Tetrathiafulvalene-Based Mixed-Valence Acceptor-Donor-Acceptor Triads: A Joint Theoretical and Experimental Approach

被引:12
作者
Calbo, Joaquin [1 ]
Arago, Juan [1 ]
Oton, Francisco [2 ,3 ]
Lloveras, Vega [2 ,3 ]
Mas-Torrent, Marta [2 ,3 ]
Vidal-Gancedo, Jose [2 ,3 ]
Veciana, Jaume [2 ,3 ]
Rovira, Concepcio [2 ,3 ]
Orti, Enrique [1 ]
机构
[1] Univ Valencia, Inst Ciencia Mol, Paterna 46980, Spain
[2] Campus Univ Bellaterra Cerdanyola, Inst Ciencia Mat Barcelona ICMAB CSIC, Barcelona 08193, Spain
[3] Campus Univ Bellaterra Cerdanyola, Networking Res Ctr Bioengn Biomat & Nanomed CIBER, Barcelona 08193, Spain
关键词
density functional calculations; donor-acceptor systems; electronic structure; EPR spectroscopy; mixed-valent compounds; FUNCTIONAL RESPONSE THEORY; LOCALIZED/DELOCALIZED CHARACTER; EXCITATION-ENERGIES; ELECTRON-TRANSFER; RADICAL ANIONS; TTF;
D O I
10.1002/chem.201302910
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This work presents a joint theoretical and experimental characterisation of the structural and electronic properties of two tetrathiafulvalene (TTF)-based acceptor-donor-acceptor triads (BQ-TTF-BQ and BTCNQ-TTFBTCNQ; BQ is naphthoquinone and BTCNQ is benzotetracyano-p-quinodimethane) in their neutral and reduced states. The study is performed with the use of electrochemical, electron paramagnetic resonance (EPR), and UV/Vis/NIR spectroelectrochemical techniques guided by quantum-chemical calculations. Emphasis is placed on the mixed-valence properties of both triads in their radical anion states. The electrochemical and EPR results reveal that both BQ-TTF-BQ and BTCNQ-TTF-BTCNQ triads in their radical anion states behave as class-II mixed-valence compounds with significant electronic communication between the acceptor moieties. Density functional theory calculations (BLYP35/cc-pVTZ), taking into account the solvent effects, predict charge-localised species (BQ(.-)-TTF-BQ and BTCNQ(.-)-TTF-BTCNQ) as the most stable structures for the radical anion states of both triads. A stronger localisation is found both experimentally and theoretically for the BTCNQ-TTF-BTCNQ anion, in accordance with the more electron-withdrawing character of the BTCNQ acceptor. CASSCF/CASPT2 calculations suggest that the low-energy, broad absorption bands observed experimentally for the BQ-TTF-BQ and BTCNQ-TTF-BTCNQ radical anions are associated with the intervalence charge transfer (IV-CT) electronic transition and two nearby donor-to-acceptor CT excitations. The study highlights the molecular efficiency of the electron-donor TTF unit as a molecular wire connecting two acceptor redox centres.
引用
收藏
页码:16656 / 16664
页数:9
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