性猛交XXXX乱大交派对,四虎影视WWW在线观看免费 ,137最大但人文艺术摄影,联系附近成熟妇女

產(chǎn)品展廳收藏該商鋪

您好 登錄 注冊(cè)

當(dāng)前位置:
美國(guó)布魯克海文儀器公司>技術(shù)文章>測(cè)量應(yīng)用案例-2020109

技術(shù)文章

測(cè)量應(yīng)用案例-2020109

閱讀:201          發(fā)布時(shí)間:2020-1-17

文獻(xiàn)名:Shape-Dependent Interactions of Manganese Oxide Nanomaterials with Lipid Bilayer Vesicles  

 

作者Ines Zucker, Sara M. Hashmi, Jason Yang, Yulian He, Lisa D. Pfefferle, Menachem Elimelech

 

 

摘要:Interactions of transition-metal-oxide nanomaterials with biological membranes have important environmental implications and applications in ecotoxicity and life-cycle assessment analysis. In this study, we quantitatively assess the impact of MnO2 nanomaterial morphology—1-dimentional (1D) nanowires, 2D nanosheets, and 3D nanoflowers—on their interaction with phospholipid vesicles as a model for biological membranes. Confocal microscopy suggests visual evidence for the interaction of undisrupted vesicles with dispersed MnO2 nanomaterials of different morphologies, and it further supports the observation that minimal dye leakage of the vesicle inner solution was detected during the interaction with MnO2 nanomaterials during the dye leakage assay. Upon titration of vesicles to dispersions of MnO2 nanowires, nanosheets, and nanoflowers, each roughly 10 times larger than the vesicles, dynamic light scattering reveals two diffusive time scales associated with aggregates in the mixture. While the longer time scale corresponds to the dispersed MnO2 control population, the appearance of a shorter timescale with vesicle addition indicates interaction between the dispersed metal oxide nanomaterials and the vesicles. The interaction is shape-dependent, being more pronounced for MnO2 nanowires than for nanosheets and nanoflowers. Furthermore, the shorter diffusive time scale is intermediate between the vesicle and nanomaterial controls, which may suggest a degree of metal oxide aggregate breakup. Vesicle adsorption isotherms and zeta potential measurements during titration corroborate vesicle attachment on the nanomaterials. Our results suggest that dispersed nanomaterial shape plays an important role in mediating non-destructive vesicle-nanomaterial interactions and that lipid vesicles act as efficient surfactants for MnO2 nanomaterials.

收藏該商鋪

請(qǐng) 登錄 后再收藏

提示

您的留言已提交成功!我們將在第一時(shí)間回復(fù)您~

對(duì)比框

產(chǎn)品對(duì)比 產(chǎn)品對(duì)比 聯(lián)系電話 二維碼 意見(jiàn)反饋 在線交流

掃一掃訪問(wèn)手機(jī)商鋪
010-62081908
在線留言
噶尔县| 利川市| 门头沟区| 鄢陵县| 广宁县| 惠来县| 清丰县| 安乡县| 电白县| 普宁市| 信丰县| 凌源市| 潼关县| 柘城县| 抚顺县| 曲靖市| 晋江市| 中西区| 平和县| 瑞丽市| 金溪县| 云阳县| 榆社县| 邵阳县| 沙雅县| 通榆县| 广昌县| 平果县| 安龙县| 西藏| 河津市| 杭锦旗| 赣榆县| 高密市| 招远市| 武平县| 崇明县| 阿巴嘎旗| 游戏| 炎陵县| 黄浦区|