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巯基改性AgNWs用于提升AgNWs/聚乙烯醇/硼砂水凝胶电导率
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作者 朱海鑫 孙菲 +4 位作者 曾俊 姜珊珊 黄月文 宋斌 王斌 《广州化学》 CAS 2024年第1期11-15,I0001,F0003,共7页
银纳米线(AgNWs)有着优异的导电性、可弯曲性和较大的长径比等性能,广泛应用在柔性电子器件领域。然而,银纳米线之间高的接触电阻和在基体中较差的分散性会极大地降低其导电网络地电导率。首先通过多元醇法成功合成了AgNWs,其平均长度为... 银纳米线(AgNWs)有着优异的导电性、可弯曲性和较大的长径比等性能,广泛应用在柔性电子器件领域。然而,银纳米线之间高的接触电阻和在基体中较差的分散性会极大地降低其导电网络地电导率。首先通过多元醇法成功合成了AgNWs,其平均长度为79.44μm,平均直径为102.29 nm。然后利用S跟Ag之间地强配位作用,采用含有-SH和-OH的改性剂对AgNWs表面进行改性,研究其在水凝胶中的分散性以及对水凝胶电导率的贡献。研究结果表明,采用硫代甘油(MPD)改性剂对AgNWs改性的效果最佳。当MPD的乙醇分散液(5 mM)与AgNWs的乙醇分散液(2 mg/m L)体积比为1∶1时,改性剂在AgNWs表面分布相对均匀,没有出现大面积的团聚现象。将改性的AgNWs加入到聚乙烯醇(PVA)/硼砂水凝胶中,当添加量为0.04%时,水凝胶电导率为0.858 S/m,相比于未改性AgNWs的PVA/硼砂水凝胶电导率提高了94%。 展开更多
关键词 银纳米线 改性 硫代甘油 水凝胶 电导率
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长径比大于1200的超长AgNWs制备及影响因素
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作者 曾俊 朱海鑫 +2 位作者 姜珊珊 孙菲 王斌 《广州化学》 CAS 2024年第1期1-6,I0001,共7页
采用改进多元醇法制备了长径比大于1200的超长银纳米线(AgNWs)。系统研究了反应温度(120~170℃)、反应时间(0.5~3h)、搅拌速率(0~300rpm)、聚乙烯吡咯烷酮(PVP)分子量(58000~1280000 g/mol)、氯化铁(FeCl_(3))乙二醇溶液添加量(0~5.6 g,... 采用改进多元醇法制备了长径比大于1200的超长银纳米线(AgNWs)。系统研究了反应温度(120~170℃)、反应时间(0.5~3h)、搅拌速率(0~300rpm)、聚乙烯吡咯烷酮(PVP)分子量(58000~1280000 g/mol)、氯化铁(FeCl_(3))乙二醇溶液添加量(0~5.6 g,5 mM)和PVP添加量(0.2~1 g)对AgNWs形貌的影响。在最佳实验条件下,制备的超长Ag NWs平均长度约96.6μm,平均直径约80.0 nm。此外,通过简单的调控PVP添加量可以获得不同长度和直径的Ag NWs。 展开更多
关键词 银纳米线 多元醇法 超长 高长径比 氯化铁
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Hard Superconducting Gap in Pb Te Nanowires
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作者 高益淳 宋文玉 +15 位作者 杨帅 于泽昊 李睿东 苗文韬 王禹灏 陈芳婷 耿祖汗 杨利宁 夏泽洲 冯硝 臧运祎 李琳 尚汝南 薛其坤 何珂 张浩 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第3期171-180,共10页
Semiconductor nanowires coupled to a superconductor provide a powerful testbed for quantum device physics such as Majorana zero modes and gate-tunable hybrid qubits.The performance of these quantum devices heavily rel... Semiconductor nanowires coupled to a superconductor provide a powerful testbed for quantum device physics such as Majorana zero modes and gate-tunable hybrid qubits.The performance of these quantum devices heavily relies on the quality of the induced superconducting gap.A hard gap. 展开更多
关键词 nanowires MAJORANA SUPERCONDUCTOR
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Determination of Thermal Properties of Unsmooth Si Nanowires
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作者 刘世贤 Alexander A.Barinov +1 位作者 訚菲 Vladimir I.Khvesyuk 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第1期51-56,共6页
We estimate the thermal properties of unsmooth Si nanowires,considering key factors such as size(diameter),surface texture(roughness)and quantum size effects(phonon states)at different temperatures.For nanowires with ... We estimate the thermal properties of unsmooth Si nanowires,considering key factors such as size(diameter),surface texture(roughness)and quantum size effects(phonon states)at different temperatures.For nanowires with a diameter of less than 20 nm,we highlight the importance of quantum size effects in heat capacity calculations,using dispersion relations derived from the modified frequency equation for the elasticity of a rod.The thermal conductivities of nanowires with diameters of 37,56,and 115nm are predicted using the Fuchs–Sondheimer model and Soffer’s specular parameter.Notably,the roughness parameters are chosen to reflect the technological characteristics of the real surfaces.Our findings reveal that surface texture plays a significant role in thermal conductivity,particularly in the realm of ballistic heat transfer within nanowires.This study provides practical recommendations for developing new thermal management materials. 展开更多
