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网状编织TiB纳米线增强具有核壳结构Ti基体的高强度Ti-BN复合材料
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作者 黄立清 黄群 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第4期1169-1177,共9页
为提高Ti基复合材料(TMCs)的强度,以纳米BN粉和Ti粉为原材料,采用火花等离子烧结技术制备一种具有新颖结构的Ti基复合材料,该复合材料由网状编织结构TiB纳米纤维和表面富含N溶质原子内部贫N的核壳结构Ti基体组成。采用X射线衍射(XRD)、... 为提高Ti基复合材料(TMCs)的强度,以纳米BN粉和Ti粉为原材料,采用火花等离子烧结技术制备一种具有新颖结构的Ti基复合材料,该复合材料由网状编织结构TiB纳米纤维和表面富含N溶质原子内部贫N的核壳结构Ti基体组成。采用X射线衍射(XRD)、扫描电子显微镜(SEM)、电子探针显微分析仪(EPMA)和电子万能材料试验机对制备试样的物相组成、形貌、元素分布和力学性能进行测试分析。结果表明,成功制备了具有实验设计特殊结构的Ti基复合材料,制备的Ti-2BN(质量分数,%)复合材料的极限抗压强度达到~1.8 GPa,断裂应变为~9%;Ti-1BN(质量分数,%)的极限抗压强度为~1.6 GPa,断裂应变达到~20%。此外,讨论该复合强化结构在增强Ti基复合材料强度中的作用。 展开更多
关键词 钛基复合材料 TiB纳米线 网状编织结构 核壳结构
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Influences of the Shape of Rods in Two Dimension Photonic Crystals on Their Defect Eigenmodes
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作者 Guo-Hong Xiao li-qing huang 《Optics and Photonics Journal》 2013年第4期296-299,共4页
The cross section of photonic crystal fiber (PCF) is a two dimensional photonic crystal. The rods formed in PCF are not exact cylinders, the shape of rods will affect the eigenmode formed in two dimensional photonic c... The cross section of photonic crystal fiber (PCF) is a two dimensional photonic crystal. The rods formed in PCF are not exact cylinders, the shape of rods will affect the eigenmode formed in two dimensional photonic crystals around a defect. Based on the relations between the defect eigenmodes and the radius of dielectric cylinders, the defect eigenmodes in photonic crystals in which the ellipse rods take the place of cylinders are studied by numerical calculation. The analysis of the relation between the eigenfrequency and the minor axis radius of ellipse rods show that the defect eigenfrequency is controlled by the cross section area of rods and the distribution of electromagnetic field around the defect is also affected by the cross section shape of rods. It provides a better way to modify the distribution of electromagnetic fields in photonic crystal and keeps the eigenfrequency unchanged. 展开更多
关键词 Photonic Crystal Structure Parameter DEFECT EIGENMODE Rod SHAPE
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Solution-processed Molybdenum Oxide Hole Transport Layer Stabilizes Organic Solar Cells
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作者 Yan-Fu Liu Si-Wen Zhang +11 位作者 Yan-Xun Li Shi-Lin Li li-qing huang Ya-Nan Jing Qian Cheng Lin-Ge Xiao Bo-Xin Wang Bing Han Jia-Jie Kang Yuan Zhang Hong Zhang Hui-Qiong Zhou 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2023年第2期202-211,共10页
The hole transport layer(HTL)affects the device performance and stability of organic solar cells.In this work,a stable molybdenum oxide(MoO_(x))hole transport layer with low cost was prepared by adjusting the state of... The hole transport layer(HTL)affects the device performance and stability of organic solar cells.In this work,a stable molybdenum oxide(MoO_(x))hole transport layer with low cost was prepared by adjusting the state of the precursor solution with an alcoholic solution of molybdenum acetylacetonate through an oxidant.The MoO_(x) transport layer has good transmittance with a work function of 5.07 eV and higher surface energy.The PM6:Y6 devices using MoO_(x) HTL achieve a high efficiency of 16.8%.MoO_(x) HTL exhibits good applicability with excellent performance in both ternary and all-polymer systems.Air storage stability T80 of the all-polymer device using MoO_(x) HTL was over 600 h,much higher than 70 h of the PEDOT:PSS-based device,and its thermal stability at 85℃ and operational stability under light show better stability than that of the PEDOT:PSS hole transport layer.This work provides a facile and low-cost method to fabricate HTL for organic solar cells,which is beneficial to improve their efficiency and stability. 展开更多
关键词 Hole transport layer Molybdenum oxide STABILITY
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