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9篇 您的检索式:作者名="Lin Chengmin"
    题名 作者 年代 出处 被引量
1An Android-based interactive museum exhibit system using wire- less sensing and augmented reality technologies 显示文摘Lin Chengmin Huang Ching-Yuan Yang Dunyu 2013Advanced Materials Research2013,684,:1
2Synthesis of Pt nanoparticles anchored on graphene-encapsulated Fe 3 O 4 magnetic nanospheres and their use as catalysts for methanol oxidation显示文摘Shaoxiong Lin Chengmin Shen Daban Lu Chunming Wang Hong-Jun Gao 2012Carbon2012,,:1
3Paleo-CO 2 variation trends and the Cretaceous greenhouse climate显示文摘Yongdong Wang Chengmin Huang Bainian Sun Cheng Quan Jingyu Wu Zhicheng Lin 2013Earth-Science Reviews2013,,:1
4Using a Genetic Algorithm to Generate Alternative Sketch Maps for Urban Planning显示文摘Feng Chengmin Lin Jenjia 1999Computers Environment and Urban Systems1999,23,:1
5Synthesis of Pt nanoparticles anchored on graphene-encapsulated Fe 3 O 4 magnetic nanospheres and their use as catalysts for methanol oxidation显示文摘Shaoxiong Lin Chengmin Shen Daban Lu Chunming Wang Hong-Jun Gao 2012Carbon2012,,:1
6Determining the Planning Period of a Distribution Substation Based on Acceptable Errors显示文摘The distribution substation planning is faced with numerous uncertainties so that the planning result can only be a“rough outline,”and the problem of determining the planning period arises.On the basis of the assessment of uncertainties in distribution planning,a specific approach to determine the planning period of a distribution substation based on acceptable errors is proposed,indicating that the load forecast error is the key factor to affect the planning period.In order to provide a clearer understanding of this paper’s primary objective,the proposed approach is applied to determining the planning period of a power supply radius optimization(PSRO)model in distribution substation planning.Finally,an example is illustrated which validates the suggested approach of this paper.Gengwu Zhang Chengmin Wang Lin Fu Haibing Wang 2017CSEE Journal of Power and Energy Systems2017,3,3:0
7Line defects in monolayer TiSe_(2) with adsorption of Pt atoms potentially enable excellent catalytic activity显示文摘Two-dimensional(2D)materials with defects are desired for catalysis after the adsorption of monodispersed noble metal atoms.High-performance catalysts with the absolute value of Gibbs free energy(|△GH|)close to zero,is one of the ultimate goals in the catalytic field.Here,we report the formation of monolayer titanium selenide(TiSe2)with line defects.The low-temperature scanning tunneling microscopy/spectroscopy(STM/S)measurements revealed the structure and electronic states of the line defect.Density functional theory(DFT)calculation results confirmed that the line defects were induced by selenium vacancies and the STM simulation was in good agreement with the experimental results.Further,DFT calculations show that monolayer TiSe_(2) with line defects have good catalytic activity for hydrogen evolution reaction(HER).If the defects are decorated with single Pt atom,the HER catalytic activity will be enhanced dramatically(|△GH|=0.006 eV),which is much better than Pt metal(|△GH|=0.09 eV).Line defects in monolayer TiSe_(2)/Au(111)provide a wonderful platform for the design of high-performance catalysts.Zhipeng Song Juxia Yi Jing Qi Qi Zheng Zhili Zhu Lei Tao Yun Cao Yan Li Zhaoyan Gao Ruizi Zhang Li Huang Geng Li Ziqiang Xu Xu Wu Yeliang Wang Chengmin Shen Yu-Yang Zhang Hongliang Lu Xiao Lin Shixuan Du Hong-Jun Gao 2022Nano Research2022,15,5:0
8FAST ultra-wideband observation of abnormal emission-shift events of PSR B0919+06显示文摘PSR B0919+06 is known for its abnormal emission phenomenon, where the pulse emission window occasionally shifts progressively in longitude and returns afterwards. The physical mechanism behind this phenomenon is still under investigation. In this paper, we present our ultra-wideband observation of this pulsar using the Five-hundred-meter Aperture Spherical radio Telescope(FAST), with simultaneous measurements in the frequency ranges 280-780 and 1250-1550 MHz. We have identified three abnormal events, each of which becomes less apparent as the frequency decreases. At 1400 MHz, the averaged profile slightly shifted after the first and third abnormal events, implying a relationship between abnormal event and profile variation. We also found a linear trend in the left-edge position of the averaged profiles between the first and third events as well as after the third event, suggesting the existence of a slow-drifting mode between the two major events. The second event has a comparatively small shift in phase and is thus categorized as a 'small flare state'. During the third event, a sequence of approximately nine pulses was seen to significantly weaken in all frequency bands, likely associated with the pseudo-nulling observed at 150 MHz.A three-component de-composition analysis of the normal averaged profiles shows that the trailing component is dominant at our observing frequencies, while the centre component has a comparatively steeper spectrum. We found the overall flux density in an abnormal event to slightly differ from that in an ordinary state, and the difference shows a frequency dependence. A comparison of the normal, abnormal and dimmed averaged profile indicates that the leading component is likely to be stable in all states.Ye-Zhao Yu Bo Peng Kuo Liu ChengMin Zhang Lin Wang FeiFei Kou JiGuang Lu Meng Yu FAST Collaboration 2019Science China(Physics,Mechanics & Astronomy)2019,62,5:0
9Highly Efficient White-Light Emission Induced by Carboxylic Acid Dimers in a Layered Hybrid Perovskite显示文摘Broadband white-light emission in metal halides has been intensely explored because of their facile solution processability,structural adjustability,and high color rendering index.However,the most reported quantum yields for white-light emission remain low despite great efforts.Herein,we report a metal-halide layered perovskite,(HOOC_(4)H_(9)NH_(3))_(2)PbBr_(4),showing the typical white-light emission with a highly enhan ced quantumyield up to 21.2% compared to previously reported noncarboxyl layered hybrid perovskites(0.5-9%).Notably,mechanistic studies reveal that the distinctive carboxylic acid dimers largely increase the structure rigidity and in consequence reduce the nonradiative recombination induced by stretching vibration.To the best of our knowledge,this strategy is important in hybrid perovskites,which is effective and propagable to acquire prominent photoluminescence.This work will shed light on the design of highly emissive white-light materials involving intense intermolecular interaction and promote their potential in displaying application.Lina Li Wentao Wu Dong Li Chengmin Ji Shisheng Lin Maochun Hong Junhua Luo 2022CCS Chemistry2022,4,7:0
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