TY - JOUR
T1 - Combinatorial Selection Among Geometrical Isomers of Discrete Long-Carbon-Chain Naphthalenediimides Induces Local Order at the Liquid/Solid Interface
AU - Berrocal, Jose Augusto
AU - Heideman, G. Henrieke
AU - De Waal, Bas F.M.
AU - Meijer, E. W.
AU - Feringa, Ben L.
N1 - Funding Information:
This work was supported financially by the European Research Council (ERC, advanced grant 694345 to B.L.F.), and the Ministry of Education, Culture and Science (Gravitation Program 024.001.035). Mr. Ralf Bovee (TU Eindhoven) is acknowledged for MALDI-TOF measurements. The authors thank Pieter van der Meulen (University of Groningen) for assistance during some NMR experiments.
Publisher Copyright:
© 2020 American Chemical Society.
PY - 2020/10/27
Y1 - 2020/10/27
N2 - We report two families of naphthalenediimides (NDIs) symmetrically functionalized with discrete carbon chains comprising up to 55 carbon atoms (Cn-NDI-Cn, n = 39, 44, 50, and 55) and their self-assembly at the 1- phenyloctane/highly oriented pyrolytic graphite interface (1- PO/HOPG interface). The compounds differ by the presence or absence of two or three internal double bonds in the carbon chains (unsaturated and saturated Cn-NDI-Cn, respectively). Combinatorial distributions of geometrical isomers displaying either the E- or Z-configuration at each double bond are obtained for the unsaturated compounds. Analysis of the selfassembled monolayers of equally long unsaturated and saturated Cn-NDI-Cn by scanning tunneling microscopy (STM) reveal that all Cn-NDI-Cn tend to form lamellar systems featuring alternating areas of aromatic cores and carbon chains. Extended chain lengths are found to significantly increase disorder in the self-assembled monolayers due to misalignments and enhanced strength of interchain interactions. This phenomenon is antagonized by the local order-inducing effect of the internal double bonds: Unsaturated Cn-NDI-Cn give qualitatively more ordered self-assembled monolayers compared to their saturated counterparts. The use of combinatorial distributions of unsaturated Cn-NDI-Cn geometrical isomers does not represent a limitation to achieve local order in the self-assembled monolayers. The self-assembly process operates a combinatorial search and selects the geometrical isomer(s) affording the most thermodynamically stable pattern, highlighting the adaptive character of the system. Finally, the antagonistic interplay between the extended carbon chain lengths and the presence of internal double bonds brings to the discovery of the lamellar "phase C"morphology for unsaturated Cn-NDI-Cn with n ≥ 50.
AB - We report two families of naphthalenediimides (NDIs) symmetrically functionalized with discrete carbon chains comprising up to 55 carbon atoms (Cn-NDI-Cn, n = 39, 44, 50, and 55) and their self-assembly at the 1- phenyloctane/highly oriented pyrolytic graphite interface (1- PO/HOPG interface). The compounds differ by the presence or absence of two or three internal double bonds in the carbon chains (unsaturated and saturated Cn-NDI-Cn, respectively). Combinatorial distributions of geometrical isomers displaying either the E- or Z-configuration at each double bond are obtained for the unsaturated compounds. Analysis of the selfassembled monolayers of equally long unsaturated and saturated Cn-NDI-Cn by scanning tunneling microscopy (STM) reveal that all Cn-NDI-Cn tend to form lamellar systems featuring alternating areas of aromatic cores and carbon chains. Extended chain lengths are found to significantly increase disorder in the self-assembled monolayers due to misalignments and enhanced strength of interchain interactions. This phenomenon is antagonized by the local order-inducing effect of the internal double bonds: Unsaturated Cn-NDI-Cn give qualitatively more ordered self-assembled monolayers compared to their saturated counterparts. The use of combinatorial distributions of unsaturated Cn-NDI-Cn geometrical isomers does not represent a limitation to achieve local order in the self-assembled monolayers. The self-assembly process operates a combinatorial search and selects the geometrical isomer(s) affording the most thermodynamically stable pattern, highlighting the adaptive character of the system. Finally, the antagonistic interplay between the extended carbon chain lengths and the presence of internal double bonds brings to the discovery of the lamellar "phase C"morphology for unsaturated Cn-NDI-Cn with n ≥ 50.
KW - Geometrical isomers
KW - Internal double bonds
KW - Liquid-solid interface
KW - Long-chain naphthalenediimides
KW - Long-range order
KW - Physisorbed monolayers
KW - Scanning tunneling microscopy
UR - http://www.scopus.com/inward/record.url?scp=85092477859&partnerID=8YFLogxK
U2 - 10.1021/acsnano.0c06274
DO - 10.1021/acsnano.0c06274
M3 - Article
C2 - 32914965
AN - SCOPUS:85092477859
SN - 1936-0851
VL - 14
SP - 13865
EP - 13875
JO - Acs Nano
JF - Acs Nano
IS - 10
ER -