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Interaction-Transferable Graphene-Isolated Superstable AuCo Nanocrystal-Enabled Direct Cyanide Capture

机译:相互作用可转移的石墨烯 - 孤立的可燃奥克诺纳米晶体的直接氰化物捕获

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摘要

Noble metals with strong plasmons have been widely used as enhancement substrates for molecule identification. However, cyanide, a toxic and important signaling molecule with a corrosive nature to noble metals, makes direct recognition challenging. Herein a novel superstable magnetic graphene-isolated AuCo nanocrystal (MACG) has been designed. Such graphene isolation enables superior stability without corrosion. Moreover, unexpectedly, although graphene isolated direct contact between Au and cyanide, their interaction was transferable and remained, which gifted MACGs direct cyanide capture capability with no specific ligands needed. Density functional theory calculations and natural bond orbital analysis indicated that the graphene isolation only slightly affected the charge transfer and that a relatively strong interaction was maintained between Au and cyanide. MACGs were utilized for efficient cyanide capture and clearance in various hydrologic environments and sensitive in vivo cyanide capture in C. elegans infected with P. aeruginosa, a pathogen with cyanide as the biomarker, indicating promise for various applications.
机译:具有强级别的贵金属已被广泛用作分子鉴定的增强基材。然而,氰化物,毒性和重要的信号分子与贵金属腐蚀性,具有直接识别挑战性。本文已经设计了一种新型可冒充磁性石墨烯 - 分离的灰晶纳米晶(MACG)。这种石墨烯隔离使得无腐蚀的稳定性。此外,出乎意料地,尽管石墨烯分离Au和氰化物之间的直接接触,但它们的相互作用可转移并留下,但是有天赋的麦克酸直接氰化物捕获能力,不需要特定配体。密度函数理论计算和天然键轨道分析表明,石墨烯分离仅略微影响电荷转移,并且在Au和氰化物之间保持相对强烈的相互作用。麦克胶用于各种水文环境中有效的氰化物捕获和间隙,并在C.埃米伊氏菌杆菌中敏感,感染P.铜绿假单胞菌,氰化物作为生物标志物的病原体,表明各种应用的承诺。

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  • 来源
    《Analytical chemistry》 |2019年第14期|共5页
  • 作者单位

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    China Univ Geosci Sch Energy Resources Beijing 100083 Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

    Hunan Univ State Key Lab Chemo Biosensing &

    Chemometr Coll Chem &

    Chem Engn Mol Sci &

    Biomed Lab Coll Biol Changsha 410082 Hunan Peoples R China;

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  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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