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Full quantum mechanics calculation of the total energy for the hexagonal close-packed structure of metallic hydrogen
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作者 杨仕清 苟清泉 《Chinese Science Bulletin》 SCIE EI CAS 1995年第19期1657-1662,共6页
Metallic hydrogen could be not only high-efficiency fuel for nuclear fusion and high explosive but also a high-temperature superconductor. The study of metallic hydrogen is of great help to solving some important prob... Metallic hydrogen could be not only high-efficiency fuel for nuclear fusion and high explosive but also a high-temperature superconductor. The study of metallic hydrogen is of great help to solving some important problems in the field of geophysics and astrophysics, such as the electronic and magnetic properties of the giant planets (Jupiter and Saturn) and their evolution, processes. So the study of metallic hydrogen is of momentous significance both theoretically and practically. In 1935 Wigner and Huntington pro- 展开更多
关键词 METALLIC HYDROGEN hexagonal close-packed structure cluster.
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High-Throughput Growth of Hexagonal Boron Nitride Film Using Porous-Structure Isolation Layer
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作者 Ruitao Jia Fangzhu Qing Xuesong Li 《Journal of Materials Science and Chemical Engineering》 CAS 2023年第3期45-51,共7页
Chemical vapor deposition is considered as the most hopeful method for the synthesis of large-area high-quality hexagonal boron nitride on the substrate of catalytic metal. However, the size the hexagonal boron nitrid... Chemical vapor deposition is considered as the most hopeful method for the synthesis of large-area high-quality hexagonal boron nitride on the substrate of catalytic metal. However, the size the hexagonal boron nitride films are limited to the size of growth chamber, which indicates a lower production efficiency. In this paper, the utilization efficiency of growth chamber is highly improved by alternately stacking multiple pieces of Cu foils and carbon fiber surface felt with porous structure. Uniform and continuous hexagonal boron nitride films are prepared on Cu foils through chemical vapor deposition utilizing ammonia borane as the precursor. This work develops a simple and practicable method for high-throughput preparation of hexagonal boron nitride films, which could contribute to the industrial application of hexagonal boron nitride. . 展开更多
关键词 hexagonal Boron Nitride Chemical Vapor Deposition Porous structure Isolation Layer High Throughput
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Graphite Carbone Structure
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作者 Lahbib Abbas Lahcen Bih +3 位作者 Khalid Yamni Abderrahim Elyahyaouy Abdelmalik El Attaoui Zahra Ramzi 《Crystal Structure Theory and Applications》 2024年第1期1-10,共10页
Carbon graphite is a crystalline form of carbon consisting of layers of hexagonal carbon atoms arranged in a two-dimensional “graphene” structure. Graphene layers are stacked on top of each other, forming a three-di... Carbon graphite is a crystalline form of carbon consisting of layers of hexagonal carbon atoms arranged in a two-dimensional “graphene” structure. Graphene layers are stacked on top of each other, forming a three-dimensional structure with a high degree of anisotropy. The carbon atoms within each layer are linked