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| 1 | Carbon nanotube-polypyrrole core-shell sponge and its application as highly compressible supercapacitor electrode显示文摘 | Peixu Li Enzheng Shi Yanbing Yang Yuanyuan Shang Qingyu Peng Shiting Wu Jinquan Wei Kunlin Wang Hongwei Zhu Quan Yuan Anyuan Cao Dehai Wu | 2014 | Nano Research2014,7,2: | 10 |
| 2 | Templated synthesis of Ti02 nanotube macrostructures and their photocatalytic properties显示文摘 | Hongbian Li Qiaoyu Zhou Yuntian Gao Xuchun Gui Long Yang Mingde Du Enzheng Shi Jidong Shi Anyuan Cao Ying Fang | 2015 | Nano Research2015,8,3: | 7 |
| 3 | High-performance Li-ion batteries based on graphene quantum dot wrapped carbon nanotube hybrid anodes显示文摘Since Akira Yoshino first proposed the usage of the carbonaceous materials as an anode of lithium ion batteries(LIBs)in 1985,carbonaceous materials such as graphite and graphene have been widely considered as LIB anodes.Here,we explored the application of novel carbonaceous UB anodes incorporating graphene quantum dots(GQDs).We fabricated a freestanding all-carbon electrode based on a porous carbon nanotube(CNT)sponge via a facile in-situ hydrothermal deposition technique,creating coaxial structure of GQD-coated CNTs(GQD@CNTs)through electrostatic interaction and n-n stacking with tunable loading and functionalization.This hybrid structure combined conductive CNTs with highly active GQDs,in which GQDs with predesigned functional groups provided massive storage sites for Li ions and the 3D CNT frameworks avoided the agglomeration of GQDs,together contributing to a high specific capacity(700 mAh·g^-1 at 100 mA·g^-1 after 100 cycles)and rate performance.Even at a high current density of 1,000 mA·g^-1,the reversible specific capacity remained at 483 mAh g-1 after 350 cycles.In particular,the mechanism study demonstrated the important role of oxygen functional groups of GQDs in promoting the performance of the LIB anodes by controlled grafting of GQDs onto various porous-carbon and metal-foam based structures. | Xuewei Zhao Yizeng Wu Yunsong Wang Huaisheng Wu Yawei Yang Zhipeng Wang Linxiu Dai Yuanyuan Shang Anyuan Cao | 2020 | Nano Research2020,13,4: | 7 |
| 4 | Fabrication of large area hexagonal boron nitride thin films for bendable capacitors显示文摘高度可靠、可弯曲的电介质为未来应用在灵活或可弯曲的电子设备被需要。六角形的硼氮化物(h-BN ) 能由于它的宽乐队差距被用作可弯曲的电介质。这里,我们由一个低压力化学药品蒸汽免职方法与可控制的厚度制作高质量的 h-BN 电影。我们作为电介质用 h-BN 电影表明一个平行板的电容器。h-BN 电容器与 9.0 MV/cm 的高故障地力量是可靠的。越过 h-BN 电影的通道电流对电介质的厚度相反地指数,它让电容显著地落下。h-BN 电容器显示出 6.8 F/cm2 的一个最好的特定的电容,它比计算的值高一个数量级。 | Ning Guo Jinquan Wei Yi Jia Huanhuan Sun Yuhang Wang Kehan Zhao Xiaolan Shi Liuwan Zhang Xinming Li Anyuan Cao Hongwei Zhu Kunlin Wang Dehai Wu | 2013 | Nano Research2013,6,8: | 3 |
| 5 | Improving CNT-Si solar cells by metal chloride-to-oxide transformation显示文摘Transitional metal oxides(TMOs)are important functional materials in silicon-based and thin-film optoelectronics.Here,TMOs areapplied in carbon nanotube(CNT)-Si solar cells by spin-coating solutions of metal chlorides that undergo favorable transformation in ambient conditions.An unconventional change in solar cell behavior is observed after coating two particular chlorides(MoCl,and WCls,respectively),characterized by an initial severe degradation followed by gradual recovery and then well surpassing the original performance.Detailed analysis reveals that the formation of correspondina oxides(MoOa and WO.)enables two primary functions on both CNTs(p-type doping)and Si(inducing inversion layer),leading to significant improvement in open-circuit voltage and fill factor,with power conversion efficiencies up to 13.0%(MoOg)and 13.4%(WOg).Further combining with other chlorides to increase the short-circuit current,ultimate cells efficiencies achieve>16%with over 90%retention after 24 h,which are among the highes stable efficiencies reported for CNT-Si solar cells.The transformation of functional layers as demonstrated here has profoundinfluence on the device characteristics,and represents a potential strategy in low-cost manufacturing of next-generation high efficiency photovoltaics. | Huaisheng Wu Xuewei Zhao Yizeng Wu Qinghuan Ji Linxiu Dai Yuanyuan Shang Anyuan Cao | 2020 | Nano Research2020,13,2: | 3 |