关键词 nanowires ROUGHNESS SIZE
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基于CDs@SiNWs的光电化学免疫传感器构建及性能研究
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作者 黄粤夷 直士博 李慧珺 《有色金属材料与工程》 CAS 2024年第3期32-37,共6页
采用金属辅助化学蚀刻法制备高定向硅纳米线阵列(silicon nanowire arrays, SiNWs),结合碳点(carbon dots,CDs)改性制备了一种新型无标记光电免疫传感器,用于心肌肌钙蛋白I(cardiac troponin I, cTnI)的检测。N型SiNWs作为光阳极,可获... 采用金属辅助化学蚀刻法制备高定向硅纳米线阵列(silicon nanowire arrays, SiNWs),结合碳点(carbon dots,CDs)改性制备了一种新型无标记光电免疫传感器,用于心肌肌钙蛋白I(cardiac troponin I, cTnI)的检测。N型SiNWs作为光阳极,可获得强的光电信号基底响应。采用旋涂法将CDs负载于SiNWs表面,可以提高SiNWs对可见光的吸收能力,促进光生载流子分离,从而提高SiNWs的光电性能;同时,CDs为抗体连接提供了羧基活性位点。基于CDs@SiNWs的光电免疫传感器对cTnI的检测具有良好的线性范围(0.005~5.000 ng/mL)和较低的检出限(3.79 pg/mL)。所设计的光电化学(photoelectrochemical, PEC)免疫传感器具有良好的灵敏度、稳定性和重复性。该电极可实现无标签检测,为实现c TnI的即时检测提供了新的途径。 展开更多
关键词 光电免疫传感器 心肌肌钙蛋白I 硅纳米线阵列 碳点
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Diameter-dependent ultra-high thermoelectric performance of ZnO nanowires
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作者 聂祎楠 唐桂华 +2 位作者 李一斐 张敏 赵欣 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第4期86-94,共9页
Zinc oxide(ZnO)shows great potential in electronics,but its large intrinsic thermal conductivity limits its thermoelectric applications.In this work,we explore the significant carrier transport capacity and diameter-d... Zinc oxide(ZnO)shows great potential in electronics,but its large intrinsic thermal conductivity limits its thermoelectric applications.In this work,we explore the significant carrier transport capacity and diameter-dependent thermoelectric characteristics of wurtzite-ZnO(0001)nanowires based on first-principles and molecular dynamics simulations.Under the synergistic effect of band degeneracy and weak phonon-electron scattering,P-type(ZnO)_(73) nanowires achieve an ultrahigh power factor above 1500μW·cm^(-1)·K^(-2)over a wide temperature range.The lattice thermal conductivity and carrier transport properties of ZnO nanowires exhibit a strong diameter size dependence.When the ZnO nanowire diameter exceeds 12.72A,the carrier transport properties increase significantly,while the thermal conductivity shows a slight increase with the diameter size,resulting in a ZT value of up to 6.4 at 700 K for P-type(ZnO)_(73).For the first time,the size effect is also illustrated by introducing two geometrical configurations of the ZnO nanowires.This work theoretically depicts the size optimization strategy for the thermoelectric conversion of ZnO nanowires. 展开更多
关键词 ZnO nanowire size effect thermoelectric performance deformation potential theory
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Embedded high-quality ternary GaAs_(1−x)Sb_(x) quantum dots in GaAs nanowires by molecular-beam epitaxy
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作者 Xiyu Hou Lianjun Wen +6 位作者 Fengyue He Ran Zhuo Lei Liu Hailong Wang Qing Zhong Dong Pan Jianhua Zhao 《Journal of Semiconductors》 EI CAS CSCD 2024年第8期18-24,共7页
