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Preparation, Characterization and Luminescent Properties of MCM-41 Type Materials Impregnated with Rare Earth Complex 被引量:4
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作者 Lianshe FU and Hongjie ZHANG Key Laboratory of Rare Earth Chemistry and Physics, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China Philippe Boutinaud Laboratoire des Materiaux Inorganiques, UMR 6002, Universite 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第3期293-298,共6页
Hybrid materials incorporating Eu-(TTA)3·2H20 (hereafter designated as Eu-TTA, with TTA: thenoyltrifluoroacetone) in unmodified or modified MCM-41 by 3-aminopropyl-triethoxysilane (APTES) were prepared by impregn... Hybrid materials incorporating Eu-(TTA)3·2H20 (hereafter designated as Eu-TTA, with TTA: thenoyltrifluoroacetone) in unmodified or modified MCM-41 by 3-aminopropyl-triethoxysilane (APTES) were prepared by impregnation method. The obtained materials were characterized using X-ray diffraction (XRD), IR and diffuse reflectance spectroscopy and luminescence spectra. All the hybrid samples exhibited the characteristic emission bands of Eu3+ under UV light exci-tation at room temperature, and the excitation spectra showed significant blue-shifts compared to the pure rare-earth complex. Although the red emission intensity in the modified hybrid was almost the half of the red emission intensity in the pure Eu-TTA complex at room temperature, the hybrid showed a much higher thermal stability due to the shielding character of the MCM-41 host. 展开更多
关键词 MCM Characterization and Luminescent Properties of MCM-41 type materials Impregnated with Rare Earth Complex PREPARATION
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Large deflection of curved elastic beams made of Ludwick type material 被引量:2
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作者 Hua LIU Yi HAN Jialing YANG 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2017年第7期909-920,共12页
The large deflection of an axially extensible curved beam with a rectangular cross-section is investigated. The elastic beam is assumed to satisfy the Euler-Bernoulli postulation and be made of the Ludwick type materi... The large deflection of an axially extensible curved beam with a rectangular cross-section is investigated. The elastic beam is assumed to satisfy the Euler-Bernoulli postulation and be made of the Ludwick type material. Through reasonably simplified integration, the strain and curvature of the axis of the beam are presented in implicit formulations. The governing equations involving both geometric and material nonlin- earities of the curved beam are derived and solved by the shooting method. When the initial curvature of the beam is zero, the curved beam is degenerated into a straight beam, and the predicted results obtained by the present model are consistent with those in the open literature. Numerical examples are further given for curved cantilever and simply supported beams, and the couplings between elongation and bending are found for the curved beams. 展开更多
关键词 large deflection curved beam Ludwick type material NONLINEARITY
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A New Type of Multielements-Doped,Carbon-based Materials Characterized by High-thermoconductiv-ity,Low Chemical Sputtering,Low RES Yield and Exposure to Plasma
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作者 许增裕 刘翔 +4 位作者 谌继明 王明旭 宋进仁 翟更太 李承新 《Plasma Science and Technology》 SCIE EI CAS CSCD 2002年第3期1311-1317,共7页
Low-Z materials, such as carbon-based materials and Be, are major plasma-facing material (PFM) for current, even in future fusion devices. In this paper, a new type of multielement-doped carbon-based materials develop... Low-Z materials, such as carbon-based materials and Be, are major plasma-facing material (PFM) for current, even in future fusion devices. In this paper, a new type of multielement-doped carbon-based materials developed are presented along with experimental re-sults of their properties. The results indicate a decrease in chemical sputtering yield by one order of magnitude, a decrease in both thermal shock resistance and radiation-enhanced sublimation, an evidently lower temperature desorption spectrum, and combined properties of exposing to plasma. 展开更多
关键词 than GBS RES A New type of Multielements-Doped Carbon-based materials Characterized by High-thermoconductiv-ity Low Chemical Sputtering Low RES Yield and Exposure to Plasma
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SRC Panel-A New Type Light and Energy-Saving Building Material
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《China's Foreign Trade》 1998年第2期28-28,共1页
关键词 SRC Panel-A New type Light and Energy-Saving Building material 110
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粉煤灰轻质墙体材料的试验研究及机理分析 被引量:6
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作者 李刚 刘开平 +2 位作者 姜曙光 马玉薇 梁庆宣 《粉煤灰综合利用》 CAS 2007年第4期15-18,共4页
以粉煤灰和废玻璃为主要原料,加入一定量的粘结剂,采用低温烧制新型粉煤灰轻质墙体材料。分析了材料用量、焙烧时间以及原料成分对墙体材料的影响,探讨了反应的机理。
关键词 新型墙体材料 粉煤灰 强度 机理
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Bending moment resistance of corner joints constructed with spline under diagonal tension and compression
