An efficient pathway to high persistence length helicenes from scalable [4]-helicene synthons.

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Bibliographic Details
Title: An efficient pathway to high persistence length helicenes from scalable [4]-helicene synthons.
Authors: Reinhard GL; Air Force Research Laboratory, Polymer Branch (AFRL/RXNP) Wright-Patterson AFB OH 45433-7750 USA davide.simone@us.af.mil garrett.reinhard@us.af.mil., Dowling R; Air Force Research Laboratory, Polymer Branch (AFRL/RXNP) Wright-Patterson AFB OH 45433-7750 USA davide.simone@us.af.mil garrett.reinhard@us.af.mil.; University of Dayton Dayton OH 45469 USA., Hewitt P; Air Force Research Laboratory, Polymer Branch (AFRL/RXNP) Wright-Patterson AFB OH 45433-7750 USA davide.simone@us.af.mil garrett.reinhard@us.af.mil.; AeroVironment, Inc. Dayton OH 45432 USA., Varshney V; Air Force Research Laboratory, Polymer Branch (AFRL/RXNP) Wright-Patterson AFB OH 45433-7750 USA davide.simone@us.af.mil garrett.reinhard@us.af.mil., Simone DL; Air Force Research Laboratory, Polymer Branch (AFRL/RXNP) Wright-Patterson AFB OH 45433-7750 USA davide.simone@us.af.mil garrett.reinhard@us.af.mil.
Source: RSC advances [RSC Adv] 2025 Jun 20; Vol. 15 (26), pp. 20935-20943. Date of Electronic Publication: 2025 Jun 20 (Print Publication: 2025).
Publication Type: Journal Article
Journal Info: Publisher: Royal Society of Chemistry Country of Publication: England NLM ID: 101581657 Publication Model: eCollection Cited Medium: Internet ISSN: 2046-2069 (Electronic) Linking ISSN: 20462069 NLM ISO Abbreviation: RSC Adv Subsets: PubMed not MEDLINE
Database: MEDLINE Ultimate
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