Semiconductor quantum dots are promising candidates for preparing high-performance single photon sources.A basic requirement for this application is realizing the controlled growth of high-quality semiconductor quantu... Semiconductor quantum dots are promising candidates for preparing high-performance single photon sources.A basic requirement for this application is realizing the controlled growth of high-quality semiconductor quantum dots.Here,we report the growth of embedded GaAs_(1−x)Sb_(x) quantum dots in GaAs nanowires by molecular-beam epitaxy.It is found that the size of the GaAs_(1−x)Sb_(x) quantum dot can be well-defined by the GaAs nanowire.Energy dispersive spectroscopy analyses show that the antimony content x can be up to 0.36 by tuning the growth temperature.All GaAs_(1−x)Sb_(x) quantum dots exhibit a pure zinc-blende phase.In addition,we have developed a new technology to grow GaAs passivation layers on the sidewalls of the GaAs_(1−x)Sb_(x) quantum dots.Different from the traditional growth process of the passivation layer,GaAs passivation layers can be grown simultaneously with the growth of the embedded GaAs_(1−x)Sb_(x) quantum dots.The spontaneous GaAs passivation layer shows a pure zinc-blende phase due to the strict epitaxial relationship between the quantum dot and the passivation layer.The successful fabrication of embedded high-quality GaAs_(1−x)Sb_(x) quantum dots lays the foundation for the realization of GaAs_(1−x)Sb_(x)-based single photon sources. 展开更多
关键词 semiconductor quantum dot NANOWIRE GaAs_(1−x)Sb_(x) molecular-beam epitaxy
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BTO NWs/PVDF柔性复合薄膜的制备及其压电性能研究
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作者 郭凡 李银辉 +2 位作者 马俊格 梁建国 李朋伟 《压电与声光》 CAS 北大核心 2023年第3期389-396,402,共9页
该文通过两步水热法制备了钛酸钡纳米线(BTO NWs),采用旋涂法与聚偏氟乙烯(PVDF)复合制备BTO NWs/PVDF复合薄膜。系统地研究了水热反应中不同NaOH浓度、不同反应时间及不同BTO NWs掺杂量对BTO NWs/PVDF复合薄膜压电输出性能的影响,并与... 该文通过两步水热法制备了钛酸钡纳米线(BTO NWs),采用旋涂法与聚偏氟乙烯(PVDF)复合制备BTO NWs/PVDF复合薄膜。系统地研究了水热反应中不同NaOH浓度、不同反应时间及不同BTO NWs掺杂量对BTO NWs/PVDF复合薄膜压电输出性能的影响,并与商用钛酸钡纳米球(BTO NPs)制备的BTO NPs/PVDF复合薄膜进行了压电性能对比。结果表明,当NaOH浓度为10 mol/L,反应时间为10 h时,BTO NWs/PVDF复合薄膜开路电压和短路电流分别可达5.42 V和1.81μA。当BTO NWs掺杂量(质量分数)为20%时,复合压电薄膜的开路电压可达9.34 V,短路电流可达2.15μA,分别是BTO NPs/PVDF复合薄膜输出电压和电流的1.92倍和1.49倍。当负载电阻值为5 MΩ时,BTO NWs/PVDF复合薄膜输出功率可达1.44μW。经过4000次循环敲击测试,BTO NWs/PVDF复合薄膜表现出良好的机械稳定性,其有望在自供电器件、柔性可穿戴电子设备等领域得到广泛应用。 展开更多
关键词 钛酸钡纳米线(BTO nws) 聚偏氟乙烯(PVDF) 复合压电薄膜 输出特性
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基于Cu NWs/Ag NWs/棉纺织品的疏水性可穿戴压力传感器 被引量:1
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作者 屈银虎 曹天宇 +2 位作者 郑姣姣 张红 左文靖 《西安工程大学学报》 CAS 2023年第3期7-14,共8页
为提升可穿戴传感器的传感性能,拓宽其应用范围,降低其制备成本,采用水热法制备铜纳米线(Cu NWs)墨水,多元醇法制备银纳米线(Ag NWs)墨水,并将棉纺织品依次浸渍到Cu NWs墨水与Ag NWs墨水中,制备Cu NWs/Ag NWs/棉纺织品传感器;研究Ag NW... 为提升可穿戴传感器的传感性能,拓宽其应用范围,降低其制备成本,采用水热法制备铜纳米线(Cu NWs)墨水,多元醇法制备银纳米线(Ag NWs)墨水,并将棉纺织品依次浸渍到Cu NWs墨水与Ag NWs墨水中,制备Cu NWs/Ag NWs/棉纺织品传感器;研究Ag NWs浓度对传感器电学性质以及疏水性质的影响,并通过浸渍-干燥次数调控实现Cu NWs/Ag NWs/棉纺织品微观形貌以及传感器性能的优化。研究表明,Cu NWs/Ag NWs/棉纺织品传感器具有优异的疏水性,其水接触角高达147°;Ag NWs浓度的增大有利于提高Cu NWs/Ag NWs/棉纺织品的导电能力,但对其疏水性影响不大;当浸渍次数为3次时,Cu NWs/Ag NWs/棉纺织品内部形成稳固、优异的导电网络,传感器性能最优,其灵敏度高达5.64 kPa^(-1),检测范围为1.5~20 kPa,响应恢复时间分别为300、200 ms,且对微笑、握拳、触摸等行为显示出规律的电流响应。实验证明该传感器在健康监测与水下运动检测领域有着良好的应用前景。 展开更多
关键词 可穿戴传感器 Cu nws/Ag nws 棉织物 疏水性
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ZnO nanowires based degradable high-performance photodetectors for eco-friendly green electronics 被引量:1
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作者 Bhavani Prasad Yalagala Abhishek Singh Dahiya Ravinder Dahiya 《Opto-Electronic Advances》 SCIE EI CAS CSCD 2023年第2期11-25,共15页
