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MnSe/Ti薄膜电沉积制备及其表征
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作者 李文坡 李春焕 +2 位作者 马斯 谢昭明 张胜涛 《功能材料》 EI CAS CSCD 北大核心 2013年第11期1635-1637,1641,共4页
在钛电极表面上,采用电化学方法在0.1mol/L MnSO4和0.002mol/L SeO2的溶液中沉积硒化锰(MnSe)薄膜。循环伏安实验结果表明在-1.60~-1.70V电位范围易发生Mn和Se共沉积。然后采用XRD、SEM及EDS等研究沉积电位分别在-1.55、-1.60、-1.65和... 在钛电极表面上,采用电化学方法在0.1mol/L MnSO4和0.002mol/L SeO2的溶液中沉积硒化锰(MnSe)薄膜。循环伏安实验结果表明在-1.60~-1.70V电位范围易发生Mn和Se共沉积。然后采用XRD、SEM及EDS等研究沉积电位分别在-1.55、-1.60、-1.65和-1.70V时得到薄膜的特性,结果表明上述选定的电位不影响沉积层立方结构优先沿(200)晶面向;不同电位对沉积层形貌及化学计量数有显著影响。控制电位可以沉积得到不同特征的MnSe薄膜。 展开更多
关键词 mnse 循环伏安法 恒电位 共沉积
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Thermally-driven contraction asymmetric yolk-shell MnSe@C microsphere with boosted dielectric behaviors and microwave absorption 被引量:1
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作者 Hanxiao Jia Yuping Duan +3 位作者 Chenxu Dou Likun Niu Naibo Wu Meng Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第16期223-231,共9页
The conventional selective template etching method to fabricate yolk-shell microwave absorbers is inconvenient and inefficient,so the thermally-driven contraction strategy was used to prepare asymmetric yolk-shell MnS... The conventional selective template etching method to fabricate yolk-shell microwave absorbers is inconvenient and inefficient,so the thermally-driven contraction strategy was used to prepare asymmetric yolk-shell MnSe@C microsphere microwave absorbers via self-template directed transformation.The self-templated oriented transformation enables compositional customization and enhances the template utilization.The confinement effect of the carbon shell is crucial for realizing the thermally-driven contraction strategy and contributes to the strong conduction loss to MnSe@C.On the other hand,the enhanced polarization loss benefits from the abundant heterogeneous interfaces and defects in the asymmetric yolk-shell MnSe@C microspheres.The rich cavities in the yolk-shell structure not only facilitate optimal impedance matching,but also promote the enhancement of multiple reflection loss(RL).As a result,the asymmetric yolk-shell MnSe@C microspheres obtain excellent microwave absorption perfor-mance,the minimum RL(RL_(min))and the maximum effective absorption bandwidth(EAB)reaching-54.4 dB and 5.1 GHz,respectively,at a thickness of 1.9 mm.The successful obtainment of the asymmetric yolk-shell MnSe@C microspheres paves the way for the convenient synthesis of the yolk-shell transitionmetal selenides(TMSs)microwave absorbers. 展开更多
关键词 Thermally-driven contraction Yolk-shell mnse Microwave absorption
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Highly Efficient Na+ Storage in Uniform Thorn Ball-Like α-MnSe/C Nanospheres
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作者 Zhenzhe Li Shuhao Xiao +4 位作者 Jiawei Liu Xiaobin Niu Yong Xiang Tingshuai Li Jun Song Chen 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2021年第3期373-382,共10页
Because of its high theoretical capacity,MnSe has been identified as a promising candidate as the anode material for sodiumion batteries.However,its fast capacity deterioration due to the huge volume change during the... Because of its high theoretical capacity,MnSe has been identified as a promising candidate as the anode material for sodiumion batteries.However,its fast capacity deterioration due to the huge volume change during the intercalation/deintercalation of sodium ions severely hinders its practical application.Moreover,the sodium storage mechanism of MnSe is still under discussion and requires in-depth investigations.Herein,the unique thorn ball-likeα-MnSe/C nanospheres have been prepared using manganese-containing metal organic framework(Mn-MOF)as a precursor followed by in situ gas-phase selenization at an elevated temperature.When serving as the anode material for sodium-ion battery,the as-preparedα-MnSe/C exhibits enhanced sodium storage capabilities of 416 and 405 mAh g^(-1)at 0.2 and 0.5 A g^(-1)after 100 cycles,respectively.It also shows a superior capacity retention of 275 mA h g^(-1)at 10 A g^(-1)after 2000 cycles,and a rate performance of 279 mA h g^(-1)at 20 A g^(-1).Such sodium storage properties could be attributed to the unique structure offering a highly efficient Na+diffusion kinetics with a diffusion coefficient between 1×10^(-11) and 3×10^(-10) cm^(2) s-1.The density functional theory calculation indicates that the fast Na+diffusion mainly takes place on the(100)plane of MnSe along a V-shaped path because of a relatively low diffusion energy barrier of 0.15 eV. 展开更多