together by strong covalent bonds, creating a strong, stable lattice structure. However, the layers themselves are held together by weak van der Waals forces, enabling them to slide easily over each other. The properties of carbon graphite are highly dependent on the orientation and alignment of the graphene layers. When the layers are aligned parallel to each other, the material exhibits high strength and stiffness along the alignment direction, but is weaker and more flexible in other directions. Carbon graphite is used in a variety of applications where high strength, rigidity and electrical conductivity are required. Some common applications include electrical contacts, electric motor brushes, and as a structural material in aerospace and defense applications. The aim of our work is to describe the structure of graphite, its physical and chemical properties and its applications. 展开更多
关键词 GRAPHITE GRAPHENE hexagonal structure HARDNESS RIGIDITY Electrical Con-ductivity
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Electronic structure and flotation behavior of monoclinic and hexagonal pyrrhotite 被引量:6
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作者 赵翠华 吴伯增 陈建华 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期466-471,共6页
Electronic structures of monoclinic and hexagonal pyrrhotite were studied using density functional theory method,together with their flotation behavior. The main contribution of monoclinic pyrrhotite is mainly from Fe... Electronic structures of monoclinic and hexagonal pyrrhotite were studied using density functional theory method,together with their flotation behavior. The main contribution of monoclinic pyrrhotite is mainly from Fe 3d, while that of hexagonal pyrrhotite is from Fe 3d, Fe 3p and S 3s. The hexagonal pyrrhotite is more reactive than monoclinic pyrrhotite because of large density of states near the Fermi level. The hexagonal pyrrhotite shows antiferromagnetism. S—Fe bonds mainly exist in monoclinic pyrrhotite as the covalent bonds, while hexagonal pyrrhotite has no covalency. The main contributions of higest occupied molecular orbital(HOMO) and lowest unoccupied molecular obital(LUMO) for monoclinic pyrrhotite come from S and Fe. The main contribution of HOMO for hexagonal pyrrhotite comes from Fe, while that of LUMO comes from S. The coefficient of Fe atom is much larger than that of S atom of HOMO for hexagonal pyrrhotite, which contributes to the adsorption of Ca OH+ on the surface of hexagonal pyrrhotite when there is lime. As a result, lime has the inhibitory effect on the floatation of hexagonal pyrrhotite and the coefficient of Fe is very close to that of S for monoclinic pyrrhotite. Therefore, the existence of S prevents the adsorption of Ca OH+on the surface of monoclinic pyrrhotite, which leads to less inhibitory effect on the flotation of monoclinic pyrrhotite. 展开更多
关键词 monoclinic pyrrhotite hexagonal pyrrhotite electronic structure flotation behavior density functional theory
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Structural, magnetic properties, and electronic structure of hexagonal FeCoSn compound
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作者 李勇 代学芳 +7 位作者 刘国栋 魏志阳 刘恩克 韩小磊 杜志伟 郗学奎 王文洪 吴光恒 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第2期476-481,共6页
