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11篇 您的检索式:作者名="Ye Mingxin"
    题名 作者 年代 出处 被引量
1Facile Synthesis and Application of Ag-Chemically Converted Graphene Nanocomposite显示文摘An in situ chemical synthesis approach has been employed to prepare an Ag-chemically converted graphene (CCG) nanocomposite. The reduction of graphene oxide sheets was accompanied by generation of Ag nanoparticles. The structure and composition of the nanocomposites were confirmed by means of transmission electron microscopy (TEM), atomic force microscopy (AFM) and X-ray diffraction. TEM and AFM results suggest a homogeneous distribution of Ag nanoparticles (5-10 nm in size) on CCG sheets. The intensities of the Raman signals of CCG in such nanocomposites are greatly increased by the attached silver nanoparticles, i.e., there is surface-enhanced Raman scattering activity. In addition, it was found that the antibacterial activity of free Ag nanoparticles is retained in the nanocomposites, which suggests they can be used as graphene-based biomaterials.Jianfeng Shen Min Shi Na Li Bo Yan Hongwei Ma Yizhe Hu Mingxin Ye 2010Nano Research2010,3,5:29
2Helium and neon isotopic compositions in the ophiolites from the Yarlung Zangbo River,Southwestern China:The information from deep mantle显示文摘The ophiolites from the Yarlung Zangbo River (Tibet),Southwestern China,were analysed for the con-tents of helium and neon and their isotopic compositions by stepwise heating. The serpentinites from Bainang showed a high 3He/4He value of 32.66Ra (Ra is referred to the 3He/4He ratio in the present air) in 700 ℃ fraction. At lower temperature,all of the dolerites displayed as very high 3He/4He ratios as ones investigated for hotspots. It was clear that the high 3He/4He ratio was one of immanent characterics in the magma source formed the dolerites,suggesting that there was a large amount of deep mantle fluids in these rocks. In the three-isotope diagram of neon,the data points from the ophiolites of the Yarlung Zangbo River were arranged along the Loihi Line. This is in agreement with the characteristics of he-lium isotopes,revealing that the high-3He plume from deep mantle had played an important role in the formation of the Neo-Tethyan Ocean. The helium isotopic compositions in the basalts were far higher than atomospheric value but lower than the average value of MORB,although there were various de-grees of alteration. The possible reasons were that basalticYE XianRen TAO MingXin YU ChuanAo ZHANG MingJie 2007Science China Earth Sciences2007,50,6:28
3Ionic Liquid-Assisted One-Step Hydrothermal Synthesis of TiO2-Reduced Graphene Oxide Composites显示文摘我们为可溶的减少的 graphene 氧化物表(RGO ) 和钛氧化物(TiO2 ) 的准备的制造表明了灵巧、有效的策略用一出修改一步舞的 nanoparticle-RGO composites 热水的方法。graphene 氧化物能容易作为 reductant 与维生素酸在 solvothermal 条件下面被减少,这被发现,与 RGO 表面上的 TiO2 粒子的伴随物生长。TiO2-RGO 合成被 Fourier 变换彻底地描绘了红外线的光谱学,拉曼光谱学, X 光检查衍射, X 光检查光电子光谱学,和 thermogravimetric 分析。显微镜学技术(扫描电子显微镜学,原子力量显微镜学,和传播电子显微镜学) 被采用了探查词法特征以及调查 RGO 表的脱落。TiO2-RGO 氢的合成展出优秀光催化进化。Jianfeng Shen Min Shi Bo Yan Hongwei Ma Na Li Mingxin Ye 2011Nano Research2011,4,8:18
4CuS nanoplatelets arrays grown on graphene nanosheets as advanced electrode materials for supercapacitor applications显示文摘CuS nanoplatelets arrays grown on graphene nanosheets are successfully synthesized via a facile lowtemperature solvothermal reaction with graphene oxide(GO), CH_3 CSNH_2 and Cu(CH_3 COO)_2·H_2O as the reactants. CH_3CSNH_2 plays an important role in being the reducing agent for GO and the sulfur source of CuS. Supercapacitive performance of the graphene/CuS nanocomposite as active electrode materials has been evaluated by cyclic voltammetry, galvanostatic charge-discharge and electrochemical impedance spectroscopy measurements. The results indicate that graphene/CuS electrode delivers a high capacitance of 497.8 F g^(-1) at a current density of 0.2 A g^(-1), which outperforms bare CuS electrode. This excellent performance is ascribed to the short diffusion path and large surface area of the unique hierarchical nanostructure with nanoflakes building blocks for bulk accessibility of faradaic reaction.Xianfu Li Kaixuan Zhou Jianyu Zhou Jianfeng Shen Mingxin Ye 2018Journal of Materials Science & Technology2018,34,12:3
