菁
激子
超快激光光谱学
皮秒
J-骨料
纳秒
化学物理
光化学
共价键
荧光
激发态
化学
单体
内部转换
二聚体
材料科学
光谱学
原子物理学
聚合物
电子
物理
光学
有机化学
激光器
量子力学
作者
Jonathan S. Huff,Paul H. Davis,Allison J. Christy,Donald L. Kellis,Nirmala Kandadai,Zi S. D. Toa,Gregory D. Scholes,Bernard Yurke,William B. Knowlton,Ryan D. Pensack
标识
DOI:10.1021/acs.jpclett.9b00404
摘要
Molecular excitons are used in a variety of applications including light harvesting, optoelectronics, and nanoscale computing. Controlled aggregation via covalent attachment of dyes to DNA templates is a promising aggregate assembly technique that enables the design of extended dye networks. However, there are few studies of exciton dynamics in DNA-templated dye aggregates. We report time-resolved excited-state dynamics measurements of two cyanine-based dye aggregates, a J-like dimer and an H-like tetramer, formed through DNA-templating of covalently attached dyes. Time-resolved fluorescence and transient absorption indicate that nonradiative decay, in the form of internal conversion, dominates the aggregate ground state recovery dynamics, with singlet exciton lifetimes on the order of tens of picoseconds for the aggregates versus nanoseconds for the monomer. These results highlight the importance of circumventing nonradiative decay pathways in the future design of DNA-templated dye aggregates.
科研通智能强力驱动
Strongly Powered by AbleSci AI