Artikel

Weak H‐Bonds of Fluorophenyl Synthons Enabling Efficient and Entropically Stabilized Supramolecular Electro‐Optic Dendrimers

07.07.2025

Von Wiley-VCH zur Verfügung gestellt

Weak hydrogen bonding interactions in singular fluorophenyl synthons enable efficient and entropically stabilized supramolecular electro-optic (EO) dendrimers. It demonstrates the highest effective EO activity reported to date for dendrimers measured by attenuated total reflection certification, low optical losses, and improved sub-T g temporal stability against relaxation.


Herein, a series of supramolecular electro-optic (EO) dendrimers (EOD1-6) constructed using push–pull tetraene chromophores (PPT-phores) and Fréchet-type generation-1 benzyl ether dendrons with 2,3,5,6-tetrafluorophenyl or 2,4,6-trifluorophenyl groups at the periphery is presented. The fluorophenyl moieties possess enhanced CH acidity to form extended CH···F hydrogen bonds within complex functional dendrimers. Through comprehensive studies of optical absorption, electric field poling, EO activity, and thermal stability of EOD1-6/poly (methyl methacrylate) films, along with X-ray analyses of dendritic model compounds, it is elucidated that nonclassical hydrogen bonding of fluorophenyl synthons plays a pivotal role in modulating the strong dipole–dipole electrostatic interactions of PPT-phores. It facilitates the dipole orientation and enhances the stability of supramolecular EO dendrimers in poled films. Two of these dendrimers exhibit large r 33 values of ≈170 pm V−1 at 1306 nm and ≈120 pm V−1 at 1541 nm, among the best EO activities to date for organic materials as certified by prism-coupled attenuated total reflection spectroscopy. Furthermore, examining subgap absorption for the films provides insights into the Urbach energy tail states. The notable properties and synthetic efficacy demonstrated by these dendrimers represent a transformative step in developing highly efficient, thermally stable, and low loss supramolecular organic EO materials for photonic applications.

Verwandte Artikel
Weak H‐Bonds of Fluorophenyl Synthons Enabling Efficient and Entropically Stabilized Supramolecular Electro‐Optic Dendrimers
In Kürze
Weak H‐Bonds of Fluorophenyl Synthons Enabling Efficient and Entropically Stabilized Supramolecular Electro‐Optic Dendrimers
Ehrungen, Karriere
Weak H‐Bonds of Fluorophenyl Synthons Enabling Efficient and Entropically Stabilized Supramolecular Electro‐Optic Dendrimers
Aus den Fachgruppen
Weak H‐Bonds of Fluorophenyl Synthons Enabling Efficient and Entropically Stabilized Supramolecular Electro‐Optic Dendrimers
EuChemS Policy Workshop „PFAS”
Weak H‐Bonds of Fluorophenyl Synthons Enabling Efficient and Entropically Stabilized Supramolecular Electro‐Optic Dendrimers
Bafög beantragen

Das könnte Sie auch interessieren

GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

In Kürze

GÖCH

Termin vormerken: Generalversammlung am 21. September Die diesjährige Generalversammlung ist im Rahmen der Chemietage am...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Ehrungen, Karriere

Service

Ehrungen Finnian Freeling, Dr.: Promotionspreis Wasserchemie der Wasserchemischen Gesellschaft, Fachgruppe der GDCh, für...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Aus den Fachgruppen

GDCh

Bauchemie Neuer Vorstand Die GDCh-Fachgruppe Bauchemie hat ihren Vorstand für die Amtszeit 1. Januar 2026 bis 31. Dezemb...

30.04.2026