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Band gap calculation and photo catalytic activity of rare earths doped rutile TiO_2 被引量:13
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作者 边亮 宋绵新 +2 位作者 周天亮 赵效勇 戴清清 《Journal of Rare Earths》 SCIE EI CAS CSCD 2009年第3期461-468,共8页
The density of states (DOS) of 17 kinds of rare earths (RE) doped rutile TiO2 was by using first-principles density functional theory (DFT) calculation. The band gap widths of RE doped futile TiO2 were important... The density of states (DOS) of 17 kinds of rare earths (RE) doped rutile TiO2 was by using first-principles density functional theory (DFT) calculation. The band gap widths of RE doped futile TiO2 were important factors for altering their absorbing wavelengths. The results show that RE ions could obviously reduce the band gap widths and form of energy of ruffle TiO2 except Lu, Y, Yb and Sc, and the order of absorbing wavelengths of RE doped ruffle TiO2 were the same as that of the results of calculation. The ratio of RE dopant was another important factor for the photo catalytic 'activity of RE doped rutile TiO2, and there was an optimal ratio of dopant. There was a constant for predigesting the calculation difficulty, respectively, which were 0.5mol.% and 100 mol^-1 under supposition. The band gap widths of RE doped rutile TiOz by DFT calculation were much larger than that by experiment. Finally, by transferring the calculation values to experiment values, it could be found and predicted that RE enlarged obviously the absorbing wavelengh of ruffle TiO2. In addition, the degree of RE ions edging out the Ti atom using the parameters of RE dements was computed. 展开更多
关键词 density functional theory ruffle TiO2 band gap rare earths
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High Pressure Response of Rutile Polymorphs and Its Significance for Indicating the Subduction Depth of Continental Crust
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作者 MENG Dawei WU Xiuling +4 位作者 FAN Xiaoyu ZHANG Zhengjie CHEN Hong MENG Xin ZHENG Jianping 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2008年第2期371-376,共6页
α-PbO2-type TiO2 (TiO2-Ⅱ) is an important index mineral for ultrahigh-pressure metamorphism. After the discovery of a natural high-pressure phase of titanium oxide with α-PbO2- structure in omphacite from coesite... α-PbO2-type TiO2 (TiO2-Ⅱ) is an important index mineral for ultrahigh-pressure metamorphism. After the discovery of a natural high-pressure phase of titanium oxide with α-PbO2- structure in omphacite from coesite-bearing eclogite at Shima in the Dabie Mountains, China, a nanoscale (〈2 nm) α-PbO2-type TiO2 has been identified through electron diffraction and high-resolution transmission electron microscopy in coesite-bearing jadeite quartzite at Shuanghe in the Dabie Mountains. The crystal structure is orthorhombic with lattice parameters a = 4.58×10-1 nm, b = 5.42×10-1 nm, c = 4.96×10-1 nm and space group Pbcn. The analysis results reveal that ruffle {011}R twin interface is a basic structural unit of α-PbO2-type TiO2. Nucleation of α-PbO2-type TiO2 lamellae is caused by the displacement of one half of the titanium cations within the {011}R twin slab. This displacement reduces the Ti-O-Ti distance and is favored by high pressure. The identification of α- PbO2-type TiO2 in coesite-bearing jadeite quartzite from Shuanghe, Dabie Mountains, provides a new and powerful evidence of ultrahigh-pressure metamorphism at 4--7 GPa, 850℃-900℃, and implies a burial of continental crustal rocks to 130-200 kilometers depth or deeper. The α-PbO2-type TiO2 may be a useful indicator of the pressure and temperature in the diamond stability field. 展开更多
关键词 ruffle twin TiO2 UHP polymorphs Phase transformation HRTEM Dabie Mountains
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探讨Abba1的C端序列对COS7细胞产生ruffling的影响
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作者 陈燕萍 崔伯塔 +3 位作者 郑大同 王卓璎 崔晓利 鲁翔 《南京医科大学学报(自然科学版)》 CAS CSCD 北大核心 2011年第8期1110-1114,共5页