The structural, magnetic properties, and electronic structures of hexagonal Fe Co Sn compounds with as-annealed bulk and ribbon states were investigated by x-ray powder diffraction(XRD), differential scanning calori... The structural, magnetic properties, and electronic structures of hexagonal Fe Co Sn compounds with as-annealed bulk and ribbon states were investigated by x-ray powder diffraction(XRD), differential scanning calorimetry(DSC), transmission electron microscope(TEM), scanning electron microscope(SEM), magnetic measurements, and first-principles calculations. Results indicate that both states of FeCoSn show an Ni_2In-type hexagonal structure with a small amount of FeCo-rich secondary phase. The Curie temperatures are located at 257 K and 229 K, respectively. The corresponding magnetizations are 2.57 μB/f.u. and 2.94 μB/f.u. at 5 K with a field of 50 kOe(1 Oe = 79.5775 A·m^(-1)). The orbital hybridizations between 3 d elements are analyzed from the distribution of density of states(DOS), showing that Fe atoms carry the main magnetic moments and determine the electronic structure around Fermi level. A peak of DOS at Fermi level accounts for the presence of the FeCo-rich secondary phase. The Ni_2In-type hexagonal FeCoSn compound can be used during the isostructural alloying for tuning phase transitions. 展开更多
关键词 FeCoSn hexagonal structure first-principles calculations
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Synthesis of Micron-sized Hexagonal and Flowerlike Nanostructures of Lead Oxide (PbO_2) by Anodic Oxidation of Lead
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作者 Dinesh Pratap Singh Onkar Nath Srivastava 《Nano-Micro Letters》 SCIE EI CAS 2011年第4期223-227,共5页
Micron sized hexagon- and flower-like nanostructures of lead oxide(α-PbO2) have been synthesized by very simple and cost effective route of anodic oxidation of lead sheet. These structures were easily obtained by t... Micron sized hexagon- and flower-like nanostructures of lead oxide(α-PbO2) have been synthesized by very simple and cost effective route of anodic oxidation of lead sheet. These structures were easily obtained by the simple variation of applied voltage from 2-6 V between the electrodes. Lead sheet was used as an anode and platinum sheet served as a cathode. Anodic oxidation at 2 V resulted in the variable edge sized(1-2 μm) hexagon-like structures in the electrolyte. When the applied potential was increased to 4 V a structure of distorted hexagons consisting of some flower-like structures were obtained. Further increment of potential up to 6 V resulted in flower like structures of α-PbO2 having six petals. The diameter of the flower-like structures was 200-500 nm and the size of a petal was 100-200 nm. 展开更多
关键词 Lead oxide nanostructures Anodic oxidation hexagon-like structures Flower-like nanostructures
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Hexagonal boron nitride adsorbent: Synthesis, performance tailoring and applications 被引量:7
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作者 Jun Xiong Jun Di +1 位作者 Wenshuai Zhu Huaming Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第1期99-111,I0004,共14页
