Effect of hydrophilicity-imparting substituents on exciton delocalization in squaraine dye aggregates covalently templated to DNA Holliday junctions

被引:2
|
作者
Pascual, Gissela [1 ]
Roy, Simon K. [1 ]
Barcenas, German [1 ]
Wilson, Christopher K. [1 ]
Cervantes-Salguero, Keitel [1 ]
Obukhova, Olena M. [2 ]
Krivoshey, Alexander I. [2 ]
Terpetschnig, Ewald A. [3 ]
Tatarets, Anatoliy L. [2 ]
Li, Lan [1 ]
Yurke, Bernard [1 ,4 ]
Knowlton, William B. [1 ,4 ]
Mass, Olga A. [1 ]
Pensack, Ryan D. [1 ]
Lee, Jeunghoon [1 ,5 ]
机构
[1] Boise State Univ, Micron Sch Mat Sci & Engn, Boise, ID 83725 USA
[2] Natl Acad Sci Ukraine, Inst Single Crystals, State Sci Inst, UA-61072 Kharkiv, Ukraine
[3] SETA BioMed LLC, Urbana, IL 61801 USA
[4] Boise State Univ, Dept Elect & Comp Engn, Boise, ID 83725 USA
[5] Boise State Univ, Dept Chem & Biochem, Boise, ID 83725 USA
关键词
CYANINE DYES; AROMATIC STACKING; DYNAMICS; RESONANCE; CONTEXT; WATER; FIELD;
D O I
10.1039/d3nr04499h
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Molecular aggregates exhibit emergent properties, including the collective sharing of electronic excitation energy known as exciton delocalization, that can be leveraged in applications such as quantum computing, optical information processing, and light harvesting. In a previous study, we found unexpectedly large excitonic interactions (quantified by the excitonic hopping parameter Jm,n) in DNA-templated aggregates of squaraine (SQ) dyes with hydrophilic-imparting sulfo and butylsulfo substituents. Here, we characterize DNA Holliday junction (DNA-HJ) templated aggregates of an expanded set of SQs and evaluate their optical properties in the context of structural heterogeneity. Specifically, we characterized the orientation of and Jm,n between dyes in dimer aggregates of non-chlorinated and chlorinated SQs. Three new chlorinated SQs that feature a varying number of butylsulfo substituents were synthesized and attached to a DNA-HJ via a covalent linker to form adjacent and transverse dimers. Various characteristics of the dye, including its hydrophilicity (in terms of log Po/w) and surface area, and of the substituents, including their local bulkiness and electron withdrawing capacity, were quantified computationally. The orientation of and Jm,n between the dyes were estimated using a model based on Kuhn-Renger-May theory to fit the absorption and circular dichroism spectra. The results suggested that adjacent dimer aggregates of all the non-chlorinated and of the most hydrophilic chlorinated SQ dyes exhibit heterogeneity; that is, they form a mixture of dimers subpopulations. A key finding of this work is that dyes with a higher hydrophilicity (lower log Po/w) formed dimers with smaller Jm,n and large center-to-center dye distance (Rm,n). Also, the results revealed that the position of the dye in the DNA-HJ template, that is, adjacent or transverse, impacted Jm,n. Lastly, we found that Jm,n between symmetrically substituted dyes was reduced by increasing the local bulkiness of the substituent. This work provides insights into how to maintain strong excitonic coupling and identifies challenges associated with heterogeneity, which will help to improve control of these dye aggregates and move forward their potential application as quantum information systems. Molecular aggregates exhibit collective sharing of electronic excitation energy known as exciton delocalization, that can be leveraged in applications such as quantum computing, optical information processing, and light harvesting.
引用
收藏
页码:1206 / 1222
页数:17
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