Disposable devices designed for single and/or multiple reliable measurements over a short duration have attracted considerable interest recently. However, these devices often use non-recyclable and non-biodegradable m... Disposable devices designed for single and/or multiple reliable measurements over a short duration have attracted considerable interest recently. However, these devices often use non-recyclable and non-biodegradable materials and wasteful fabrication methods. Herein, we present ZnO nanowires(NWs) based degradable high-performance UV photodetectors(PDs) on flexible chitosan substrate. Systematic investigations reveal the presented device exhibits excellent photo response, including high responsivity(55 A/W), superior specific detectivity(4×10^(14) jones), and the highest gain(8.5×10~(10)) among the reported state of the art biodegradable PDs. Further, the presented PDs display excellent mechanical flexibility under wide range of bending conditions and thermal stability in the measured temperature range(5–50 ℃).The biodegradability studies performed on the device, in both deionized(DI) water(pH≈6) and PBS solution(pH=7.4),show fast degradability in DI water(20 mins) as compared to PBS(48 h). These results show the potential the presented approach holds for green and cost-effective fabrication of wearable, and disposable sensing systems with reduced adverse environmental impact. 展开更多
关键词 transient electronics degradable devices ZnO nanowire CHITOSAN UV photodetector printed electronics
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Carbon nanotube-hyperbranched polymer core-shell nanowires with highly accessible redox-active sites for fast-charge organic lithium batteries 被引量:1
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作者 Zhonghui Sun Meng Shu +4 位作者 Jiabin Li Bing Liu Hongyan Yao Shaowei Guan Zhenhua Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第3期30-36,I0002,共8页
Organic electrode materials are promising for lithium-ion batteries(LIBs) because of their environmental friendliness and structural diversity.However,they always suffer from limited capacity,poor cycling stability,an... Organic electrode materials are promising for lithium-ion batteries(LIBs) because of their environmental friendliness and structural diversity.However,they always suffer from limited capacity,poor cycling stability,and rate performance.Herein,hexaazatrinaphthalene-based azo-linked hyperbranched polymer(HAHP) is designed and synthesized as a cathode for LIBs.However,the densely stacked morphology lowers the chance of the active sites participating in the redox reaction.To address this issue,the singlewalled carbon nanotube(SWCNT) template is used to induce the growth of nanosized HAHP on the surface of SWCNTs.The HAHP@SWCNT nanocomposites have porous structures and highly accessible active sites.Moreover,the strong π-π interaction between HAHP and highly conductive SWCNTs effectively endows the HAHP@SWCNT nanocomposites with improved cycling stability and fast charge-discharge rates.As a result,the HAHP@SWCNT nanocomposite cathode shows a high specific capacity(320.4 mA h g^(-1)at 100 mA g^(-1)),excellent cycling stability(800 cycles;290 mA h g^(-1)at 100 mA g^(-1),capacity retained 91%) and outstanding rate performance(235 mA h g^(-1)at 2000 mA g^(-1),76% capacity retention versus 50 mA g^(-1)).This work provides a strategy to combine the macromolecular structural design and micromorphology control of electrode materials for obtaining organic polymer cathodes for high-performance LIBs. 展开更多
