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首页> 外文期刊>RSC Advances >Lysozyme-stabilized Ag nanoclusters: synthesis of different compositions and fluorescent responses to sulfide ions with distinct modes
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Lysozyme-stabilized Ag nanoclusters: synthesis of different compositions and fluorescent responses to sulfide ions with distinct modes

机译:溶菌酶稳定的Ag纳米蛋白:用不同模式合成不同组合物和向硫化物离子的荧光反应

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摘要

In this study, three red-emissive Ag nanoclusters capped with denatured lysozyme (dLys-AgNCs 1-3) were synthesized from different reactant molar ratios of AgNO3 and lysozyme. dLys-AgNCs 1 contained only Ag(0), whereas dLys-AgNCs 2 and 3 contained both Ag(0) and Ag(I). The maximum emission wavelengths of dLys-AgNCs 1-3 were all near 640 nm when excited at 490 nm, but had different photoluminescence intensities. The photoluminescence properties of the dLys-AgNCs in the presence of common inorganic anions were studied. dLys-AgNCs 1-3 had a distinct photoluminescence response to S2-. The photoluminescence of dLys-AgNCs 1 was quenched by S2-, because S2- destroyed the nanostructure of dLys-AgNCs 1 by forming Ag2S. The photoluminescence of dLys-AgNCs 3 was enhanced by S-2, because S-2 bound to Ag(I) in dLys-AgNCs 3 and altered the ligand-to-metal-metal charge transfer. For dLys-AgNCs 2, the photoluminescence was enhanced with a small amount of S2- and quenched when more S2- was added. This was explained by S2- binding to Ag(I) at low concentrations and then to Ag(0) at high concentrations. Other anions had no obvious effects, except that I- quenched the photoluminescence of dLys-AgNCs 1-3. The response mechanisms were investigated by XPS, MS, zeta potential, DLS, and fluorescence lifetime measurements. As-prepared dLys-gNCs 1 and 3 were used as fluorescent probes for S2- detection in tap water and lake water with satisfactory results.
机译:在该研究中,从AgNO3和溶菌酶的不同反应物摩尔比合成三种用变性溶菌酶(二苯-AGNCs1-3)的红发射AG纳米蛋白。 Dlys-AgNCs 1仅包含Ag(0),而Dlys-AgNC 2和3含有Ag(0)和Ag(I)。当在490nm处激发时,二苯-AgNCs 1-3的最大发射波长均接近640nm,但具有不同的光致发光强度。研究了常见的无机阴离子存在下二苯-AGNC的光致发光性质。 Dlys-Agncs 1-3对S2-具有不同的光致发光响应。通过S2淬灭二苯-AgNCs1的光致发光,因为通过形成Ag 2 S来破坏二苯-AgNC1的纳米结构。通过S-2增强二酯-AgNC 3的光致发光,因为S-2在二酯-AgNC 3中与Ag(I)结合并改变了配体 - 金属 - 金属电荷转移。对于二醇 - AgNC 2,在加入更多S2-时,通过少量S2增强光致发光并淬火。这通过在低浓度下与Ag(I)与Ag(I)结合,然后在高浓度下进行解释。其他阴离子没有明显的效果,除了我 - 淬灭二醇-AGNCS 1-3的光致发光。通过XPS,MS,Zeta电位,DLS和荧光寿命测量来研究响应机制。用令人满意的结果,用作S2-检测的S2-荧光探针用作荧光探针。

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  • 来源
    《RSC Advances》 |2016年第70期|共9页
  • 作者单位

    Beijing Normal Univ Coll Chem Beijing 100875 Peoples R China;

    Beijing Normal Univ Coll Chem Beijing 100875 Peoples R China;

    Beijing Normal Univ Coll Chem Beijing 100875 Peoples R China;

    Peking Univ Coll Chem &

    Mol Engn Beijing Natl Lab Mol Sci Beijing 100871 Peoples R China;

    Beijing Normal Univ Coll Chem Beijing 100875 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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