| 6 | Rapid growth of well-aligned carbon nanotube arrays显示文摘 | Xianfeng Zhang Anyuan Cao Bingqing Wei Yanhui Li Jinquan Wei Cailu Xu Dehai Wu | 2002 | Chemical Physics Letters2002,,3: | 2 |
| 7 | Analysis of photoluminescence behavior of high-quality single-layer MoS2显示文摘The ability to tailor and enhance photoluminescence (PL) behavior in two-dimensional (2D) transition metal dichalcogenides (TMDCs) such as molybdenum disulfide (MoS2) is significant for pursuing optoelectronic applications.To achieve this,it has been essential to obtain high-quality single-layer MoS2 and fully explore its intrinsic PL performance.Here,we fabricate single-layer MoS2 by a thermal vapor sulfurization method in which a pre-deposited molybdenum trioxide (MoO3) thin film is sulfurized over a short period (for several minutes) to turn into MoS2.These as-grown MoS2 crystals show quite strong PL,which is about one order of magnitude higher than that of chemical-vapor-deposited MoS2.Temperature- and power-dependent spectroscopy measurements disclose the apparent influence of sulfur (S) vacancies on the PL behavior and the noticeable free-to-bound exciton recombinations in the luminescence process.The fact that PL intensity of the sample in vacuum sharply lowered down relative to in air reveals that the high PL is facilitated by molecular adsorption on S vacancies in air.And multi-channel decay processes coupled with S vacancies are revealed in the time-resolved PL spectroscopy.In our work,single-layer MoS2 with high PL is synthesized and its defect-induced PL features are analyzed,which is of great importance for developing advanced nano-electronics and optoelectronics based on 2D structures. | Lu Xu Liyun Zhao Yunsong Wang Mingchu Zou Qing Zhang Anyuan Cao | 2019 | Nano Research2019,12,7: | 2 |
| 8 | Direct fabrication of carbon nanotube-graphene hybrid films by a blown bubble method显示文摘有 graphene 的碳 nanotubes (CNT ) 的杂交提供集成两材料的属性的一个有希望的工具,从而创新的普遍申请。这里,我们在场直接由一个吹的水泡方法装配混合 CNT-graphene 电影的一个方法与选择底层退火结合了。我们把 polymethylmethacrylate (PMMA ) 用作聚合矩阵吹包含自我装配的多围的 CNT 数组的水泡,然后由在 Cu 底层上的热退火把水泡电影转变成一部 CNT-graphene 混合电影;PMMA 为在 CNT 网络之中对很少层 graphene 变得单个直到担任碳来源一连续地, hybridized 结构被形成。比作赤裸(non-hybridized ) CNT 联网,混合电影展览改进了电的电导率和结构的完整。我们的方法也启用一节多围的 CNT-Si 太阳能电池的制造,它有高力量变换效率,通过混合 CNT-graphene 结构的集会。 | Shiting Wu Enzheng Shi Yanbing Yang Wenjing Xu Xinyang Li Anyuan Cao | 2015 | Nano Research2015,8,5: | 2 |
| 9 | Graphene-CdSe Nanobelt Solar Cells with Tunable Configurations显示文摘我们联合了二平面 nanostructures, graphene 和 CdSe nanobelts,到有大概 0.1% 的大约 0.5 V 和房间效率的开电路的电压的构造 Schottky 连接太阳能电池。由盖住,透明 graphene 或碳 nanotube (CNT ) 沿着肉眼可见地长的 CdSe nanobelts 在选择位置上拍摄,我们从单个或多重的装配 nanobelts 与许多不同配置和平行连接表明了活跃太阳能电池的制造。graphene-CdSe nanobelt 太阳能电池这里报导了表演在创造多样的设备体系结构的大灵活性,和力量基于装配 nanobelt 数组和有图案的 graphene 为房间集成被扩大规模(或 CNT ) 电影。 | Luhui Zhang Lili Fan Zhen Li Enzheng Shi Xinming Li Hongbian Li Chunyan Ji Yi Jia Jinquan Wei Kunlin Wang Hongwei Zhu Dehai Wu Anyuan Cao | 2011 | Nano Research2011,4,9: | 1 |
| 10 | Adsorption of fluoride from water by amorphous alumina supported on carbon nanotubes显示文摘 | Yan-Hui Li Shuguang Wang Anyuan Cao | 2001 | Chemical Physics Letters2001,350,: | 1 |
