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腐植酸和硝酸银存在下银纳米粒子对细菌的吸收
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作者 Eunjoo Bae Hee-Jin Park +4 位作者 Jaeyong Yoon Younghun Kim Kyunghee Choi jongheop yi 韩立新 《腐植酸》 2013年第3期31-36,共6页
银纳米粒子(AgNPs)是一种潜在的抗菌材料,会引起细胞膜的损伤,并能产生活性氧(ROS)。由此产生的细胞膜的结构性变化能够增加银离子和AgNPs在细胞中的渗透能力。为了进一步阐述这个问题,我们测试了这种纳米材料的体内和体外细胞毒性,并... 银纳米粒子(AgNPs)是一种潜在的抗菌材料,会引起细胞膜的损伤,并能产生活性氧(ROS)。由此产生的细胞膜的结构性变化能够增加银离子和AgNPs在细胞中的渗透能力。为了进一步阐述这个问题,我们测试了这种纳米材料的体内和体外细胞毒性,并通过这种方法来量化和评估它们的纳米毒性。考虑到AgNPs在环境中的行为,毒性可能受到其物理化学性质(尺寸、附聚率、在腐植酸上的吸附性能)和毒性抑制性质的差异影响。我们通过附聚和吸附动力学研究了细胞吸收AgNPs的作用。试验发现,尺寸小于14nm的AgNPs的附聚和吸附高于尺寸为90nm和140nm的AgNPs的附聚和吸附。对于大小为90nm和140nm的AgNPs,吸附作用显著大于附聚作用。值得注意的是,在正规概念下,AgNPs越小越容易被吸收这一正常概念在非生物因素相互作用下可能是错误的。 展开更多
关键词 银纳米粒子 附聚 吸附 腐植酸 盐度 大肠杆菌
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Preparation of Highly Crystalline Graphitic Nanocarbon for the Electro-Oxidation of Methanol
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作者 Ji Bong Joo Nam Dong Kim +2 位作者 Hyeong Jin Yun Pil Kim jongheop yi 《Nano Research》 SCIE EI CAS CSCD 2011年第1期92-102,共11页
Highly crystalline graphitic nanocarbons (GNC) have been prepared by the wet-air treatment of hydrothermally- derived graphitic porous carbon. The materials were characterized by scanning electron microscopy, X-ray ... Highly crystalline graphitic nanocarbons (GNC) have been prepared by the wet-air treatment of hydrothermally- derived graphitic porous carbon. The materials were characterized by scanning electron microscopy, X-ray diffraction, Raman spectroscopy, and electrochemical methods. The experimental results revealed that the treatment temperature has a significant effect on the morphology and degree of graphitic crystallinity. When GNC was treated at 450 ~C under a wet-air atmosphere, the product (GNC-450) consisted of aggregates of silkworm-shaped carbon nanoparticles with enhanced graphitic characteristics. GNC-450 was evaluated as a catalyst support in the electro-oxidation of methanol. The Pt/GNC-450 catalyst contained smaller Pt particles and had a higher electrochemically active surface area than a commercial carbon black-supported Pt catalyst. In the electro-oxidation of methanol, the Pt/GNC-450 catalyst showed the highest performance among the Pt catalysts examined in this study. The superior catalytic performance appears to be closely related to the enhanced graphitic characteristics with highly dispersed Pt nanoparticles on the graphitic layers, which have a positive effect on the electrochemical performance. 展开更多
关键词 Graphitic nanostructured carbon wet-air treatment enhanced crystallinity Pt catalyst
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