首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Probing Resonance Energy Transfer and Inner Filter Effects in Quantum Dot-Large Metal Nanoparticle Clusters using a DNA-Mediated Quench and Release Mechanism
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Probing Resonance Energy Transfer and Inner Filter Effects in Quantum Dot-Large Metal Nanoparticle Clusters using a DNA-Mediated Quench and Release Mechanism

机译:使用DNA介导的猝灭和释放机理探索量子点大的金属纳米粒子簇中的共振能量转移和内部过滤器效应。

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摘要

The energy transfer between DNA-linked CdSe/ZnS quantum dots (qdots) and gold nanoparticles (AuNPs) is described. The assembly produced qdot—AuNP clusters with satellite-like morphology. Owing to the programmability of the DNA linkage, both assembly, as well as disassembly were used as a tool to probe quenching efficiency. Upon assembly, resonance energy transfer between the qdot donor and AuNP acceptor was measured as photoluminescence (PL) quenching. The magnitude of the quenching was approximated upon measurement of PL recovery once the cluster was disassembled by addition of a ssDNA fuel strand, which effectively displaced the qdot-to-AuNP dsDNA linkage. This controllable assembly/disassembly behavior was then used as a morphological tool to separate PL quenching from an inner filter effect originating from the AuNP's high surface plasmon resonance (SPR) extinction. This corrected quenching value was observed from steady state PL measurements, which were then substantiated by PL decay measurements. Finally, the quenching efficiency was related to cluster spatial properties via use of the nanometal surface resonance energy transfer (NSET) method. The AuNP interface to qdot core distance was estimated at ≈8 nm, which was close to the distances visualized by TEM.
机译:描述了DNA连接的CdSe / ZnS量子点(qdot)与金纳米颗粒(AuNPs)之间的能量转移。程序集产生了具有卫星状形态的qdot-AuNP簇。由于DNA键的可编程性,组装和拆卸均被用作检测淬灭效率的工具。组装后,通过光致发光(PL)猝灭测量qdot供体和AuNP受体之间的共振能量转移。一旦通过添加ssDNA燃料链将簇分解而有效地测定了PL的回收率,就可以估算出淬灭的程度,该链有效地取代了qdot-AuNP dsDNA的连接。然后将这种可控制的组装/拆卸行为用作形态学工具,以将PL猝灭与内部滤光效应分开,该内部滤光效应源自AuNP的高表面等离子体激元共振(SPR)消光。从稳态PL测量中观察到该校正后的猝灭值,然后通过PL衰减测量对其进行证实。最后,通过使用纳米金属表面共振能量转移(NSET)方法,淬灭效率与簇的空间性质有关。 AuNP界面到qdot核心的距离估计为≈8nm,接近于TEM可视化的距离。

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