Hexagonal boron nitride(h-BN),with unique structural and properties,has shown enormous potentitoward variety of possible applications.By virtue of partially-ionic character of BN chemical bonds anusually large specifi... Hexagonal boron nitride(h-BN),with unique structural and properties,has shown enormous potentitoward variety of possible applications.By virtue of partially-ionic character of BN chemical bonds anusually large specific surface area,h-BN-related nanostructures exhibit appealing adsorption propertiewhich can be widely applied for separation and purification towards energy and environment treatmenIn this review,recent progress in designing h-BN micro,nano-structure,controlled synthesis,performancoptimizing as well as energy and environment-related adsorption applications are summarized.Strategieto tailor the h-BN can be classified as morphology control,element doping,defect control and surfacmodification,focusing on how to optimize the adsorption performance.In order to insight the intrinsimechanism of tuning strategies for property optimization,the significant adsorption applications of h-Btowards hydrogen storage,CO2 capture,pollutants removal from water and adsorption desulfurization arpresented. 展开更多
关键词 hexagonal boron nitride ADSORBENT structure tuning ENERGY ENVIRONMENT
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NiFe alloy nanoparticles with hexagonal close-packed crystal structure stimulate superior OER electrocatalytic activity
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《Science Foundation in China》 CAS 2019年第2期37-37,共1页
With the support by the National Natural Science Foundation of China and the Chinese Academy of Sciences,the research team led by Prof.Wang QiangBin(王强斌)at the CAS Key Laboratory of Nano-Bio Interface,Division of N... With the support by the National Natural Science Foundation of China and the Chinese Academy of Sciences,the research team led by Prof.Wang QiangBin(王强斌)at the CAS Key Laboratory of Nano-Bio Interface,Division of Nanobiomedicine and i-Lab,Suzhou Institute of Nano-Tech and Nano-Bionics,Chinese Academy of Sciences,revealed the role of metal alloy crystal structure in oxygen evolution reaction,which was recently published in Angew Chem Int Ed(2019,58(18):6099—6103). 展开更多
关键词 hexagonal close-packed crystal structure
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Molecular beam epitaxy growth of monolayer hexagonal MnTe_(2)on Si(111)substrate
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作者 S Lu K Peng +16 位作者 P D Wang A X Chen W Ren X W Fang Y Wu Z Y Li H F Li F Y Cheng K L Xiong J Y Yang J Z Wang S A Ding Y P Jiang) L Wang Q Li F S Li L F Chi 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第12期142-147,共6页
Monolayer MnTe_(2)stabilized as 1 T structure has been theoretically predicted to be a two-dimensional(2 D)ferromagnetic metal and can be tuned via strain engineering.There is no naturally van der Waals(vdW)layered Mn... Monolayer MnTe_(2)stabilized as 1 T structure has been theoretically predicted to be a two-dimensional(2 D)ferromagnetic metal and can be tuned via strain engineering.There is no naturally van der Waals(vdW)layered MnTe_(2)bulk,leaving mechanical exfoliation impossible to prepare monolayer MnTe_(2).Herein,by means of molecular beam epitaxy(MBE),we successfully prepared monolayer hexagonal MnTe_(2)on Si(111)under Te rich condition.Sharp reflection high-energy electron diffraction(RHEED)and low-energy electron diffraction(LEED)patterns suggest the monolayer is atomically flat without surface reconstruction.The valence state of Mn^(4+)and the atom ratio of([Te]:[Mn])further confirm the MnTe_(2)compound.Scanning tunneling spectroscopy(STS)shows the hexagonal MnTe_(2)monolayer is a semiconductor with a large bandgap of~2.78 eV.The valence-band maximum(VBM)locates at theΓpoint,as illustrated by angle-resolved photoemission spectroscopy(ARPES),below which three hole-type bands with parabolic dispersion can be identified.The successful synthesis of monolayer MnTe_(2)film provides a new platform to investigate the 2D magnetism. 展开更多