关键词 mnse Sodium storage mechanism High-rate performance Long-term stability Uniform nanospheres
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Unravelling a solution-based formation of single- crystalline kinked wurtzite nanowires: The case of MnSe
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作者 Xinyi Yang Bo Zhou +5 位作者 Chuang Liu Yongming Sui Guanjun Xiao Yingjin wei Xin Wang Bo Zou 《Nano Research》 SCIE EI CAS CSCD 2017年第7期2311-2320,共10页
The search for a novel strategy to sculpt semiconductor nanowires (NWs) at the atomistic scale is crucial for the development of new paradigms in optics, electronics, and spintronics. Thus far, the fabrication of si... The search for a novel strategy to sculpt semiconductor nanowires (NWs) at the atomistic scale is crucial for the development of new paradigms in optics, electronics, and spintronics. Thus far, the fabrication of single-crystalline kinked semiconductor NWs has been achieved mainly through the vapor-liquid-solid growth technique. In this study, we developed a new strategy for sculpting single-crystalline kinked wurtzite (WZ) MnSe NWs by triggering the nonpolar axial-oriented growth, thereby switching--at the atomistic scale---the NW growth orientation along the nonpolar axes in a facile solution-based procedure. This presents substantial challenges owing to the dominant polar c axis growth in the solution-based synthesis of one-dimensional WZ nanocrystals. More significantly, the ability to continuously switch the nonpolar axial-growth orientation allowed us to craft the kinking landscape of types 150°, 120°, 90°, and 60°. A probabilistic analysis of kinked MnSe NWs reveals the correlations of the synergy and interplay between these two sets of nonpolar axial growth-orientation switching, which determine the actual kinked motifs. Furthermore, discriminating the side-facet structures of the kinked NWs significantly strengthened the spatially selected interaction of Au nanoparticles. We envisage that such a facile solution-based strategy can be useful for synthesizing other single-crystalline kinked WZ-type transition-metal dichalcogenide NWs to develop novel functional materials with finely tuned properties. 展开更多
关键词 kinked nanowires SINGLE-CRYSTALLINE nonpolar axial growth WURTZITE mnse
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Anomalous magnetic property and broadband photodetection in ultrathin non-layered manganese selenide semiconductor
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作者 Ye Zhao Ruilong Yang +5 位作者 Ke Yang Jiarui Dou Xiaoting Yang Jinzhong Guo Guowei Zhou Xiaohong Xu 《Nano Research》 SCIE EI CSCD 2024年第9期8578-8584,共7页
Two-dimensional(2D)semiconductors with intrinsic ferromagnetism are highly desirable for potential applications in nextgeneration spintronic and optoelectronic devices.However,controllable synthesis of intrinsic 2D ma... Two-dimensional(2D)semiconductors with intrinsic ferromagnetism are highly desirable for potential applications in nextgeneration spintronic and optoelectronic devices.However,controllable synthesis of intrinsic 2D magnetic semiconductor on a substrate is still a challenging task.Herein,large-area 2D non-layered rock salt(α-phase)MnSe nanosheets were grown on mica substrates,with the thickness changing from 54.2 to 0.9 nm(one unit cell),by chemical vapour deposition.The X-ray diffraction,Raman spectroscopy,transmission electron microscopy,and X-ray photoelectron spectroscopy measurements confirmed that the resulting 2Dα-MnSe nanosheets were obtained as high-quality single crystals.The magnetic hysteresis loops and synchrotron X-ray measurements directly indicated the anomalous magnetic properties inα-MnSe nanosheets.Comprehensive analysis of the reasons for magnetic property revealed that the low-temperature phase transition,small number of stacking differences in crystals,and surface weak oxidation in(111)-orientedα-MnSe were the main mechanisms.Furthermore,α-MnSe nanosheets exhibited broadband photoresponse from 457 to 671 nm with an outstanding detectivity and responsivity behaviours.This study presents the detailed growth process of ultrathin 2D magnetic semiconductorα-MnSe,and its outstanding magnetic properties and broadband photodetection,which provide an excellent platform for magneto-optical and magneto-optoelectronic research. 展开更多
关键词 two-dimensional material anomalous magnetism broadband photodetection α-phase mnse non-layered crystal
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