关键词 Organic electrode Organic lithium batteries Core-shell nanowire Hexaazatrinaphthylene Polymer electrode materials
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Optimized CeO_(2) Nanowires with Rich Surface Oxygen Vacancies Enable Fast Li-Ion Conduction in Composite Polymer Electrolytes 被引量:1
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作者 Lu Gao Nan Wu +7 位作者 Nanping Deng Zhenchao Li Jianxin Li Yong Che Bowen Cheng Weimin Kang Ruiping Liu Yutao Li 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第1期218-223,共6页
Low-cost and flexible solid polymer electrolytes are promising in all-solid-state Li-metal batteries with high energy density and safety.However,both the low room-temperature ionic conductivities and the small Li^(+)t... Low-cost and flexible solid polymer electrolytes are promising in all-solid-state Li-metal batteries with high energy density and safety.However,both the low room-temperature ionic conductivities and the small Li^(+)transference number of these electrolytes significantly increase the internal resistance and overpotential of the battery.Here,we introduce Gd-doped CeO_(2) nanowires with large surface area and rich surface oxygen vacancies to the polymer electrolyte to increase the interaction between Gd-doped CeO_(2) nanowires and polymer electrolytes,which promotes the Li-salt dissociation and increases the concentration of mobile Li ions in the composite polymer electrolytes.The optimized composite polymer electrolyte has a high Li-ion conductivity of 5×10^(-4)4 S cm^(-1) at 30℃ and a large Li+transference number of 0.47.Moreover,the composite polymer electrolytes have excellent compatibility with the metallic lithium anode and high-voltage LiNi_(0.8)Mn _(0.1)Co_(0.1)O_(2)(NMC)cathode,providing the stable cycling of all-solid-state batteries at high current densities. 展开更多
关键词 composite polymer electrolytes Gd-doped CeO_(2)nanowires Li-ion conduction oxygen vacancies surface interaction
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Periodic transparent nanowires in ITO film fabricated via femtosecond laser direct writing 被引量:2
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作者 Qilin Jiang Long Chen +8 位作者 Jukun Liu Yuchan Zhang Shian Zhang Donghai Feng Tianqing Jia Peng Zhou Qian Wang Zhenrong Sun Hongxing Xu 《Opto-Electronic Science》 2023年第1期11-22,共12页
This paper reports the fabrication of regular large-area laser-induced periodic surface structures(LIPSSs)in indium tin oxide(ITO)films via femtosecond laser direct writing focused by a cylindrical lens.The regular LI... This paper reports the fabrication of regular large-area laser-induced periodic surface structures(LIPSSs)in indium tin oxide(ITO)films via femtosecond laser direct writing focused by a cylindrical lens.The regular LIPSSs exhibited good properties as nanowires,with a resistivity almost equal to that of the initial ITO film.By changing the laser fluence,the nanowire resistances could be tuned from 15 to 73 kΩ/mm with a consistency of±10%.Furthermore,the average transmittance of the ITO films with regular LIPSSs in the range of 1200-2000 nm was improved from 21%to 60%.The regular LIPSS is promising for transparent electrodes of nano-optoelectronic devices-particularly in the near-infrared band. 展开更多