关键词 molecular beam epitaxy hexagonal MnTe_(2) band structure
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Characterization of the Crystal Structure of Sesame Seed Cake Burned by Nd: YAG Laser
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作者 Muna A. Pn Gawbah Abdelrahman A. Elbadawi +2 位作者 Yousef A. Alsabah Mohammed U. Orsod Ali A. S. Marouf 《Journal of Materials Science and Chemical Engineering》 2018年第4期121-131,共11页
This paper reports obtaining of useful and high-value materials from sesame seed cake (SSC). For this purpose, SSC sample was burned for 30 s using Nd: YAG laser with output power 60 W. The products of this process an... This paper reports obtaining of useful and high-value materials from sesame seed cake (SSC). For this purpose, SSC sample was burned for 30 s using Nd: YAG laser with output power 60 W. The products of this process and non-burned SSC were characterized by X-ray diffractometer (XRD), energy dispersive x-ray (EDX) and Fourier transform infrared (FTIR) so as to investigate its crystal structure and chemical components. XRD results of the SSC before burning process showed amorphous silica, rhombohedral phase of carbon, monoclinic phase of aluminum chloride, the hexagonal phase of moissanite-4H, (yellow, black) and hexagonal phase of graphite-2H, C (black). While the results of the burned SSC sample showed that the burning process using the power of Nd: YAG laser cased in appearing of crystalline hexagonal phase for silica and Carbon Nitride and converting the rhombohedral phase of Carbon into hexagonal phase. FTIR showed a number of absorbance peaks assigned to silica. 展开更多
关键词 Crystal structure FTIR hexagonal Carbon Laser-Based Combustion SESAME SEED CAKE SESAME Oil CAKE SILICA XRD
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Simple Model of Transformation of a Crystal Structures
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作者 B. I. Lev 《Journal of Modern Physics》 2016年第16期2366-2373,共8页
A simple model of the closely packed structure for system of hard-sphere particles interacting via the long-range Newtonian type attraction is suggested. Based on density functional theory, the exact equation of ... A simple model of the closely packed structure for system of hard-sphere particles interacting via the long-range Newtonian type attraction is suggested. Based on density functional theory, the exact equation of state is obtained and the mutual transformations of the crystal structures in such systems are studied. The description takes into account the fact impossibility of hard-sphere particles which have the same spatial occupation place. 展开更多
关键词 Density Functional Theory Transformation of structures close-packing structure
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The Principle of Square Hole Machining and It's Tooling Structure Design
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作者 Jinxia NIU 《International Journal of Technology Management》 2015年第2期7-8,共2页
