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| 1 | Multiplexed Five-Color Molecular Imaging of Cancer Cells and Tumor Tissues with Carbon Nanotube Raman Tags in the Near-Infrared显示文摘Single-walled carbon nanotubes(SWNTs)with five different C13/C12 isotope compositions and well-separated Raman peaks have been synthesized and conjugated to five targeting ligands in order to impart molecular specificity.Multiplexed Raman imaging of live cells has been carried out by highly specific staining of cells with a five-color mixture of SWNTs.Ex vivo multiplexed Raman imaging of tumor samples uncovers a surprising up-regulation of epidermal growth factor receptor(EGFR)on LS174T colon cancer cells from cell culture to in vivo tumor growth.This is the first time five-color multiplexed molecular imaging has been performed in the near-infrared(NIR)region under a single laser excitation.Near zero interfering background of imaging is achieved due to the sharp Raman peaks unique to nanotubes over the low,smooth autofluorescence background of biological species. | Zhuang Liu Scott Tabakman Sarah Sherlock Xiaolin Li Zhuo Chen Kaili Jiang Shoushan Fan Hongjie Dai | 2010 | Nano Research2010,3,3: | 11 |
| 2 | Applications of carbon nanotubes in high performance lithium ion batteries显示文摘锂离子电池(解放) 的开发与更高的能力,更高的率能力,和更长的周期生活在电极材料的性能依靠改进。在这篇评论文章,在碳 nanotube (CNT ) 的最近的进展阳极,基于 CNT 的合成电极,和为高效解放的 CNT 当前的收集者被担心。CNT 为 LIB 应用作为候选人材料收到了可观的注意。除了为阳极的一种可能的选择, CNT 在改进最先进的电极材料的表演作为一个答案被认出了。基于 CNT 的合成电极能被机械或化学的途径制作。由于大方面比率和高电的传导性,在很低的装载的 CNT 能导致一个有效传导性的网络。优秀机械力量处于良好的竟技状态结构脚手架建议大潜力提供缩放 nano 的电极材料。因此, CNT 的加入将提高合成电极的电导率,减轻凝块问题,减少不活跃的文件夹上的依赖,并且显著地改进阳极和阴极材料的电气化学的性质。独立 CNT 网络能被用作小当前的收集者增加解放的全面精力密度。最后,为在高效的解放利用 CNT 的研究观点被讨论。 | Yang Wu Jiaping Wang Kaili Jiang Shoushan Fant | 2014 | Frontiers of physics2014,9,3: | 6 |
| 3 | Fano resonance boosted cascaded optical field enhancement in a plasmonic nanoparticle-in-cavity nanoantenna array and its SERS application显示文摘Cascaded optical field enhancement(CFE)can be realized in some specially designed multiscale plasmonic nanostructures,in which the generation of extremely strong fields at nanoscale volume is crucial for many applications,for example,surface-enhanced Raman spectroscopy(SERS).In this paper,we propose a strategy for realizing a high-quality plasmonic nanoparticle-in-cavity(PIC)nanoantenna array,in which strong coupling between a nanoparticle(NP)dark mode with a high-order nanocavity bright mode can produce strong Fano resonance at the target wavelength.The Fano resonance can effectively boost the CFE in a PIC.A cost-effective and reliable nanofabrication method is developed using room temperature nanoimprinting lithography to manufacture high-quality PIC arrays.This technique guarantees the generation of only one gold NP at the bottom of each nanocavity,which is crucial for the generation of the expected CFE.To demonstrate the performance and application of the PIC array,the PIC array is employed as an active SERS substrate for detecting 4-aminothiophenol molecules.An experimental SERS enhancement factor of 2×10^(7) is obtained,which verifies the field enhancement and the potential of this device. | Zhendong Zhu Benfeng Bai Oubo You Qunqing Li Shoushan Fan | 2015 | Light(Science & Applications)2015,4,1: | 5 |
| 4 | Heating graphene to incandescence and the measurement of its work function by the thermionic emission method显示文摘 | Feng Zhu | 2014 | Nano Research2014,7,4: | 5 |
