TY - JOUR
T1 - Structure and disorder in squaraine-C60 organic solar cells
T2 - A theoretical description of molecular packing and electronic coupling at the donor-acceptor interface
AU - Fu, Yao Tsung
AU - Da Silva Filho, Demetrio A.
AU - Sini, Gjergji
AU - Asiri, Abdullah M.
AU - Aziz, Saadullah Gary
AU - Risko, Chad
AU - Brédas, Jean Luc
PY - 2014/6/25
Y1 - 2014/6/25
N2 - Organic solar cells based on the combination of squaraine dyes (as electron donors) and fullerenes (as electron acceptors) have recently garnered much attention. Here, molecular dynamics simulations are carried out to investigate the evolution of a squaraine-C60 bilayer interface as a function of the orientation and order of the underlying squaraine layer. Electronic couplings between the main electronic states involved in exciton dissociation and charge (polaron pair) recombination are derived for donor-acceptor complexes extracted from the simulations. The results of the combined molecular-dynamics-quantum-mechanics approach provide insight into how the degree of molecular order and the dynamics at the interface impact the key processes involved in the photovoltaic effect. A combined molecular dynamics-quantum mechanics approach reveals the complex landscape of the intermolecular electronic couplings at the squaraine-C60 (donor-acceptor) bilayer interface as a function of the interfacial molecular packing and dynamics. Such aspects are of importance when considering the operation of organic solar cells.
AB - Organic solar cells based on the combination of squaraine dyes (as electron donors) and fullerenes (as electron acceptors) have recently garnered much attention. Here, molecular dynamics simulations are carried out to investigate the evolution of a squaraine-C60 bilayer interface as a function of the orientation and order of the underlying squaraine layer. Electronic couplings between the main electronic states involved in exciton dissociation and charge (polaron pair) recombination are derived for donor-acceptor complexes extracted from the simulations. The results of the combined molecular-dynamics-quantum-mechanics approach provide insight into how the degree of molecular order and the dynamics at the interface impact the key processes involved in the photovoltaic effect. A combined molecular dynamics-quantum mechanics approach reveals the complex landscape of the intermolecular electronic couplings at the squaraine-C60 (donor-acceptor) bilayer interface as a function of the interfacial molecular packing and dynamics. Such aspects are of importance when considering the operation of organic solar cells.
KW - donor-acceptor interfaces
KW - intermolecular dynamics
KW - intermolecular electronic couplings
KW - molecular packing
KW - organic solar cells
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U2 - 10.1002/adfm.201303941
DO - 10.1002/adfm.201303941
M3 - Article
AN - SCOPUS:84903124512
SN - 1616-301X
VL - 24
SP - 3790
EP - 3798
JO - Advanced Functional Materials
JF - Advanced Functional Materials
IS - 24
ER -