In order to meet the rapid needs of processing square hole in mechanical equipment, the paper expounds the square hole processing method: planetary wheel method, and analyze the principle of tooling structure and pro... In order to meet the rapid needs of processing square hole in mechanical equipment, the paper expounds the square hole processing method: planetary wheel method, and analyze the principle of tooling structure and process with computer graphics parameters design. The results that, as long as the appropriate parameters, using the above method not only can punch the square hole, can also be processed triangle, the five angle and hexagonal regular polygon holes. The square hole processing method can provide theoretical basis and engineering reliable reference for related engineering and technical personnel. 展开更多
关键词 Abstract: In order to meet the rapid needs of processing square hole in mechanical equipment the paper expounds the square hole processing method: planetary wheel method and analyze the principle of tooling structure and process with computer graphics parameters design. The results that as long as the appropriate parameters using the above method not only can punch the square hole can also be processed triangle the five angle and hexagonal regular polygon holes. The square hole processing method can provide theoretical basis and engineering reliable reference for related engineering and technical personnel. Keywords: Square hole processing Planet wheel Lelo triangle Square hole drilling
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不同载荷边界典型负泊松比结构等效力学建模
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作者 张焘 王立民 +3 位作者 周志坛 卞云龙 冯帅星 高靖 《兵器装备工程学报》 CAS CSCD 北大核心 2024年第2期144-149,共6页
为探索不同载荷边界下典型负泊松比结构(内凹六边形结构)的力学行为,基于Euler梁理论建立了不同变形特点的弹性等效力学理论模型,并通过有限元分析揭示了变形过程、验证了理论解的准确性。结果表明,不同载荷边界下结构的变形模式不同,... 为探索不同载荷边界下典型负泊松比结构(内凹六边形结构)的力学行为,基于Euler梁理论建立了不同变形特点的弹性等效力学理论模型,并通过有限元分析揭示了变形过程、验证了理论解的准确性。结果表明,不同载荷边界下结构的变形模式不同,体现为:均布载荷作用下横梁和侧壁都发生弯曲变形,平板载荷作用时仅侧壁发生变形,集中载荷作用时弯曲变形由横梁主导。有限元分析指出,3种载荷边界下内凹六边形结构发生塑性大变形后都能实现压缩-收缩的负泊松比效应,且平板加载时结构的负泊松比效应最佳。等效泊松比的理论预测值与有限元分析结果具有较好的吻合度,弹性范围内等效泊松比在均布载荷条件下为正值、在平板载荷条件下有最大的负值、在集中载荷条件下接近于零。本研究为固体火箭等高轻量化需求装备提供了潜在方案。 展开更多
关键词 内凹六边形结构 负泊松比结构 等效力学 载荷边界 弯曲变形 有限元分析
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X波段单面场微带隔离器设计
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作者 孙静 陈宁 +3 位作者 高男 杜俊波 王倩 李扬兴 《磁性材料及器件》 CAS 2024年第4期62-66,共5页
针对提升微带器件隔离度的需求,根据微带环行器的设计理论,设计了一种工作在X波段的高隔离度、高温度稳定性的单面场微带隔离器。通过对微带器件工作模式分析,提出开缝六边形结匹配矩形开路负载的电路结构。测试结果表明,采用开缝六边... 针对提升微带器件隔离度的需求,根据微带环行器的设计理论,设计了一种工作在X波段的高隔离度、高温度稳定性的单面场微带隔离器。通过对微带器件工作模式分析,提出开缝六边形结匹配矩形开路负载的电路结构。测试结果表明,采用开缝六边形结匹配矩形开路负载电路结构设计的X波段单面场微带隔离器,在11~11.4 GHz工作频率内、-55~+85℃温度下,插入损耗小于0.3 dB,电压驻波比小于1.3,隔离度大于23 dB,达到设计要求。 展开更多
关键词 单面场微带隔离器 X波段 隔离度 开缝六边形结电路结构
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硼磷烯量子点的电子结构和光学性质研究
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作者 王乃晔 陈桥 《原子与分子物理学报》 北大核心 2024年第3期71-77,共7页
采用紧束缚近似方法对锯齿状六边形硼磷烯量子点在平面电场和垂直磁场调控下的电子结构和光学性质进行了研究.研究表明,硼磷烯量子点作为直接带隙半导体,在无外加电场和磁场作用时,能隙不随尺寸的改变而变化.在平面电场调控下,能隙随电... 采用紧束缚近似方法对锯齿状六边形硼磷烯量子点在平面电场和垂直磁场调控下的电子结构和光学性质进行了研究.研究表明,硼磷烯量子点作为直接带隙半导体,在无外加电场和磁场作用时,能隙不随尺寸的改变而变化.在平面电场调控下,能隙随电场强度的增加逐渐减小直至消失,平面电场方向几乎不会对硼磷烯量子点体系产生影响,且随量子点尺寸的增大,能隙消失所需电场强度逐渐减小.在垂直磁场调控下,表现为体态的能级在磁场作用下形成朗道能级,而能隙边缘处的朗道能级近似为一个平带,不随磁通量的改变而变化,态密度主要分布于朗道能级处.另外,垂直磁场作用下的光吸收主要是由朗道能级之间的跃迁引起的. 展开更多
关键词 硼磷烯 量子点 紧束缚近似方法 电子结构和光学性质 电场和磁场
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负泊松比手性结构圆薄板的参数设计
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作者 曾家琛 宋燕平 黄鹏飞 《空间电子技术》 2024年第1期46-52,共7页
