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十八碳键合钛胶固定相的制备及其色谱性能 被引量:4
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作者 姜子涛 左育民 《色谱》 CAS CSCD 北大核心 2001年第4期297-300,共4页
以聚合诱导胶体凝聚法 (PICA)合成的窄粒径分布的TiO2 多孔微球 (表面积 :3 6 7m2 /g ,孔容 :0 3 0mL/g ,平均孔径 :3 2 2nm ,平均粒径 :3 5 μm)为基质 ,与十八碳三甲氧基硅烷的甲苯溶液共同回流 8h ,制得十八碳键合钛胶固定相 (ODT... 以聚合诱导胶体凝聚法 (PICA)合成的窄粒径分布的TiO2 多孔微球 (表面积 :3 6 7m2 /g ,孔容 :0 3 0mL/g ,平均孔径 :3 2 2nm ,平均粒径 :3 5 μm)为基质 ,与十八碳三甲氧基硅烷的甲苯溶液共同回流 8h ,制得十八碳键合钛胶固定相 (ODT)。该固定相的含碳量为 2 87% (即 0 66μmol/m2 ) ,疏水选择性为 0 4 63 8。将其用于分离中性和碱性化合物时 。 展开更多
关键词 高效液相色谱法 十八碳键合固定相 制备 色谱性能 钛胶微球 聚合诱导体凝聚法 PICA
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Effect of porous titanium coated with IGF-1 and TGF-β_1 loaded gelatin microsphere on function of MG63 cells
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作者 陈良建 陈畅 +5 位作者 乔雪岩 余琨 谢丽子 曹君 刘蓓蕾 颜阳 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第9期2974-2985,共12页
Porous titanium with porosity of 60% was prepared by metal injection molding(MIM),and coated with gelatin sustained-release microspheres which were made by improved emulsified cold condensation method.The effects of... Porous titanium with porosity of 60% was prepared by metal injection molding(MIM),and coated with gelatin sustained-release microspheres which were made by improved emulsified cold condensation method.The effects of porous titanium coated with insulin-like growth factor-1(IGF-1) and transforming growth factor-β1(TGF-β1) gelatin microspheres on the function of MG63 cells were evaluated in vitro.The results show that porous titanium coated with gelatin sustained-release microspheres has no cytotoxicity.The IGF-1 and TGF-β1 loading concentrations are positively correlative with the proliferation and differentiation of MG63 after co-culturing with the concentrations of IGF-1 and TGF-β1 gelatin microspheres in the range of 0.1-10 ng/mg and 0.25-2.5 ng/mg,respectively.The MG63 cells exhibit the best proliferation and differentiation with the IGF-1 and TGF-β1 loading concentrations of 10 ng/mg and 2.5 ng/mg,respectively.The joint application of IGF-1 and TGF-β1 group,which promote adhesion,proliferation and differentiation of MG63 cells,is superior to a single application group. 展开更多
关键词 porous titanium gelatin microsphere insulin-like growth factor-1 transforming growth factor-β1 MG63 cell
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Efficiency improvement of flexible dye-sensitized solar cells by introducing mesoporous TiO_2 microsphere 被引量:5
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作者 FAN LeQing CHEN Yuan +4 位作者 WU JiHuai LI ZhaoLei XIAO YaoMing HUANG MiaoLiang YU HaiJun 《Science China Chemistry》 SCIE EI CAS 2013年第10期1470-1477,共8页
Mesoporous TiO2microsphere(MTM)was synthesized via a simple solution route and then mixed with commercial TiO2(P25)to form highly homogeneous and stable TiO2colloid by simple hydrothermal treatment.The TiO2colloid was... Mesoporous TiO2microsphere(MTM)was synthesized via a simple solution route and then mixed with commercial TiO2(P25)to form highly homogeneous and stable TiO2colloid by simple hydrothermal treatment.The TiO2colloid was coated onto the plastic conductive substrate to prepare mesoporous TiO2film for flexible dye-sensitized solar cells(DSSCs)by low-temperature heat treatment.The influence of MTM content on the physicochemical properties of the flexible TiO2film was characterized by scanning electron microscope,transmission electron microscopy,X-ray diffraction,energy-dispersive X-ray spectrometer,N2adsorption-desorption isotherms,UV–vis absorption and diffuse reflectance spectra.It is revealed that with increasing the MTM content,the dye-loading capability of TiO2film and light-harvesting efficiency of flexible DSSCs are improved due to MTM having high surface area and acting as a light scattering center,respectively,resulting in the enhancement of photocurrent of flexible DSSCs.However,more and larger cracks having negative effect on the performances of flexible DSSCs are formed simultaneously.Under the optimal condition with MTM content of 20%,a flexible DSSC with overall light-to-electric energy conversion efficiency of 2.74%is achieved under a simulated solar light irradiation of 100 mW cm 2(AM 1.5),with 26%improvement in comparison with DSSCs based on P25 alone. 展开更多
关键词 mesoporous TiO2 microsphere dye-sensitized solar cell flexible mesoporous TiO2 film hydrothermal treatment
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