Blankevoort Nickel, Bastante Pablo, Davidson Ross J, Salthouse Rebecca J, Daaoub Abdalghani H S, Cea Pilar, Solans Santiago Martin, Batsanov Andrei S, Sangtarash Sara, Bryce Martin R, Agrait Nicolas, Sadeghi Hatef
Device Modelling Group, School of Engineering, University of Warwick, Coventry CV4 7AL, U.K.
Departamento de Física de la Materia Condensada C-III, Universidad Autónoma de Madrid, E-28049 Madrid, Spain.
ACS Omega. 2024 Feb 5;9(7):8471-8477. doi: 10.1021/acsomega.3c09760. eCollection 2024 Feb 20.
Thermoelectric materials have garnered significant interest for their potential to efficiently convert waste heat into electrical energy at room temperature without moving parts or harmful emissions. This study investigated the impact of the HOMO-LUMO (H-L) gap on the thermoelectric properties of three distinct classes of organic compounds: conjugated aromatics (isoindigos (IIGs)), quinoidal molecules (benzodipyrrolidones (BDPs)), and donor-acceptor systems (bis(pyrrol-2-yl)squaraines (BPSs)). These compounds were chosen for their structural simplicity and linear π-conjugated conductance paths, which promote high electrical conductance and minimize complications from quantum interference. Single-molecule thermoelectric measurements revealed that despite their low H-L gaps, the Seebeck coefficients of these compounds remain low. The alignment of the frontier orbitals relative to the Fermi energy was found to play a crucial role in determining the Seebeck coefficients, as exemplified by the BDP compounds. Theoretical calculations support these findings and suggest that anchor group selection could further enhance the thermoelectric behavior of these types of molecules.
热电材料因其在室温下无需移动部件或产生有害排放就能将废热高效转化为电能的潜力而备受关注。本研究调查了最高占据分子轨道(HOMO)-最低未占据分子轨道(LUMO)(H-L)能隙对三类不同有机化合物热电性能的影响:共轭芳烃(异靛蓝(IIGs))、醌型分子(苯并二吡咯烷酮(BDPs))和供体-受体体系(双(吡咯-2-基)方酸菁(BPSs))。选择这些化合物是因其结构简单且具有线性π共轭导电路径,这有利于实现高电导率并将量子干涉带来的复杂性降至最低。单分子热电测量表明,尽管这些化合物的H-L能隙较低,但其塞贝克系数依然很低。研究发现,前沿轨道相对于费米能量的排列在决定塞贝克系数方面起着关键作用,苯并二吡咯烷酮化合物就是例证。理论计算支持了这些发现,并表明锚定基团的选择可能会进一步增强这类分子的热电性能。