薄膜张紧在曲线边界上必然产生反枕效应,这会降低网状可展开天线的型面精度。为了减少影响,通常采用增加径向肋或者网面牵引索等措施,但这些方法会增加可展开天线的复杂程度。王一鸣、黄鹏飞提出了一种弱刚度复合膜,通过调整厚度使其具... 薄膜张紧在曲线边界上必然产生反枕效应,这会降低网状可展开天线的型面精度。为了减少影响,通常采用增加径向肋或者网面牵引索等措施,但这些方法会增加可展开天线的复杂程度。王一鸣、黄鹏飞提出了一种弱刚度复合膜,通过调整厚度使其具有一定的弯曲刚度降低反枕效应的影响,但厚度的增加会增加天线的质量。根据薄板的弯曲刚度方程可知,为了在不改变材料厚度的情况下改变弯曲刚度,通过调节材料的泊松比可以达到这个目的。文章利用等效法计算了伞天线反射面形成时两肋间材料需要施加的位移;将天线反射面等效为薄板,计算了在此位移下为消除反枕效应圆薄板所需的弯曲刚度;选取了合适的负泊松比结构,即手性结构,计算了为实现这一弯曲刚度所需的手性结构胞元的几何参数;最后,利用有限元对胞元进行强度校核,以保证设计的手性结构能满足后续实验加载需求。 展开更多
关键词 圆薄板 负泊松比 天线反射面 型面精度 六韧带手性结构
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六角GaM(M=S/Se/Te)的电子结构和力学性质的第一性原理计算
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作者 路羽茜 张鑫 李世娜 《功能材料》 CAS CSCD 北大核心 2024年第5期5134-5140,共7页
依据密度泛函理论(DFT)对层状六角P63/mmc结构的GaM(M=S/Se/Te)进行电子结构与弹性力学特性的模拟研究。优化后的P63/mmc-GaM(M=S/Se/Te)的晶格,与实验结果相吻合。采用HSE06泛函得到的带隙值比PBE得到的与实验值更接近。应变能-应变(E... 依据密度泛函理论(DFT)对层状六角P63/mmc结构的GaM(M=S/Se/Te)进行电子结构与弹性力学特性的模拟研究。优化后的P63/mmc-GaM(M=S/Se/Te)的晶格,与实验结果相吻合。采用HSE06泛函得到的带隙值比PBE得到的与实验值更接近。应变能-应变(E-S)和应力-应变(S-S)两种方法得到的P63/mmc-GaM(M=S/Se/Te)的单晶弹性常数都符合弹性力学稳定性准则。在更接近文献值的应力-应变(S-S)法基础上,对3种材料的多晶弹性模量等力学特性进行了后续分析。泊松比和B/G值表明,P63/mmc-GaM(M=S/Se/Te)显现出脆性。各向异性因子、杨氏模量E、剪切模量G及线性压缩系数β的三维立体图分别展示了材料的弹性各向异性程度。在零温零压下,P63/mmc-GaM(M=S/Se/Te)在[100]方向上的第一横向声速最大,在[001]方向上两个横波TA1和TA2的速度最慢。 展开更多
关键词 密度泛函理论 六角P63/mmc-GaM(M=S/Se/Te) 电子结构 力学性质 各向异性
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基于改进的频率选择表面结构的性能分析与优化设计
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作者 丛滨 孟凯 宋伟健 《舰船电子对抗》 2024年第1期51-57,共7页
研究了频率选择表面(FSS)的设计和分析的方法,旨在对FSS结构的等效电路建模、单元形状优化和性能验证展开深入探讨。介绍了十字单元的等效电路模型,并通过Matlab编程实现了等效电路分析。利用参数优化和迭代的方法,设计了具有出色的入... 研究了频率选择表面(FSS)的设计和分析的方法,旨在对FSS结构的等效电路建模、单元形状优化和性能验证展开深入探讨。介绍了十字单元的等效电路模型,并通过Matlab编程实现了等效电路分析。利用参数优化和迭代的方法,设计了具有出色的入射角稳定性和通带透波特性的阵列单元。在FSS结构的层叠设计中,选择了单层结构作为最终方案,具有适应性强、重量轻等优点,并通过实验验证了设计结构的性能,其在X波段和Ka波段的测试数据与仿真结果高度一致。 展开更多
关键词 频率选择表面 十字单元 二维材料结构
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格宾柔性拦渣坝在矿山排土场治理工程中的应用
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作者 吴林锋 吴婷婷 《有色金属设计》 2024年第2期18-21,共4页
双绞合六边形金属网格宾柔性坝是一种新型支挡结构,在某公司西排土场治理工程中,通过采用格宾新型结构,有效地解决了拦渣坝支挡结构稳定性、变形、经济性等诸多难题,并取得了良好的效果,为类似工程提供一定的借鉴指导意义。
关键词 双绞合六边形金属网 柔性格宾拦渣坝 矿山排土场 新型支挡结构
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Effect of substrate temperature on microstructural and optical properties of ZnO films grown by pulsed laser deposition 被引量:1
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作者 HE Jianting ZHUANG Huizhao XUE Chengshan WANG Shuyun HU Lijun XUE Shoubin 《Rare Metals》 SCIE EI CAS CSCD 2006年第2期161-165,共5页
ZnO thin films were deposited on n-Si (111) at various substrate temperatures by pulsed laser deposition (PLD). X-ray diffraction (XRD), photoluminescence (PL), Fourier transform infrared spectrophotometer (F... ZnO thin films were deposited on n-Si (111) at various substrate temperatures by pulsed laser deposition (PLD). X-ray diffraction (XRD), photoluminescence (PL), Fourier transform infrared spectrophotometer (FTIR), and scanning electron microscopy (SEM) were used to analyze the structure, morphology, and optical property of the ZnO thin films. An optimal crystallized ZnO thin film was obtained at the substrate temperature of 600℃. A blue shift was found in PL spectra due to size confinement effect as the grain sizes decreased. The surfaces of the ZnO thin films were more planar and compact as the substrate temperature increased. 展开更多
关键词 semiconductor materials ZnO thin film PLD hexagonal wurtzite structure
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