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| 1 | Materials Experiment on Tiangong-2 Space Laboratory显示文摘During the China's Tiangong-2(TG-2) flight mission, the experiments of 18 kinds of material samples were conducted in space by using a Multiple Materials Processing Furnace(MMPF) mounted in the orbital module of the TG-2 space laboratory. After the experiments of 12 kinds of samples of the first and second batches were completed successfully, astronauts packed and brought them back to the ground by ShenzhouII spacecraft. By studying processing and formation on semiconductor and optoelectronics materials, metal alloys and metastable materials, functional single-crystal, micro-and nano-composite materials encapsulated in sample ampoules both in space and on Earth, we expect to explore some physical and chemical processes and mechanism of the materials formation that are normally obscured and therefore are difficult to study quantitatively on the ground due to the gravity-induced convection, to obtain the processing and synthesis technology for preparing high quality materials, and lead to the improvement and development of materials processing techniques on Earth, and also develop the experiment device and comprehensive ability for materials experiment in microgravity environment. This report briefly introduces the main points of each research work and preliminary comparative analysis results of 12 samples carried out by scientists undertaking research task. | LI Xiangyang LU Ye MENG Xiangjian WANG Jianlu WANG Reng CHEN Lidong HUA Zile LI Xiaoya SHI Jianlin LIU Jinfeng XU Guisheng WEI Bingbo XIE Wenjun YIN Zhigang ZHANG Xingwang JIANG Hongxiang LI Hong LUO Xinghong ZHANG Haifeng ZHAO Jiuzhou WANG Binbin PAN Mingxiang | 2018 | 空间科学学报2018,38,5: | 4 |
| 2 | Preparation of multi-amine-grafted mesoporous silicas and their application to heavy metal ions adsorption显示文摘 | Lingxia Zhang Chichao Yu Wenru Zhao Zile Hua Hangrong Chen Lei Li Jianlin Shi | 2007 | Journal of Non-Crystalline Solids2007,,44: | 1 |
| 3 | Low-temperature formation of nanocrystalline β-SiC with high surface area and mesoporosity via reaction of mesoporous carbon and silicon powder显示文摘 | Zhicheng Liu Weihua Shen Wenbo Bu Hangrong Chen Zile Hua Lingxia Zhang Lei Li Jianlin Shi Shouhong Tan | 2005 | Microporous and Mesoporous Materials2005,,1: | 1 |
| 4 | Preparation of highly ordered Fe-SBA-15 by physical- vapor-infiltration and their application to liquid phase selective oxidation of styrene 显示文摘 | ZHANG Lingxia HUA Zile DONG Xiaoping | 2007 | Journal of Molecular Catalysis A: Chemical2007,268,12: | 1 |
| 5 | Preparation of mesoporous silica films on a glass slide : Surfaetant template removal by solvent extraction 显示文摘 | Hua Zile Shi Jianlin Wang Lin | 2001 | Journal of Non - Crystalline Solids2001,292,13: | 1 |
| 6 | Experimental comparison of traditional phase-shift,dual-phase-shift, and model-basedcontrol of isolated bidirectional D C - D C converters显示文摘 | BAI Hua NIE Ziling MI C C | 2010 | IEEE Transactions on Power Electronics2010,25,6: | 1 |
| 7 | Preparation of multi-amine-grafted mesoporous silicas and their application to heavy metal ions adsorption显示文摘 | Lingxia Zhang Chichao Yu Wenru Zhao Zile Hua Hangrong Chen Lei Li Jianlin Shi | 2007 | Journal of Non-Crystalline Solids2007,,44: | 1 |
| 8 | Hollow spheres of mesoporous aluminosilicate with a three-dimensional pore network and extraordinarily high hydrothermal stability 显示文摘 | Li Yongsheng Shi Jianlin Hua Zile | 2003 | Nano Letters2003,3,5: | 1 |
| 9 | High efficiency green-emission of Tb(Ⅲ)-doped cerium phosphates single-crystal nanoreds显示文摘 | CHEN Hangrong HUA Zile | 2004 | Appl Phys Lett2004,85,19: | 1 |
| 10 | Surfactant-assisted synthesis and photoluminescence of lanthanide phosphates single-crystalline nanowires/nanorods显示文摘 | HUA Zile SHI Jianlin | 2004 | J Mater Res2004,19,10: | 1 |
| 11 | Preparation of highly ordered Fe-SBA-15 by physical-vapor-infiltration and their application to liquid phase selective oxidation of styrene显示文摘 | Zhang Lingxia Hua Zile Dong Xiaoping | 2007 | Journal of molecular catalysis A:Chemical2007,268,12: | 1 |
| 12 | Experimental comparison of traditional phase-shift, dual-phase-shift, and model-based control of isolated bidirectional DC-DC converters显示文摘 | BAI Hua NIE Ziling Chris C M | 2010 | IEEE Transactions on Power Electronics2010,25,6: | 1 |
| 13 | Experimental comparison of traditional phase-shift, dual-phase-shift, and model-based control of isolated bidirectional DC-DC converters显示文摘 | Bai Hua Nie Ziling Chris C M | 2010 | IEEE Transactions on Power Electronics2010,25,6: | 1 |
| 14 | Experimental comparison of traditional phase-shift,dual-phase-shift,and model-based control of isolated bidirectional DC-DC converters显示文摘 | BAI Hua NIE Ziling MI C C | 2010 | IEEE Transactions on Power Electronics2010,25,6: | 1 |
| 15 | Sodium carbonate-assisted synthesis of hierarchically porous single-crystalline nanosized zeolites显示文摘Hierarchically porous single-crystalline nanosized zeolites as heterogeneous catalysts show great potential in fine chemistry because they offer more rich hierarchically porous channels for the mass transfer and molecular diffusion. However, the synthesis of hierarchically porous nanosized zeolites generally requires the assistance of templates acting as the mesoporogens, which limits its popularity. Herein,we report a one-pot and template-free synthesis of hierarchically porous single-crystalline nanosized zeolite beta only by introducing sodium carbonate in precursor solution. The resulted sample features the extraordinary properties, including the uniform nanocrystal(200–300 nm), high pore volume(0.65 cm^3g^(-1)) and the hierarchical pore-size distribution(e.g. 2–8 and 90–150 nm). After slicing processing, it is interestingly found that a large number of interconnected mesopores penetrate throughout whole material, which enables the hierarchically porous nanosized zeolite beta remarkably superior catalytic activity than the conventional zeolite beta in condensation of benzaldehyde with ethanol at room temperature. More importantly, this one-pot sodium carbonate-assisted synthetic strategy is highly versatile, which has also been successfully developed to synthesize hierarchically porous nanosized singlecrystalline zeolites ZSM-5 and TS. | Xiaoxia Zhou Yu Chen Tongguang Ge Zile Hua Hangrong Chen Jianlin Shi | 2017 | Science Bulletin2017,62,14: | 0 |