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作者 Sadegh Maleki Akbar Rostampsour Haftkhani +2 位作者 Mosayeb Dalvand Mehdi Faezipour Mehdi Tajvidi 《Journal of Forestry Research》 CAS CSCD 2012年第3期481-490,共10页
We determined the effects of the penetration depth and spline material and composite material type as well as joining method on bending moment resistance under diagonal compression and tension in common wood panel str... We determined the effects of the penetration depth and spline material and composite material type as well as joining method on bending moment resistance under diagonal compression and tension in common wood panel structures. Composite materials were laminated medium density fiberboard (MDF) and particleboard. Joining methods were butt and miter types. Spline materials were high density fiberboard (HDF). The penetration depths of plywood, wood (Carpinus betolus) and spline were 8, 11 and 14 mm. The results showed that in both diagonal com- pression and tension, MDF joints are stronger than particleboard joints, and the bending moment resistance under compression is higher compared with that in tension. The highest bending moment resistance under tension was shown in MDF, butt joined using plywood spline with 8 mm penetration depth, whereas under compression bending moment resistance was seen in MDF, miter joined with the HDF spline of 14 mm penetration depth. 展开更多
关键词 Penetration depth composite material type joining type bending moment resistance
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Regulating Zn Deposition via an Artificial Solid–Electrolyte Interface with Aligned Dipoles for Long Life Zn Anode 被引量:9
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作者 Kai Wu Jin Yi +6 位作者 Xiaoyu Liu Yang Sun Jin Cui Yihua Xie Yuyu Liu Yongyao Xia Jiujun Zhang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第5期107-117,共11页
Aqueous zinc ion batteries show prospects for next-generation renewable energy storage devices.However,the practical applications have been limited by the issues derived from Zn anode.As one of serious problems,Zn den... Aqueous zinc ion batteries show prospects for next-generation renewable energy storage devices.However,the practical applications have been limited by the issues derived from Zn anode.As one of serious problems,Zn dendrite growth caused from the uncontrollable Zn deposition is unfavorable.Herein,with the aim to regulate Zn deposition,an artificial solid–electrolyte interface is subtly engineered with a perovskite type material,BaTiO3,which can be polarized,and its polarization could be switched under the external electric field.Resulting from the aligned dipole in BaTiO3 layer,zinc ions could move in order during cycling process.Regulated Zn migration at the anode/electrolyte interface contributes to the even Zn stripping/plating and confined Zn dendrite growth.As a result,the reversible Zn plating/stripping processes for over 2000 h have been achieved at 1 mA cm^(−2) with capacity of 1 mAh cm−2.Furthermore,this anode endowing the electric dipoles shows enhanced cycling stability for aqueous Zn-MnO2 batteries.The battery can deliver nearly 100%Coulombic efficiency at 2 Ag^(−1) after 300 cycles. 展开更多
关键词 Regulated Zn deposition Artificial solid-electrolyte interface Perovskite type dielectric material Zn anode Zn ion battery
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Research progress in electron transport layer in perovskite solar cells 被引量:8
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作者 Gong-Ping Mao Wei Wang +4 位作者 Sen Shao Xiao-Jun Sun Shi-An Chen Min-Hao Li Hua-Ming Li 《Rare Metals》 SCIE EI CAS CSCD 2018年第2期95-106,共12页
Since perovskite solar cells appeared in 2009, its simple preparation process, high photoelectric conversion efficiency and the characteristic of low cost in preparation process let it become the hot spot of both at-h... Since perovskite solar cells appeared in 2009, its simple preparation process, high photoelectric conversion efficiency and the characteristic of low cost in preparation process let it become the hot spot of both at-home and abroad. Owing to the constant efforts of scientists, the conversion efficiency of perovskite solar cells is more than 20% now. Perovskite solar cells are mainly composed of conductive glass, electron transport layer and hole transport layer, perovskite layer and electrode parts. This paper will briefly introduce the working principle and working pro- cess about the electron transport layer of perovskite solar cells. The paper focuses on aspects such as material types (e.g., inorganic electron transport materials, organic small molecule electron transport materials, surface modified electron transport materials and doped electron transport materials), preparation technology of electron transport layer, the effects of electron transport layer on the photo- voltaic performance of the devices, and the electron transport layer in the future research. 展开更多
关键词 Perovskite solar cells Electron transport layer material types Preparation technology
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