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Silver-induced reconstruction of an adeninate-based metal-organic framework for encapsulation of luminescent adenine-stabilized silver clusters

机译:银诱导的基于腺嘌呤的金属有机骨架的重建,用于封装发光腺嘌呤稳定的银簇。

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摘要

Bright luminescent silver-adenine species were successfully stabilized in the pores of the MOF-69A (zinc biphenyldicarboxylate) metal-organic framework, starting from the intrinsically blue luminescent bio-MOF-1 (zinc adeninate 4,4'-biphenyldicarboxylate). Bio-MOF-1 is transformed to the MOF-69A framework by selectively leaching structural adenine linkers from the original framework using silver nitrate solutions in aqueous ethanol. Simultaneously, bright blue-green luminescent silver-adenine clusters are formed inside the pores of the recrystallized MOF-69A matrix in high local concentrations. The structural transition and concurrent changes in optical properties were characterized using a range of structural, physicochemical and spectroscopic techniques (steady-state and time-resolved luminescence, quantum yield determination, fluorescence microscopy). The presented results open new avenues for exploring the use of MOFs containing luminescent silver clusters for solid-state lighting and sensor applications.
机译:从本质上为蓝色的发光生物MOF-1(腺嘌呤锌4,4'-联苯二羧酸酯)开始,明亮的发光银-腺嘌呤物质已成功地稳定在MOF-69A(联苯二羧酸锌)金属-有机骨架的孔中。通过使用乙醇水溶液中的硝酸银溶液从原始框架中选择性浸出结构腺嘌呤连接子,可将Bio-MOF-1转化为MOF-69A框架。同时,明亮的蓝绿色发光银-腺嘌呤簇以高局部浓度在重结晶的MOF-69A基质的孔内形成。使用一系列结构,物理化学和光谱技术(稳态和时间分辨发光,量子产率测定,荧光显微镜)表征了结构转变和光学性质的同时变化。提出的结果为探索将含发光银团簇的MOF用于固态照明和传感器应用开辟了新途径。

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