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水热氧化改性碳纸电极在全钒氧化还原电池中的应用(英文) 被引量:8
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作者 苏安群 汪南方 +2 位作者 刘素琴 吴涛 彭穗 《物理化学学报》 SCIE CAS CSCD 北大核心 2012年第6期1387-1392,共6页
为了提高钒氧化还原电池电极的活性,在180°C下将碳纸电极与过氧化氢的硫酸溶液置于有聚四氟乙烯内衬的不锈钢反应釜中进行不同时间的水热酸氧化处理.水的接触角测试表明,随着处理时间从6h调整至18h,处理前后碳纸电极的接触角也从12... 为了提高钒氧化还原电池电极的活性,在180°C下将碳纸电极与过氧化氢的硫酸溶液置于有聚四氟乙烯内衬的不锈钢反应釜中进行不同时间的水热酸氧化处理.水的接触角测试表明,随着处理时间从6h调整至18h,处理前后碳纸电极的接触角也从120.0°降低至100.8°,尤其是经过12h处理的样品的接触角最小,这说明在此条件下处理过的碳纸的亲水性得到了提高.而傅里叶变换红外测试表明,羰基和羧基等含氧基团被成功地引入到了碳纸电极中.使用扫描电镜,循环伏安,电化学阻抗以及充放电技术分别检测了处理前后样品的表面形貌及电化学性能.V(IV)/V(V)氧化还原电对在这些处理过的样品上表现出较大的活性.用处理12h的碳纸电极组装的单电池性能优异,在30mA·cm-2的电流密度下能量效率达到了80%,相应的电流效率和电压效率分别为96%和84%. 展开更多
关键词 钒电池 碳纸 水热酸氧化 接触角 含氧基团 亲水性
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Study on Preparation of Porous ZnO Microspheres and Photocatalytic Performance
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作者 Leilei Qi 《International Journal of Technology Management》 2014年第8期54-57,共4页
This paper introduces the method of porous ZnO microspheres by sodium citrate assisted hydrothermal synthesis with a mild, economy: first, basic synthesis globose precursor of Zinc Carbonate Hydroxide, then followed ... This paper introduces the method of porous ZnO microspheres by sodium citrate assisted hydrothermal synthesis with a mild, economy: first, basic synthesis globose precursor of Zinc Carbonate Hydroxide, then followed by thermal decompose the precursor to obtain porous Zinc Oxide microspheres. The morphology and structure of the precursor and synthesized porous microspheres were characterize by a series of methods, and did a series of experiments by changing dosage and reaction time of the sodium citrate and urea, finally the paper discussed the formation mechanism of porous ZnO microspheres. 展开更多
关键词 ZNO porous microspheres solvothermal method nanometer material
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Inactivation of Protein Tyrosine Phosphatase 1B (PTP1B) Activity by the Aqueous Partition of Guava Leaf Extract
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作者 Wan-Jung Wu Wei-Li Yan +11 位作者 Shiou-Cherng Yu Gerry Gunawan Chien-Yih Lin Chih-Yan Huang Chia-Ting Chang Haw-Wen Chen Chong-Kuei Lii Alice L. Yu Ching-Chu Chen Yu-Ting Chung Jeng-Dau Tsai Henry J. Tsai 《Journal of Pharmacy and Pharmacology》 2018年第10期890-906,共17页
Guava leaf tea has been used as a folk medicine for treating hyperglycemic conditions in Asia and Africa. The hypoglycemic efficacy of guava leaf has been documented by many scientists in these regions, but the hypogl... Guava leaf tea has been used as a folk medicine for treating hyperglycemic conditions in Asia and Africa. The hypoglycemic efficacy of guava leaf has been documented by many scientists in these regions, but the hypoglycemic mechanism is poorly understood. Guava leaves were extracted with methanol and the crude extract was partitioned against hexane, ethyl acetate, and butanol in sequence. The leftover in water is defined as the aqueous partition. A second smaller batch was extracted with hot water directly. Oral glucose tolerance test was carried out on healthy mice instead of diabetic mice that lack endogenous insulin. Glucose uptake was examined with 3T3-L1 adipocytes. Oxidative effect on PTP1B (protein tyrosine phosphatase 1b) was carried out with real-time PTP1B enzymatic assay. The aqueous partition of guava leaf extract possesses a potent inhibitory effect on PTP1B enzymatic activity and this PTP1B inhibition is through a slow oxidative but reversible inactivation on the enzyme. The reversible inactivation would suggest guava leaf extract may augment PTP1B inhibition alongside the endogenous H2O2 which itself is induced by insulin. In addition, our study confirmed the hypoglycemic efficacy being associated with guava leaf and found the most effective molecules reside in the aqueous partition which is also less cytotoxic to Chinese hamster ovary cells when compared to other less polar partitions. The guava leaf extract can modulate insulin activity through a redox regulation on PP1B enzymatic activity. It is speculated that a compound similar to gallocatechin in the aqueous partition can reduce an oxygen molecule to hydrogen peroxide which in turn oxidizes the catalytic residue Cys in PTP1B. Therefore, the guava leaf tea can serve as a functional hypoglycemic drink that is suitable for either healthy or diabetic subjects. 展开更多
关键词 Guava leaf extract HYPOGLYCEMIC OXIDATIVE protein tyrosine phosphatase 1b slow inactivation.
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