关键词 transparent nanowires periodic surface nanostructures femtosecond laser direct writing ITO film anisotropic electrical conductivity
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核壳结构SiCNWs@SiO_(2)/PVDF复合材料的制备与介电储能特性
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作者 苏宇 翁凌 +2 位作者 王小明 关丽珠 张笑瑞 《材料导报》 CSCD 北大核心 2023年第11期190-200,共11页
为了加速新能源电子器件向微型化和集成化的方向发展,提高电子器件内部介电复合材料的性能至为重要,介电复合材料的介电性能和储能性能直接影响电子器件的质量,如何提高介电复合材料的介电性能和储能性能等引起了研究者们的广泛关注。... 为了加速新能源电子器件向微型化和集成化的方向发展,提高电子器件内部介电复合材料的性能至为重要,介电复合材料的介电性能和储能性能直接影响电子器件的质量,如何提高介电复合材料的介电性能和储能性能等引起了研究者们的广泛关注。以聚偏氟乙烯(PVDF)为基体,碳化硅纳米线(SiCNWs)和核壳结构碳化硅纳米线@二氧化硅(SiCNWs@SiO_(2))为填料,通过溶液共混相转换法及热压工艺制备出一系列的SiCNWs/PVDF二元复合材料和SiCNWs@SiO_(2)/PVDF复合材料。探究介电纳米填料的表面修饰对PVDF基复合材料的微观结构、宏观介电性能和储能性能等的影响。实验结果表明,硅烷偶联剂KH550成功改性SiCNWs;通过一步法热氧化工艺成功制备出具有典型核壳结构的SiCNWs@SiO_(2)纳米线,SiO_(2)壳层的厚度随着SiCNWs热氧化时间的延长而增大,当SiCNWs热氧化时间为10 h,SiO_(2)壳层的厚度为6.5 nm;采用相转换法和热压处理成功制备一系列的SiCNWs/PVDF二元复合材料和SiCNWs@SiO_(2)/PVDF复合材料,SiCNWs和SiCNWs@SiO_(2)与PVDF基体成功复合;当SiCNWs掺杂量较大时,SiCNWs/PVDF二元复合材料出现明显的团聚现象,核壳结构SiCNWs@SiO_(2)纳米线的引入,有效地提升纳米填料在聚合物基体中的分散性。对比纯PVDF,SiCNWs的引入大幅度提高了复合材料的介电常数,但其介电损耗和电导率较大。将核壳结构SiCNWs@SiO_(2)纳米线嵌入PVDF基体中,使复合材料在保持高介电常数的同时不同程度地降低了介电损耗和电导率,同时复合材料的击穿强度也有较大的提升。25%(质量分数)SiCNWs@SiO_(2)/PVDF(10 h)复合材料在极限电场强度下获得的最大放电能量密度分别为0.111 J/cm 3,获得的放电效率分别为53.06%,有效提升了复合材料的储能性能。 展开更多
关键词 聚偏氟乙烯 碳化硅纳米线 核壳结构 介电性能 储能密度
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CNTs/BTNWs/PVDF三相复合材料的制备及介电性能研究
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作者 张阳 蔡会武 +3 位作者 杜月 王珂凡 强悦悦 苏鹏程 《化工新型材料》 CAS CSCD 北大核心 2023年第10期91-96,共6页
采用两步水热法制得高长径比钛酸钡纳米线(BTNWs),并采用溶液法制备了介电性能优异的碳纳米管(CNTs)/BTNWs/聚偏氟乙烯(PVDF)三相复合材料,研究了CNTs和BTNWs掺入量对三相复合材料介电性能和击穿性能的影响。通过扫描电子显微镜和X射线... 采用两步水热法制得高长径比钛酸钡纳米线(BTNWs),并采用溶液法制备了介电性能优异的碳纳米管(CNTs)/BTNWs/聚偏氟乙烯(PVDF)三相复合材料,研究了CNTs和BTNWs掺入量对三相复合材料介电性能和击穿性能的影响。通过扫描电子显微镜和X射线衍射仪对三相复合材料的形貌、结晶行为进行了表征。结果表明:当水热温度为95℃、反应时间为24h时,BTNWs的长径比最高;CNTs及BTNWs在复合材料中均匀分散无明显团聚现象。介电性能分析表明:BTNWs能够有效降低CNTs之间的接触,有效提升复合材料介电性能和击穿性能;在频率为10^(3)Hz条件下,当CNTs掺入量为5%(质量分数),BTNWs掺入量为15%(质量分数)时三相复合材料的相对介电常数高达24.7且介电损耗仅为0.12。 展开更多
关键词 钛酸钡纳米线 碳纳米管 水热法 聚偏氟乙烯
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PVDF@AgNWs复合压电发电机的制备与性能研究
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作者 陈伟 王燕 +1 位作者 胡永达 陈金菊 《电子元件与材料》 CAS 北大核心 2023年第12期1424-1431,共8页
采用静电纺丝法和退火后处理工艺制备高β相含量的聚偏氟乙烯(PVDF)纤维膜,并通过复合银纳米线(AgNWs)形成导电网络来获得高性能PVDF@AgNWs压电发电机。研究了制备工艺(静电纺丝、退火)及AgNWs添加量对器件压电输出性能的影响,结果表明... 采用静电纺丝法和退火后处理工艺制备高β相含量的聚偏氟乙烯(PVDF)纤维膜,并通过复合银纳米线(AgNWs)形成导电网络来获得高性能PVDF@AgNWs压电发电机。研究了制备工艺(静电纺丝、退火)及AgNWs添加量对器件压电输出性能的影响,结果表明,电纺PVDF纤维膜经退火并控制AgNWs质量分数0.10%条件下,PVDF@AgNWs压电发电机在5 MPa压力下,可输出约114 V压电电压及约1.3×10-7 A电流。该压电发电机具有良好的能量采集性能,可直接为电容器充电,并可驱动LCD显示模组,在自供电柔性可穿戴电子领域具有应用潜力。 展开更多
关键词 聚偏氟乙烯 银纳米线 静电纺丝 退火 压电发电机
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A simulation study of polarization characteristics of ultrathin CsPbBr3 nanowires with different cross-section shapes and sizes
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作者 杨康 胡回清 +3 位作者 王娇娇 邓玲玲 陆云清 王瑾 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第2期341-346,共6页