5Preparation and characterization of pH- and temperature-responsive nanocomposite double network hydrogels显示文摘Zhiqiang Li Jianfeng Shen Hongwei Ma Xin Lu Min Shi Na Li Mingxin Ye 2013Materials Science & Engineering C2013,,4:2
6Study on graphene-oxide-based polyacrylamide composite hydrogels显示文摘Jianfeng Shen Bo Yan Tie Li Yu Long Na Li Mingxin Ye 2012Composites Part A2012,,9:1
7Fast Crystallization of Poly (ethylene terephthalate) 显示文摘Mingxin Ye Xiaohui Wang 1996Journal of Thermal Analy- sis1996,46,:1
8Comparison of the thermal properties between composites reinforced by raw and amino-functionalized carbon materials 显示文摘Hu Yizhe Shen Jianfeng Li Na Hongwei Ma Minshi Yan Bo Huang Weishi Wang Wenbin Ye Mingxin 2010Composite Science and Technology2010,70,15:1
9Dual pH‐ and temperature‐responsive hydrogels with extraordinary swelling/deswelling behavior and enhanced mechanical performances显示文摘Shutong Huang Jianfeng Shen Na Li Mingxin Ye 2015J. Appl. Polym. Sci2015,,9:1
10Effects of vitamin C on the structural and functional characteristics of wheat gluten显示文摘Vitamin C(VC)can greatly enhance the quality properties of dough and steamed bread in the food field.However,there are few studies on the interaction between VC and gluten,and the mechanism of VC influencing the foaming capacity,emulsifiablity,and dynamic viscosity of gluten is not clear.In this study,different content of VC(0,1%,2%,3%,4%and 5%)was added to gluten to obtain VC-gluten dough samples(CK,GV1,GV2,GV3,GV4 and GV5),and the properties of the VC-gluten dough were determined.Results showed that the increasing VC content lead to increase in the content of high-,medium-and low-molecular weight gluten,suggesting that VC improved the protein solubility of gluten.The G'and G'values of dough containing VC were higher than those of the control with the increase of scanning frequency.The foaming ability of gluten increased with the increase of VC content.Emulsibility of the dough of GV1 to GV 5 were significantly lower than that of the CK.Furthermore,VC could reduce the number of bubbles in gluten protein,when the VC content was less than 3%.In conclusion,VC might reduce the emulsifying characteristic and emulsifying stability of gluten,increase the solubility of gluten,and improve the dynamic viscosity of gluten dough by changing the content of disulfide bond in gluten.This study hopes to not only improve the functional characteristics of gluten protein,but also provide the basis for future development and improvement of VC-enriched health foods.Feng Jia Kaichang Ye Changfu Zhang Shihao Zhang Mingxin Fu Xiao Liu Ruijia Guo Ruiting Yang Huiru Zhang Jinshui Wang 2022Grain & Oil Science and Technology2022,5,2:0
11Liquid metal-assisted hydrothermal preparation of cobalt disulfide on the polymer tape surface for flexible sensor显示文摘Nowadays,two-dimensional transition metal chalcogenides have become attractive materials for flexible wearable devices because of their intriguing chemistry characteristics and sensitivity to external stimuli.However,the growth of two-dimensional materials on polymer surfaces is generally carried out by the time-consuming and costly chemical vapor deposition method.Reducing the manufacturing and integration costs while improving the device performance remains to be challenging.Herein,we report a simple liquid metal-assisted hydrothermal method for the growth of two-dimensional nanomaterials on the polymer surface.Specifically,a layer of liquid metal was coated on commercial tape,while layered cobalt sulfide was grown on its surface by a simple one-step hydrothermal method.Different kinds of flexible sensors can be prepared,such as bending sensor,pressure sensor,humidity sensor,which can be used to detect motion,writing,breathing,other signals.This strategy can also be assigned to sensing signals on different objects,which may further expand and enrich the application of twodimensional materials in sensing.Yudong Cao Haibin Zhong Bin Chen Xianglong Lin Jianfeng Shen Mingxin Ye 2023Nano Research2023,16,5:0
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