Disulfide‐Bridged Dynamic Covalent Triazine Polymer Thin Films by Interface Polymerization: High Refractive Index with Excellent Optical Transparency

Author:

Begum Salma1,Kutonova Ksenia12ORCID,Mauri Anna3,Koenig Meike4ORCID,Chan Ka Chun3,Sprau Christian15,Dolle Christian6ORCID,Trouillet Vanessa7ORCID,Hassan Zahid12,Leonhard Tobias18,Heißler Stefan4,Eggeler Yolita M.6ORCID,Wenzel Wolfgang3ORCID,Kozlowska Mariana3,Bräse Stefan129ORCID

Affiliation:

1. Material Research Center for Energy Systems (MZE) Strasse am Forum 7, Bldg. 30.48 76131 Karlsruhe Germany

2. Institute of Organic Chemistry Karlsruhe Institute of Technology (KIT) Fritz‐Haber‐Weg 6 76131 Karlsruhe Germany

3. Institute of Nanotechnology (INT) Karlsruhe Institute of Technology (KIT) Hermann‐von‐Helmholtz‐Platz 76344 Eggenstein‐Leopoldshafen Germany

4. Institute of Functional Interfaces (IFG) Karlsruhe Institute of Technology (KIT) Hermann‐von Helmholtz‐Platz 1 D‐76344 Eggenstein‐Leopoldshafen Germany

5. Institute of Applied Materials Ceramic Materials and Technologies (IAM‐KWT) Karlsruhe Institute of Technology (KIT) Haid‐und‐Neu Str. 7 76131 Karlsruhe Germany

6. Microscopy of Nanoscale Structures & Mechanisms (MNM) Laboratory for Electron Microscopy (LEM) Karlsruhe Institute of Technology (KIT) Engesserstr. 7 76131 Karlsruhe Germany

7. Institute of Applied Materials and Karlsruhe Nano Micro Facility (KNMFi) Karlsruhe Institute of Technology (KIT) Hermann‐von‐Helmholtz‐Platz 76344 Eggenstein‐Leopoldshafen Germany

8. Light Technology Institute (LTI) Karlsruhe Institute of Technology (KIT) Engesserstrasse 13 76131 Karlsruhe Germany

9. Institute of Biological and Chemical Systems (IBCS‐FMS) Karlsruhe Institute of Technology (KIT) Hermann‐von‐Helmholtz‐Platz 1 76344 Eggenstein‐Leopoldshafen Germany

Abstract

AbstractExploring innovative strategies for molecular structuring of dynamic materials that combine self‐correcting intrinsic reversibility with the robustness of covalent bonds, has been a long‐standing objective from applications perspective in fields ranging from molecular engineering to nanotechnology and interfacial science. To establish dynamic covalent chemistry approaches combined with interfacial polymerization, herein, a distinct synthetic approach is reported to develop disulfide‐bridged 2D polymeric C3N3S3 triazine thin‐films by interfacial thiol‐disulfide dynamic exchange process crosslinking tritopic planar 1,3,5‐triazine‐2,4,6‐trithiol molecular tectons via intermolecular disulfide formation in the presence of I2 vapors at the air/water interface under redox condition. The resulting centimeter‐scale polymeric thin‐films are covalently cross‐linked, dynamic in nature, featuring tunable thickness (6–200 nm) and significant morphological variations are realized under the influence of varying reaction time, concentration and types of reducing agents. Notably, C3N3S3 polymer thin films exhibit a transflectance of around 99.5% in the range from 430 to 1800 nm, show high refractive indices (1.730–1.488) and optical anisotropy with uniaxial negative birefringence. The C3N3S3 free‐standing polymer thin‐films can be easily transferred to different substrates or possibly into application‐relevant forms for device fabrications, making this useful from materials application perspective.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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