目的:Abba1在体外实验中能介导细胞产生ruffling,其N端的IMD区域中13个赖氨酸为重要的功能氨基酸位点,但Abba1单独的IMD却不足以介导细胞产生ruffling,本研究旨在初步探讨Abba1的C端序列影响细胞产生ruffling的分子机制。方法:先构建Ab... 目的:Abba1在体外实验中能介导细胞产生ruffling,其N端的IMD区域中13个赖氨酸为重要的功能氨基酸位点,但Abba1单独的IMD却不足以介导细胞产生ruffling,本研究旨在初步探讨Abba1的C端序列影响细胞产生ruffling的分子机制。方法:先构建Abba1基因重组表达质粒,分别瞬时转染COS7细胞,通过免疫荧光观察细胞形态改变,并用Western blot检测相应GTP-Rac1的蛋白水平变化。结果:过表达全长Abba1的COS7细胞形成ruffling,与对照组相比,细胞中GTP-Rac1蛋白水平升高(P<0.05);过表达Abba1-IMD和Abba1-del-357-722aa-WH2的COS7细胞不形成ruffling,与对照组相比,相应细胞中GTP-Rac1蛋白水平降低(P<0.05)。结论:Abba1的357-722aa这段区域参与介导细胞产生ruffling,而且这种影响与GTP-Rac1蛋白水平的降低有关。 展开更多
关键词 Abba1 IMD ruffling RAC1
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New Flu Ruffling Feathers
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作者 Li Li 《ChinAfrica》 2013年第5期26-27,共2页
A new human infection with an animal flu virus has touched a raw nerve among the public and posed a challenge to China's disease control system, which is quickly responding to a possible outbreak by drawing on their ... A new human infection with an animal flu virus has touched a raw nerve among the public and posed a challenge to China's disease control system, which is quickly responding to a possible outbreak by drawing on their experiences with previous epidemics. 展开更多
关键词 ORGANIZATION New Flu Ruffling Feathers
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SiO_2 Solubility in Rutile at High Temperature and High Pressure 被引量:2
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作者 任玉峰 费英伟 +1 位作者 杨经绥 白文吉 《Journal of China University of Geosciences》 SCIE CSCD 2009年第2期274-283,共10页
Silicon-bearing rutile has been found in chromitite from the Luobusa (罗布莎) ophiolite, Tibet. However, the extent of SiO2 solubility in rutile and the nature of its origin are still unclear. At high pressure, SiO2... Silicon-bearing rutile has been found in chromitite from the Luobusa (罗布莎) ophiolite, Tibet. However, the extent of SiO2 solubility in rutile and the nature of its origin are still unclear. At high pressure, SiO2 takes a rutile structure with Si in 6-fold coordination. Thus, high pressures may enhance its solubility in rutile because of possible isovalent exchange in the octahedral site. In this study, we report new experimental results on SiO2 solubility in rutile up to 23 GPa and 2 000℃. Starting materials were mixtures of powdered pure rutile and pure quartz, with compositions of (Ti0.5Si0.5)O2, (Ti0.93Si0.07)O2, and (Ti0.75Si0.25)O2. The mixtures were loaded into either platinum capsules (for a 10/5 assembly) or rhenium capsules (for an 8/3 assembly). The experiments were carried out using multi-anvil high-pressure apparatus with a rhenium resistance heater. Sample temperatures were measured with a W5%Re-W26%Re thermocouple and were controlled within ±1 ℃ of the set temperature. TiO2-rich and SiO2-rich phases were produced in all the quenched samples. Microprobe analyses of the phases show that the solubility of SiO2 in rutile increases with increasing pressure, from 1.5 wt.% SiO2 at 10 GPa to 3.8 wt.% SiO2 at 23 GPa at a temperature of 1 800 ℃. The solubility also increases with increasing temperature from 0.5 wt.% SiO2 at 1 500 ℃ to 4.5 wt.% SiO2 at 2 000 ℃ at a pressure of 18 GPa. On the other hand, the solubility of TiO2 in coesite or stishovite is very limited, with an average of 0.6 wt.% TiO2 over the experimental P-T ranges. Temperature has a much larger effect on the solubility of SiO2 in ruffle than pressure. At high pressure, the melting point of SiO2 is definitely higher than that of TiO2 and the eutectic point moves towards SiO2 in the TiO2-SiO2 system. Lower oxygen fugacity decreases the solubility of SiO2 in ruffle, whereas water has little effect on the solubility. Our experimental data are extremely useful for determining the depth of origin of the SiO2-bearing rutfle found in nature. 展开更多
关键词 ruffle STISHOVITE COESITE POLYMORPH high temperature and high pressure experiment.
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