皇冠网址大全-皇冠网开户地址是_百家乐计划工具_赌博全讯网网站 (中国)·官方网站

學術活動   NAVIGATION

金屬有機骨架微孔復合膜的合成與應用

時間:2019-12-12 來源: 作者: 攝影: 編輯:張好雨 上傳:

主講人:王煥庭

時間:2019年12月17日(星期二)上午10:00

地點:重點實驗室五樓報告廳

主講人介紹:

王煥庭教授目前是澳大利亞Monash大學化學工程系教授,澳大利亞工程院院士,任工程學院副院長以及Monash膜創新中心主任。曾獲得澳大利亞研究理事會(ARC)QEII Fellowship(2004)、Future Fellowship(2010),英國皇家化學學會會士(2011),美國化學工程師學會會士(2017)以及澳大利亞皇家化學會的R.K. Murphy Medal(2019)。其領導的課題組主要從事高性能膜材料、納米結構材料的設計與制備及其在環境和能源領域的應用研究,在Nature Materials、Nature Communications、Advanced Materials、Angewandte Chemie International Edition等期刊發表論文390余篇,多次受邀作國際會議特邀學術報告。王煥庭教授現擔任ACS旗下化工權威期刊Industrial & Engineering Chemistry Research副主編。

主要內容:

Metal–organic framework (MOF)-based membranes have shown attractive ion separation properties. To investigate ion selective transport mechanisms and develop membranes for potential applications, new strategies are needed to achieve ultrathin and defect-free MOF membranes with tailorable functionality. We have recently developed new seeding methods for fabricating ultrathin and high-quality molecular sieving membranes on various porous substrates. For instance, hybrid MOF nanosheets are formed by growing MOF nanocrystals on both sides of 2D graphene oxide nanosheets. These flexible, micro-sized hybrid nanosheets allow for seeding substrates with large-pores and rough surface, eliminating substrate modification required in the conventional synthesis using nanocrystal seeds. We have further developed a novel nanocrystal-mask plasma etching method for synthesizing MOF/mesoporous GO (MOF/MGO) hybrid nanosheets. Due to their ultrathin thickness and well-aligned MGO nanosheets, this hierarchical structural MOF/MGO membrane is suitable for studying ion transport and selection. We have discovered that such membranes have fast, selective ion permeation properties and demonstrated selective transport of various cations and anions in MOF-based membranes. The ZIF-8 and zirconium-based UiO-66 membranes showed a LiCl/RbCl selectivity of ~4.6 and ~1.8, respectively. UiO-66-X (X = H, NH2, and N+(CH3)3) exhibited ultrahigh F? conductivity up to ~10 S ··m?1, and ultrahigh F?/Cl? selectivity, from ~13 to ~240. Our studies open up a new avenue to develop a unique MOF membrane platform for efficient ion separations.


主辦單位:材料化學工程國家重點實驗室

學術活動
保险百家乐官网怎么玩| 百家乐官网二游戏机| 百家乐开闲的几率多大| 德州扑克规则视频| 真人百家乐官网澳门娱乐城| 百家乐网上真钱娱乐网| 玉环县| 菏泽市| 红9百家乐官网的玩法技巧和规则| 捷豹百家乐娱乐城| 百家乐官网怎么看单| 百家乐大小技巧| 百家乐官网实战技术| 百家乐霸王闲| 网站百家乐官网博彩| 百家乐龙虎台布价格| 百家乐官网书包| 大发888娱乐场官方| 土豪百家乐官网的玩法技巧和规则| 百家乐六手变化混合赢家打| 在百家乐官网二庄两闲揽的概率| 开心8百家乐游戏| 百家乐官网赢的秘诀| 斗地主百家乐的玩法技巧和规则| 最好的百家乐官网博彩网站| 云博娱乐城,| 百家乐马渚| 赌百家乐官网到底能赌博赢| 大发888 894| 百家乐平台信誉排名| 博发| 基础百家乐博牌| 百家乐官网园首选| 百家乐官网出千大全| 太原百家乐的玩法技巧和规则 | 百家乐官网庄和闲的赌法| 大发888娱乐城888| 百家乐输了好多钱| 百家乐官网英皇娱乐场| 明升开户| 大发888娱乐场菲律宾|