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7篇 您的检索式:作者名="Mingde Du"
    题名 作者 年代 出处 被引量
1Templated 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 2015Nano Research2015,8,3:7
2Flexible and biocompatible nanopaper-based electrode arrays for neural activity recording显示文摘Yichuan Guo Zhiqiang Fang Mingde Du Long Yang Leihou Shao Xiaorui Zhang Li Li Jidong Shi Jinsong Tao Jinfen Wang Hongbian Li Ying Fang 2018Nano Research2018,11,10:3
3Theoretical stress analysis of intersecting cylindrical shells subjected to external force on nozzle 显示文摘XUE Mingde DU Qinghai LI Dongfeng 2006Journal of pressure vessel technology2006,128,2:1
4Photomultiplication type all-polymer photodetectors with single carrier transport property显示文摘Photomultiplication(PM)type all-polymer photodetectors(all-PPDs)are first demonstrated with the sandwich structure of ITO/PEDOT:PSS/PBDB-T:PZ1(100:x,wt/wt)/Al.The optimal PM type all-PPDs with PBDB-T:PZ1(100:3,wt/wt)as active layers exhibit external quantum efficiency(EQE)of>100%in the spectral range from 310 to 790 nm.Under 675 nm light illumination,the champion EQE value arrives to 1,470%at-20 V bias and the specific detectivity approaches 1×10^12 Jones at-10 V bias.The PM phenomenon in all-PPDs results from hole tunneling injection assisted by interfacial band bending induced by trapped electrons in PZ1 near Al electrode.The EQE values of optimal PM type all-PPDs still remained over 90%of the original value after 60 d of the storage in a high-purity nitrogen-filled glove box.Jianli Miao Mingde Du Ying Fang Xiaoli Zhang Fujun Zhang 2019Science China Chemistry2019,62,12:1
5Theoretical stress analysis of intersecting cylindrical shells subjected to external forces on nozzle显示文摘XUE Mingde DU Qinghai LI Dongfeng 2006ASME J Pres Ves Tech2006,128,1:1
6All-dielectric metamaterial frequency selective surface based on spatialarrangement ceramic resonators显示文摘In this paper,we demonstrate a method of designing all-dielectric metamaterial frequency selective surface(FSS)with ceramic resonators in spatial arrangement.Compared with the traditional way,spatial arrangement provides a flexible way to handle the permutation and combination of different ceramic resonators.With this method,the resonance response can be adjusted easily to achieve pass/stop band effects.As an example,a stop band spatial arrangement all-dielectric metamaterial FSS is designed.Its working band is in 11.65–12.23 GHz.By adjusting permittivity and geometrical parameters of ceramic resonators,we can easily modulate the resonances,band pass or band stop characteristic,as well as the working band.Liyang Li Jun Wang Mingde Feng Hua Ma Jiafu Wang Hongliang Du Shaobo Qu 2017Journal of Advanced Dielectrics2017,7,2:0
7All-dielectric metamaterial frequency selective surface显示文摘Frequency selective surface(FSS)has been extensively studied due to its potential applications in radomes,antenna reflectors,high-impedance surfaces and absorbers.Recently,a new principle of designing FSS has been proposed and mainly studied in two levels.In the level of materials,dielectric materials instead of metallic patterns are capable of achieving more functional performance in FSS design.Moreover,FSSs made of dielectric materials can be used in different extreme environments,depending on their electrical,thermal or mechanical properties.In the level of design principle,the theory of metamaterial can be used to design FSS in a convenient and concise way.In this review paper,we provide a brief summary about the recent progress in all-dielectric metamaterial frequency selective surface(ADM-FSS).The basic principle of designing ADM-FSS is summarized.As significant tools,Mie theory and dielectric resonator(DR)theory are given which illustrate clearly how they are used in the FSS design.Then,several design cases including dielectric particle-based ADM-FSS and dielectric network-based ADM-FSS are introduced and reviewed.After a discussion of these two types of ADM-FSSs,we reviewed the existing fabrication techniques that are used in building the experiment samples.Finally,issues and challenges regarding the rapid fabrication techniques and further development aspects are discussed.Jun Wang Shaobo Qu Liyang Li Jiafu Wang Mingde Feng Hua Ma Hongliang Du Zhuo Xu 2017Journal of Advanced Dielectrics2017,7,5:0
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