Department of Chemistry, Georgia State University , Atlanta, Georgia 30302, United States.
J Am Chem Soc. 2016 May 25;138(20):6380-3. doi: 10.1021/jacs.6b03037. Epub 2016 May 17.
Strong electrogenerated chemiluminescence (ECL) is detected from dithiolate Au nanoclusters (AuNCs) in aqueous solution under ambient conditions. A novel mechanism to drastically enhance the ECL is established by covalent attachment of coreactants N,N-diethylethylenediamine (DEDA) onto lipoic acid stabilized Au (Au-LA) clusters with matching redox activities. The materials design reduces the complication of mass transport between the reactants during the lifetime of radical intermediates involved in conventional ECL generation pathway. The intracluster reactions are highly advantageous for applications by eliminating additional and high excess coreactants otherwise needed. The enhanced ECL efficiency also benefits uniquely from the multiple energy states per Au cluster and multiple DEDA ligands in the monolayer. Potential step and sweeping experiments reveal an onset potential of 0.78 V for oxidative-reduction ECL generation. Multifolds higher efficiency is found for the Au clusters alone in reference to the standard Rubpy with high excess TPrA. The ECL in near-IR region (beyond 700 nm) is highly advantageous with drastically reduced interference signals over visible ones. The features of ECL intensity responsive to electrode potential and solution pH under ambient conditions make Au-LA-DEDA clusters promising ECL reagents for broad applications. The strategy to attach coreactants on Au clusters is generalizable for other nanomaterials.
在环境条件下,从水溶液中的二硫醇配体金纳米簇(AuNCs)中检测到强电生成化学发光(ECL)。通过将反应试剂 N,N-二乙基亚乙基二胺(DEDA)共价连接到具有匹配氧化还原活性的脂酰酸稳定的金(Au-LA)簇上,建立了一种大幅度增强 ECL 的新机制。这种材料设计通过在涉及传统 ECL 产生途径的自由基中间体的寿命内,减少反应物之间的质量传输的复杂性,来提高 ECL 效率。对于应用而言,由于消除了额外的和高过量的反应试剂,因此内簇反应是非常有利的。多层中每个 Au 簇和多个 DEDA 配体的多个能量状态也有利于提高 ECL 效率。阶跃和扫掠实验表明,氧化还原 ECL 产生的起始电位为 0.78 V。与高过量 TPrA 的标准 Rubpy 相比,单独的 Au 簇的效率要高出多倍。近红外区域(超过 700nm)的 ECL 具有很高的优势,与可见光相比,其干扰信号大大降低。在环境条件下,ECL 强度对电极电位和溶液 pH 响应的特征使得 Au-LA-DEDA 簇成为广泛应用的有前途的 ECL 试剂。将反应试剂连接到 Au 簇上的策略对于其他纳米材料是普遍适用的。