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pH-Guided Self-Assembly of Copper Nanoclusters with Aggregation-Induced Emission

机译:具有聚集诱导的发射的PH引导的铜纳米团簇自组装

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We here report a facile pH-guided strategy for the fabrication of water-soluble protein/copper nanoclusters (CuNCs) hybrid nanostructures with stable and bright luminescence resulted from aggregation-induced emission. Using L-cysteine as both the reducing and capping agents, the synthesized CuNCs showed a good reversible pH responsive aggregation and dispersion in the solution. The CuNCs formed insoluble macroscopic aggregates with stable red-colored emission (620 nm) at pH 3.0 but became soluble with weak luminescence at pH <1.5 or pH >4.0. The highly reversible pH-responsive properties of the CuNCs made it feasible to achieve water-soluble protein/CuNCs hybrid nanostructures in the presence of protein without any external forces (e.g., sonication). The weak luminescent CuNCs were first mixed with protein under neutral condition (e.g., pH 7.0), followed by tuning of the pH to acidic conditions (e.g., pH 3.0) to form luminescent protein/CuNCs hybrid nanostructures, the sizes of which were much smaller than those of the protein-free macroscopic CuNC aggregates. This strategy was easily applicable to other dispersing agents (e.g., glucose oxidase), opening a new pathway for the construction of many other smart water-soluble luminescent biomolecule/nanocluster hybrid nanostructures with various applications.
机译:我们在这里举报了一种容易的PH引导策略,用于制造水溶性蛋白质/铜纳米能器(CINC)杂合纳米结构,其具有稳定且明亮的发光引起的聚集诱导的发射。使用L-半胱氨酸作为还原剂和封端剂,合成的封闭件显示出良好的可逆性pH响应性聚集和在溶液中的分散体。封闭夹在pH3.0处形成不溶性的宏观聚集体,其在pH 3.0处具有稳定的红色发射(620nm),但在pH <1.5或pH> 4.0时变得溶于弱发光。康复的高可逆性pH响应性质使得在没有任何外力(例如超声处理)的情况下在蛋白质存在下实现水溶性蛋白/封闭杂交纳米结构。首先在中性条件下(例如,pH7.0)下蛋白质混合弱发光封闭蛋白,然后将pH调节至酸性条件(例如,pH3.0)以形成发光蛋白/封闭杂交纳米结构,其尺寸小得多比无蛋白质的宏观CUNc聚集体的聚集体。该策略容易适用于其他分散剂(例如葡萄糖氧化酶),开启新的途径,用于用各种应用构建许多其他智能水溶性发光生物分子/纳米簇杂交纳米结构。

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