Rational Design of New Conjugated Polymers with Main Chain Chirality for Efficient Optoelectronic Devices: Carbo[6]Helicene and Indacenodithiophene Copolymers as Model Compounds

Author:

Gedeon Clement12ORCID,Del Rio Natalia2ORCID,Furlan Francesco3,Taddeucci Andrea45,Vanthuyne Nicolas6ORCID,Gregoriou Vasilis G.17,Fuchter Matthew J.3ORCID,Siligardi Giuliano4ORCID,Gasparini Nicola3ORCID,Crassous Jeanne2ORCID,Chochos Christos L.17ORCID

Affiliation:

1. Advent Technologies SA. Stadiou Str Patras Platani 26504 Greece

2. Univ Rennes CNRS ISCR − UMR 6226 Rennes 35000 France

3. Molecular Sciences Research Hub Department of Chemistry White City Campus Imperial College London 82 Wood Lane London W12 0BZ UK

4. Diamond Light Source Harwell Science and Innovation Campus Didcot Oxfordshire OX11 0GD UK

5. Dipartimento di Chimica e Chimica Industriale University of Pisa Via Moruzzi 13 Pisa 56124 Italy

6. Aix Marseille University CNRS Centrale Marseille iSm2 Marseille 13007 France

7. Institute of Chemical Biology, National Hellenic Research Foundation Athens 11635 Greece

Abstract

AbstractThe unique properties of conjugated polymers (CPs) in various optoelectronic applications are mainly attributed to their different self‐assembly processes and superstructures. Various methods are utilized to tune and control CP structure and properties with less attention paid to the use of chirality. CPs with main chain chirality are rare and their microscopic and macroscopic properties are still unknown. In this work, the first experimental results are provided along these lines by synthesizing a series of racemic and enantiopure CPs containing statistical and alternating carbo[6]helicene and indacenodithiophene moieties and evaluating their microscopic (optical, energy levels) and macroscopic properties (hole mobilities, photovoltaic performance). It is demonstrated that a small statistical insertion of either the racemic or enantiopure helicene into the polymer backbone finely tunes the microscopic and macroscopic properties as a function of the statistical content. The microscopic properties of the enantiopure versus the racemic polymers with the same helicene loading remain similar. On the contrary, the macroscopic properties, and more interestingly those between the two enantiomeric forms, are altered as a function of the statistical content. Once incorporated into a solar cell device, these chiral CPs display better performance in their enantiopure versus racemic forms.

Funder

Centre National de la Recherche Scientifique

Hellenic Foundation for Research and Innovation

Engineering and Physical Sciences Research Council

H2020 European Research Council

Diamond Light Source

Publisher

Wiley

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