KOH溶液的复分解反应制备了碳纳米管/高氯酸钾(CNTs/KClO4)复合材料。用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、差热分析(DSC)和比表面积(SSA)分析研究了CNTs/KClO4复合材料的形貌特征及热行为。结果表明:用这种方法制备的KClO4能有效涂敷在碳纳米管上。与纯CNTs相比,负载KClO4的碳纳米管管径明显增粗,CNTs/KClO4复合材料的比表面积降低了40.719 m2·g-1。与KClO4相比,CNTs/KClO4复合材料的热分解温度前移了75℃,晶型转变峰温前移了5℃。与以KClO4为原料制备的Mo/KClO4点火药相比,以CNTs/KClO4复合材料为原料制备的Mo/KClO4点火药的热导率提高了33.9%。 展开更多
关键词 物理化学 碳纳米管(cnts) 高氯酸钾(KClO4) 负载 复合材料
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