| 11 | Direct stamping multifunctional tactile sensor for pressure and temperature sensing显示文摘Flexible and wearable sensors have broad application prospects in health monitoring and artificial intelligence.Many different single-functional sensing devices have been developed in recent years,such as pressure sensors and temperature sensors.However,it is still a great challenge to design and fabricate tactile sensors with multiple sensing functions.Herein,we propose a simple direct stamping method for the fabrication of multifunctional tactile sensors.It can detect pressure and temperature stimuli signals simultaneously.This pressure/temperature sensor possesses high sensitivity(0.67 kPa^(-1)),large linear range(0.75-5 kPa),and fast response speed(15.6 ms)in pressure sensing.It also has a high temperature sensitivity(1.41%/℃)and great linearity(0.99)for temperature sensing in the range of-30 to 30℃.All these excellent performances indicate that this pressure/temperature sensor has great potential in applications for artificial intelligence and health monitoring. | Binghao Liang Bingfang Huang Junkai He Rongliang Yang Chengchun Zhao Bo-Ru Yang Anyuan Cao Zikang Tang Xuchun Gui | 2022 | Nano Research2022,15,4: | 1 |
| 12 | Thinning and diluting aligned carbon nanotube films for uniform field emission 显示文摘 | CAO Anyuan ZHANG Xianfeng WU Dehai | 2002 | Applied Physics A2002,74,3: | 1 |
| 13 | Vertical aligned carbon nanotubes grown on Au film and reduction of threshold field in field emission 显示文摘 | CAO Anyuan CI Lijie WU Dehai | 2001 | Chemical Physics Letters2001,335,34: | 1 |
| 14 | A high-capacity lithium–air battery with Pd modified carbon nanotube sponge cathode working in regular air显示文摘 | Yue Shen Dan Sun Ling Yu Wang Zhang Yuanyuan Shang Huiru Tang Junfang Wu Anyuan Cao Yunhui Huang | 2013 | Carbon2013,,: | 1 |
| 15 | Highly Compression‐Tolerant Supercapacitor Based on Polypyrrole‐mediated Graphene Foam Electrodes显示文摘 | Yang Zhao Jia Liu Yue Hu Huhu Cheng Chuangang Hu Changcheng Jiang Lan Jiang Anyuan Cao Liangti Qu | 2012 | Adv Mater2012,,4: | 1 |
| 16 | Controlled fabrication of hierarchically branched nanopores,nanotubes,and nanowires显示文摘 | Guowen Meng Yung Joon Jung Anyuan Cao | 2005 | PNAS2005,102,20: | 1 |
| 17 | Adsorption of fluoride from water by amorphous alumina supported on carbon nanotubes显示文摘 | LI Yanhui WANG Shuguang CAO Anyuan | 2001 | Chemical Physics Letters2001,350,56: | 1 |
| 18 | Hydrogen storage of dense-aligned carbon nanotubes显示文摘 | Anyuan Cao Hongwei Zhu Xianfeng Zhang Xuesong Li Dianbo Ruan Cailu Xu Binqing Wei Ji Liang Dehai Wu | 2001 | Chemical Physics Letters2001,,5: | 1 |
| 19 | Single-Crystalline Permalloy Nanowires in Carbon Nanotubes:Enhanced Encapsulation and Magnetization显示文摘 | Lv Ruitao Cao Anyuan Kang Feiyu | 2007 | The Journal of Physics Chemistry C2007,111,11: | 1 |
| 20 | Mechanical force-induced assembly of one-dimensional nanomaterials显示文摘There have been intensive and continuous research efforts in large-scale controlled assembly of one-dimensional(1D)nanomaterials,since this is the most effective and promising route toward advanced functional systems including integrated nano-circuits and flexible electronic devices.To date,numerous assembly approaches have been reported,showing considerable progresses in developing a variety of 1D nanomaterial assemblies and integrated systems with outstanding performance.However,obstacles and challenges remain ahead.Here,in this review,we summarize most widely studied assembly approaches such as Langmuir-Blodgett technique,substrate release/stretching,substrate rubbing and blown bubble films,depending on three types of external forces:compressive,tensile and shear forces.We highlight the important roles of these mechanical forces in aligning 1D nanomaterials such as semiconducting nanowires and carbon nanotubes,and discuss each approach on their effectiveness in achieving high-degree alignment,distinct characteristics and major limitations.Finally,we point out possible research directions in this field including rational control on the orientation,density and registration,toward scale-up and cost-effective manufacturing,as well as novel assembled systems based on 1D heterojunctions and hybrid structures. | Shiting Wu Yuanyuan Shang Anyuan Cao | 2020 | Nano Research2020,13,5: | 1 |