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Electrochemical Chiral Recognizing Tryptophan Enantiomers Based on Chiral Metal-Organic Framework D-MOF
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作者 HOU Huipeng TANG Shanshan +5 位作者 WANG Wei LIU Miao LIANG Axin XIE Bingteng YI Yue LUO Aiqin 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2023年第6期976-984,共9页
In this work,an electrochemical chiral sensor of a nanowire-like chiral metal-organic framework/multiwalled carbon nanotube-chitosan/glassy carbon electrode(D-MOF/MWCNTs-CS/GCE)was proposed for the enantiorecognition ... In this work,an electrochemical chiral sensor of a nanowire-like chiral metal-organic framework/multiwalled carbon nanotube-chitosan/glassy carbon electrode(D-MOF/MWCNTs-CS/GCE)was proposed for the enantiorecognition of L/D-tryptophan(L/D-Trp).The asymmetrical spatial structure of D-MOF provides the feasibility for the enantiorecognition of Trp enantiomers.Moreover,differential pulse voltammetry(DPV)was carried out to be the detection method and the DPV peak potential difference(ΔEp)between L-Trp and D-Trp was referred as the index of the enantiorecognition performance.Several parameters,such as mass ratios and drop-coated volume of MWCNTs-CS,drop-coated volume and concentration of D-MOF,pH and detection temperature of D-MOF/MWCNTs-CS/GCE were optimized for the largestΔEp value.And the molecular dynamics(MD)simulation was used to elucidate the enantiorecognition mechanism.Furthermore,the proportions of D-Trp(D-Trp%)in Trp mixtures were detected in a good linear relationship with the DPV peak potentials(Ep),and the proposed electrochemical chiral sensor exhibited good reproducibility,stability and enantiorecognition ability.Additionally,the proposed electrochemical chiral sensor(D-MOF/MWCNTs-CS/GCE)has a good application prospect in the fields of biomedicine,clinical diagnosis,chemical production,pharmaceuticals safety and so on. 展开更多
关键词 Electrochemical chiral sensor Chiral metal-organic framework Multiwalled carbon nanotube-chitosan(MWCNTs-CS) d-mof Tryptophan(Trp) Potential difference(ΔEp)
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MOFs/PEI混合基质膜的制备及CO_(2)分离性能研究 被引量:2
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作者 马英楠 何兴艳 +2 位作者 唐少华 刘娜 曾乐林 《化学工业与工程》 CAS CSCD 北大核心 2023年第3期84-95,共12页
二氧化碳的分离和捕获对可持续发展具有重要意义。聚醚酰亚胺(PEI)具有优异的耐溶剂、耐高温、选择性高等优势,然而CO_(2)渗透性能低成为限制其进一步发展的关键瓶颈。通过引入2种三维MOFs颗粒[UIO-66和MIL^(-1)01(Cr)]及2种二维MOFs纳... 二氧化碳的分离和捕获对可持续发展具有重要意义。聚醚酰亚胺(PEI)具有优异的耐溶剂、耐高温、选择性高等优势,然而CO_(2)渗透性能低成为限制其进一步发展的关键瓶颈。通过引入2种三维MOFs颗粒[UIO-66和MIL^(-1)01(Cr)]及2种二维MOFs纳米片[CuBDC和Zn2(bim)4]制备了4种MOFs/PEI混合基质膜(MMMs),对膜的物理化学性质及CO_(2)分离性能展开深入研究。结果表明MOFs的引入大幅提高了PEI膜的CO_(2)扩散系数及分离性能,并改善了PEI膜的抗CO_(2)塑化性能。同时,相比三维MOFs颗粒,二维CuBDC纳米片与PEI表现出更高的相容性,其填料含量为20%时MMMs的CO_(2)渗透通量相比纯PEI膜提高了3.5倍,其CO_(2)/CH4选择性提高了2.2倍。以二维MOFs纳米片为功能性填料制备混合基质膜用于CO_(2)分离是一种有效的策略。 展开更多
关键词 CO_(2)分离 膜分离 混合基质膜 二维MOFs纳米片
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