| 5 | Stance detection via sentiment information and neural network model显示文摘Stance detection aims to automatically determine whether the author is in favor of or against a given target.In principle,the sentiment information of a post highly influences the stance.In this study,we aim to leverage the sentiment information of a post to improve the performance of stance detection.However,conventional discrete models with sentimental features can cause error propagation.We thus propose a joint neural network model to predict the stance and sentiment of a post simultaneously,because the neural network model can learn both representation and interaction between the stance and sentiment collectively.Specifically, we first learn a deep shared representation between stance and sentiment information,and then use a neural stacking model to leverage sentimental information for the stance detection task.Empirical studies demonstrate the effectiveness of our proposed joint neural model. | Qingying SUN Zhongqing WANG Shoushan LI Qiaoming ZHU Guodong ZHOU | 2019 | Frontiers of Computer Science2019,13,1: | 4 |
| 6 | Semi-Fragile Audio Watermarking Algorithm in DWT Domain显示文摘A novel semi-fragile audio watermarking algorithm in DWT domain is proposed in this paper.This method transforms the original audio into 3-layer wavelet domain and divides approximation wavelet coefficients into many groups.Through computing mean quantization of per group,this algorithm embeds the watermark signal into the average value of the wavelet coefficients.Experimental results show that our semi-fragile audio watermarking algorithm is not only inaudible and robust against various common images processing,but also fragile to malicious modification.Especially,it can detect the tampered regions effectively. | LEI Min YANG Yu LUO Shoushan NIU Xinxin | 2010 | China Communications2010,7,4: | 3 |
| 7 | A process study of electron beam nano-lithography and deep etching with an ICP system显示文摘A systemic process study on an electron beam nanolithography system operating at 100kV was pre-sent.The exposure conditions were optimized for resist ZEP520A.Grating structures with line/space of 50nm/50nm were obtained in a reasonably thick resist which is beneficial to the subsequent pattern transfer technique.The ICP etching process conditions was optimized.The role of etching parameters such as source power,gas pressure,and gas flow rate on the etching result was also discussed.A grating structure with line widths as small as 100nm,duty cycles of 0.5,depth of 900nm,and the side-wall scalloping as small as 5nm on a silicon substrate was obtained.The silicon deep etching technique for structure sizes smaller than 100nm is very important for the fabrication of nano-optical devices working in the visible regime. | LI QunQing ZHANG LiHui CHEN Mo FAN ShouShan | 2009 | Science China(Technological Sciences)2009,52,6: | 2 |
| 8 | High temperature performance of coaxial h-BN/CNT wires above 1,000 ℃:Thermionic electron emission and thermally activated conductivity显示文摘The development of wires and cables that can tolerate extremely high temperatures will be very important for probing extreme environments, such as in solar exploration, fire disasters, high-temperature materials processing, aeronautics and astronautics. In this paper, a lightweight high-temperature coaxial h-boron nitride (BN)/carbon nanotube (CNT) wire is synthesized by the chemical vapor deposition (CVD) epitaxial growth of h-BN on CNT yarn. The epitaxially grown h-BN acts as both an insulating material and a jacket that protects against oxidation. It has been shown that the thermionic electron emission (1,200 K) and thermally activated conductivity (1,000 K) are two principal mechanisms for insulation failure of h-BN at high temperatures. The thermionic emission of h-BN can provide the work function of h-BN, which ranges from 4.22 to 4.61 eV in the temperature range of 1,306-1,787 K. The change in the resistivity of h-BN with temperature follows the ohmic conduction model of an insulator, and it can provide the “electron activation energy”(the energy from the Fermi level to the conduction band of h-BN), which ranges from 2.79 to 3.08 eV, corresponding to a band gap for h-BN ranging from 5.6 to 6.2 eV. However, since the leakage current is very small, both phenomena have no obvious influence on the signal transmission at the working temperature. This lightweight coaxial h-BN/CNT wire can tolerate 1,200 ℃ in air and can transmit electrical signals as normal. It is hoped that this lightweight high-temperature wire will open up new possibilities for a wide range of applications in extreme high-temperature conditions. | Xinhe Yang Peng Liu Duanliang Zhou Feng Gao Xinhe Wang Shiwei Lv Zi Yuan Xiang Jin Wei Zhao Haoming Wei Lina Zhang Jiandong Gao Qunqing Li Shoushan Fan Kaili Jiang | 2019 | Nano Research2019,12,8: | 2 |
