Unusually large Stokes shift for a near-infrared emitting DNA-stabilized silver nanocluster

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Abstract

In this paper we present a new near-IR emitting silver nanocluster (NIR-DNA-AgNC) with an unusually large Stokes shift between absorption and emission maximum (211 nm or 5600 cm-1). We studied the effect of viscosity and temperature on the steady state and time-resolved emission. The time-resolved results on NIR-DNA-AgNC show that the relaxation dynamics slow down significantly with increasing viscosity of the solvent. In high viscosity solution, the spectral relaxation stretches well into the nanosecond scale. As a result of this slow spectral relaxation in high viscosity solutions, a multi-exponential fluorescence decay time behavior is observed, in contrast to the more mono-exponential decay in low viscosity solution.

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Bogh, S. A., Carro-Temboury, M. R., Cerretani, C., Swasey, S. M., Copp, S. M., Gwinn, E. G., & Vosch, T. (2018). Unusually large Stokes shift for a near-infrared emitting DNA-stabilized silver nanocluster. Methods and Applications in Fluorescence, 6(2). https://doi.org/10.1088/2050-6120/aaa8bc

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