The polarization characteristics of ultrathin CsPbBr3nanowires are investigated. Especially, for the height of crosssection of nanowires between 2 nm and 25 nm, the normalized intensity and polarization ratio ρ of Cs... The polarization characteristics of ultrathin CsPbBr3nanowires are investigated. Especially, for the height of crosssection of nanowires between 2 nm and 25 nm, the normalized intensity and polarization ratio ρ of CsPbBr3nanowires with triangular, square and hexagonal cross-section shapes are compared. The results show that, along with the increase of the height of cross-section, the polarization ratios of these three nanowires decrease until T = 15 nm, and increase afterwards.Also, along with the increase of the cross-section area up to 100 nm~2, the polarization ratios of these three nanowires increase too. In general, for the same height or area, the polarization ratio ρ of these nanowires follows ρhexagon> ρsquare>ρtriangle. Therefore, the nanowire with the hexagonal cross-section should be chosen, where for a cross-section height of 2 nm and a length-height ratio of 20 : 1, the maximal polarization ratio is 0.951 at the longitudinal center of the NW. Further,for the hexagonal NW with a cross-section height of 10 nm, the hexagonal NW with a length-height ratio of 45 : 1 exhibits the maximal polarization ratio at the longitudinal center of the NW. These simulation results predict the feasible size and shape of CsPbBr3nanowire devices with high polarization ratios. 展开更多
关键词 CsPbBr3 NANOWIRE polarization characteristics
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Coral-like and binder-free carbon nanowires for potassium dual-ion batteries with superior rate capability and long-term cycling life
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作者 Min Wang Qirong Liu +2 位作者 Guangming Wu Jianmin Ma Yongbing Tang 《Green Energy & Environment》 SCIE EI CSCD 2023年第2期548-558,共11页
Owing to the advantages of high operating voltage,environmental benignity,and low cost,potassium-based dual-ion batteries(KDIBs)have been considered as a potential candidate for large-scale energy storage.However,KDIB... Owing to the advantages of high operating voltage,environmental benignity,and low cost,potassium-based dual-ion batteries(KDIBs)have been considered as a potential candidate for large-scale energy storage.However,KDIBs generally suffer from poor cycling performance and unsatisfied capacity,and inactive components of conductive agents,binders,and current collector further lower their overall capacity.Herein,we prepare coral-like carbon nanowres(CCNWs)doped with nitrogen as a binder-free anode material for K^(+)-ion storage,in which the unique coral-like porous nanostructure and amorphous/short-range-ordered composite feature are conducive to enhancing the structural stability,to facilitating the ion transfer and to boosting the full utilization of active sites during potassiation/de-potassiation process.As a result,the CCNW anode possesses a hybrid K^(+)-storage mechanism of diffusive behavior and capacitive adsorption,and stably delivers a high capacity of 276 mAh g^(-1)at 50 mA g^(-1),good rate capability up to 2 A g^(-1),and long-term cycling stability with 93%capacity retention after 2000 cycles at 1 A g^(-1).Further,assembling this CCNW anode with an environmentally benign expanded graphite(EG)cathode yields a proof-of-concept KDIB,which shows a high specific capacity of 134.4 mAh g^(-1)at 100 mA g^(-1),excellent rate capability of 106.5 mAh g^(-1)at 1 A g^(-1),and long-term cycling stability over 1000 cycles with negligible capacity loss.This study provides a feasible approach to developing high-performance anodes for potassium-based energy storage devices. 展开更多
关键词 Carbon nanowires Binder-free K-ion Dual-ion batteries Structural stability