| 9 | Self-oriented Regular Arrays of Carbon Nanotubes and Their Field Emission Properties显示文摘 | Shoushan Fall Michael G Chapline Nathan R Franklin | 1999 | Science1999,283,: | 1 |
| 10 | Self oreinted regular arrays of carbon nanotubes and their emission properties显示文摘 | Huan Shoushan Chapline Micheal G Franklin Nathan R | 1999 | Science1999,283,: | 1 |
| 11 | Self-Oriented Regular Arrays of Carbon Nanotubes and Their Field Emission properties显示文摘 | Michael G Chapline | 1999 | Science1999,283,: | 1 |
| 12 | Direct laser patterning of two-dimensional lateral transition metal disulfide-oxide-disulfide heterostructures for ultrasensitive sensors显示文摘Two-dimensional(2D)heterostructures based on the combination of transition metal dichalcogenides(TMDs)and transition metal oxides(TMOs)have aroused growing attention due to their integrated merits of both components and multiple functionalities.However,nondestructive approaches of constructing TMD-TMO heterostructures are still very limited.Here,we develop a novel type of lateral TMD-TMO heterostructure(NbS2-Nb2O5-NbS2)using a simple lithography-free,direct laser-patterning technique.The perfect contact of an ultrathin TMO channel(Nb2O5)with two metallic TMDs(NbS2)electrodes guarantee strong electrical signals in a two-terminal sensor.Distinct from sensing mechanisms in separate TMOs or TMDs,this sensor works based on the modulation of surface conduction of the ultrathin TMO(Nb2O5)channel through an adsorbed layer of water molecules.The sensor thus exhibits high selectivity and ultrahigh sensitivity for room-temperature detection of NH3(ΔR/R=80%at 50 ppm),superior to the reported NH3 sensors based on 2D materials,and a positive temperature coefficient of resistance as high as 15%–20%/℃.Bending-invariant performance and high reliability are also demonstrated in flexible versions of sensors.Our work provides a new strategy of lithography-free processing of novel TMD-TMO heterostructures towards high-performance sensors,showing great potential in the applications of future portable and wearable electronics. | Bolun Wang Hao Luo Xuewen Wang Enze Wang Yufei Sun Yu-Chien Tsai Jinxuan Dong Peng Liu Huanglong Li Yong Xu Sefaattin Tongay Kaili Jiang Shoushan Fan Kai Liu | 2020 | Nano Research2020,13,8: | 1 |
| 13 | Synthesis of Gallium Nitride Nanorods through a Carbon Nanotube-Confined Reaction显示文摘 | Han Weiqiang Fan Shoushan Li Qunqing | 1997 | Science1997,277,29: | 1 |
| 14 | Metal-film-assisted ultra-clean transfer of single-walled carbon nanotubes显示文摘 | Yujun He Dongqi Li Tianyi Li Xiaoyang Lin Jin Zhang Yang Wei Peng Liu Lina Zhang Jiaping Wang Qunqing Li Shoushan Fan Kaili Jiang | 2014 | Nano Research2014,7,7: | 1 |
| 15 | Coating of carbon nanotube withnickel by electroless plating method显示文摘 | Qunqing Li Shoushan Fan Weiqiang Han | 1997 | Jpn J Appl Phys1997,36,50: | 1 |
| 16 | Synthesis of gallium nitride nanorods through a carbon nanotube-confined reaction显示文摘 | HAN Weiqiang FAN Shoushan LI qunqing | 1997 | Science1997,277,29: | 1 |
| 17 | 显示文摘 | Han Weiqiang Fan Shoushan Li Qunqing | 1997 | Science1997,277,: | 1 |
| 18 | Self-oriented regular arrays of carbon nanotubes and their field emission properties 显示文摘 | Chapline M G Franklin N R | 1999 | Science1999,283,5401: | 1 |
| 19 | China Powder Science and Technology显示文摘 | Zhou Yingyan Gao Shoushan Li Hongxia | 2006 | (6):2872006,,6: | 1 |
| 20 | The Study on Mobile Agent and Integrated Information Retrieval显示文摘 | Chen Xiang Luo Shoushan | | 0,,02: | 1 |