Self‐Assembled 2D Sheets of an Amphiphilic Sexiphenyl Exhibit Intense Polarized Blue Emission in the Solid State

Author:

Mondal Pramita1,Hill Jonathan P.2ORCID,Manna Gouranga3,De Dalui Sharmistha1,Neal Edward A.2,Richards Gary. J.4,Ariga Katsuhiko25,Yamauchi Yusuke678,Shrestha Lok Kumar29,Acharya Somobrata110

Affiliation:

1. School of Applied and Interdisciplinary Sciences Indian Association for the Cultivation of Science Jadavpur Kolkata West Bengal 700032 India

2. Research Center for Materials Nanoarchitectonics National Institute for Materials Science Namiki 1‐1 Tsukuba Ibaraki 305‐0044 Japan

3. Surface Physics and Materials Science Division Saha Institute of Nuclear Physics 1/AF Bidhan Nagar Kolkata 700064 India

4. Department of Applied Chemistry Graduate School of Engineering and Science Shibaura Institute of Technology Fukasaku 307 Minuma‐ku Saitama‐shi Saitama 337‐8570 Japan

5. Department of Advanced Materials Science Graduate School of Frontier Sciences The University of Tokyo 5‐1‐5 Kashiwanoha Kashiwa Chiba 277‐8561 Japan

6. Department of Materials Process Engineering, Graduate School of Engineering Nagoya University Nagoya 464‐8603 Japan

7. Department of Chemical and Biomolecular Engineering Yonsei University 50 Yonsei‐ro, Seodaemun‐gu Seoul 03722 South Korea

8. Australian Institute for Bioengineering and Nanotechnology (AIBN) The University of Queensland Brisbane QLD 4072 Australia

9. Department of Materials Science, Faculty of Pure and Applied Sciences University of Tsukuba 1‐1‐1 Tennodai Tsukuba Ibaraki 305‐8573 Japan

10. Technical Research Center (TRC) Indian Association for the Cultivation of Science Jadavpur Kolkata 700032 India

Abstract

AbstractDistinct from inorganic 2D nanomaterials (e.g., graphene, MoS2, etc,), self‐assembled organic 2D materials are significant due to the unique advantages of fine structure tunability and functionality. Electronically and photofunctionally‐active compounds (e.g., pentacene, p‐sexiphenyl) are highly attractive for applications but are limited by difficult handling and the existence of only a few native structures of the compounds. Here, it is shown that a p‐sexiphenyl derivative incorporated into 2D multilamellar sheets with chromophores oriented in the layers exhibits a significant polarization of photoluminescence. Highly emissive, amphiphilic sexiphenyl with hydrophilic/hydrophobic groups self‐assembles at air–water interface with chromophore orientation in the resulting films being controlled by monolayer compression. Large‐area multilamellar structures with p‐sexiphenyl chromophores highly oriented against the 2D plane are prepared by consecutive film transfers. The 2D sheets exhibit significant polarization of photoluminescence with polarization ratio 0.8 between orthogonal in‐plane axes. Notably, multilamellar structures cannot be established for the same p‐sexiphenyl using thermotropic processing thus emphasizing the importance of the 2D sheet multilayer synthesis process. Amphiphile design can be applied for the tailored synthesis of large‐area multilayered 2D sheets and used to construct highly efficient light‐emitting devices.

Funder

Japan Science and Technology Corporation

Publisher

Wiley

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