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Monodispersed ultrathin twisty PdBi alloys nanowires assemblies with tensile strain enhance C_(2+)alcohols electrooxidation
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作者 Xianzhuo Lao Ze Li +4 位作者 Likang Yang Ben Zhang Wanneng Ye Aiping Fu Peizhi Guo 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第4期279-290,共12页
Direct alcohol fuel cells(DAFCs)are powered by the alcohol electro-oxidation reaction(AOR),where an electrocatalyst with an optimal electronic structure can accelerate the sluggish AOR.Interestingly,strain engineering... Direct alcohol fuel cells(DAFCs)are powered by the alcohol electro-oxidation reaction(AOR),where an electrocatalyst with an optimal electronic structure can accelerate the sluggish AOR.Interestingly,strain engineering in hetero-catalysis offers a promising route to boost their catalytic activity.Herein,we report on a class of monodispersed ultrathin twisty PdBi alloy nanowires(TNWs)assemblies with face-centered structures that drive AORs.These thin nanowire structures expose a large number of reactive sites.Strikingly,Pd_(6)Bi_(1)TNWs show an excellent current density of 2066,3047,and 1231 mA mg_(Pd)^(-1)for oxidation of ethanol,ethylene glycol,and glycerol,respectively.The“volcano-like”behaviors observed on PdBi TNWs for AORs indicate that the maximum catalytic mass activity is a well balance between active intermediates and blocking species at the interface.This study offers an effective and universal method to build novel nanocatalysts in various applications by rationally designing highly efficient catalysts with specific strain. 展开更多
关键词 PdBi nanowires Strain engineering Ligand exchange Synergetic effect Fuel cells
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Pick-up strategies for and electrical characterization of ZnO nanowires with a SEM-based nanomanipulator
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作者 Mei Liu Lingdi Kong +5 位作者 Weilin Su Aristide Djoulde Kai Cheng Jinbo Chen Jinjun Rao Zhiming Wang 《Nanotechnology and Precision Engineering》 CAS CSCD 2023年第1期26-31,共6页
Because of their unique mechanical and electrical properties,zinc oxide(ZnO)nanowires are used widely in microscopic and nanoscopic devices and structures,but characterizing them remains challenging.In this paper,two ... Because of their unique mechanical and electrical properties,zinc oxide(ZnO)nanowires are used widely in microscopic and nanoscopic devices and structures,but characterizing them remains challenging.In this paper,two pick-up strategies are proposed for characterizing the electrical properties of ZnO nanowires using SEM equipped with a nanomanipulator.To pick up nanowires efficiently,direct sampling is compared with electrification fusing,and experiments show that direct sampling is more stable while electrification fusing is more efficient.ZnO nanowires have cut-off properties,and good Schottky contact with the tungsten probes was established.In piezoelectric experiments,the maximum piezoelectric voltage generated by an individual ZnO nanowire was 0.07 V,and its impedance decreased with increasing input signal frequency until it became stable.This work offers a technical reference for the pick-up and construction of nanomaterials and nanogeneration technology. 展开更多
关键词 ZnO nanowires nanomanipulator picking up strategy piezoelectric properties electrical characterization
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