Synthesis of Thermally Stable and Highly Luminescent Cs5Cu3Cl6I2 Nanocrystals with Nonlinear Optical Response

Author:

Jang Changhee1,Kim Kangyong1,Nho Hak‐Won23,Lee Seung Min1,Mubarok Hanif4,Han Joo Hyeong5,Kim Hyeonjung1,Lee Dongryeol6,Jang Yangpil7,Lee Min Hyung4,Kwon Oh‐Hoon23,Kwak Sang Kyu8,Im Won Bin5,Song Myoung Hoon6,Park Jongnam17ORCID

Affiliation:

1. School of Energy and Chemical Engineering Ulsan National Institute of Science and Technology (UNIST) Ulsan 44919 Republic of Korea

2. Department of Chemistry College of Natural Sciences Ulsan National Institute of Science and Technology (UNIST) Ulsan 44919 Republic of Korea

3. Center for Soft and Living Matter Institute for Basic Science (IBS) Ulsan 44919 Republic of Korea

4. Department of Chemistry University of Ulsan Ulsan 44610 Republic of Korea

5. Division of Materials Science and Engineering Hanyang University Seoul 04763 Republic of Korea

6. Department of Materials Science and Engineering Ulsan National Institute of Science and Technology (UNIST) Ulsan 44919 Republic of Korea

7. Department of Biomedical Engineering Ulsan National Institute of Science and Technology (UNIST) Ulsan 44919 Republic of Korea

8. Department of Chemical and Biological Engineering Korea University 145 Anam‐ro, Seongbuk‐gu Seoul 02841 Republic of Korea

Abstract

AbstractLow‐dimensional Cu(I)‐based metal halide materials are gaining attention due to their low toxicity, high stability and unique luminescence mechanism, which is mediated by self‐trapped excitons (STEs). Among them, Cs5Cu3Cl6I2, which emits blue light, is a promising candidate for applications as a next‐generation blue‐emitting material. In this article, an optimized colloidal process to synthesize uniform Cs5Cu3Cl6I2 nanocrystals (NCs) with a superior quantum yield (QY) is proposed. In addition, precise control of the synthesis parameters, enabling anisotropic growth and emission wavelength shifting is demonstrated. The synthesized Cs5Cu3Cl6I2 NCs have an excellent photoluminescence (PL) retention rate, even at high temperature, and exhibit high stability over multiple heating–cooling cycles under ambient conditions. Moreover, under 850‐nm femtosecond laser irradiation, the NCs exhibit three‐photon absorption (3PA)‐induced PL, highlighting the possibility of utilizing their nonlinear optical properties. Such thermally stable and highly luminescent Cs5Cu3Cl6I2 NCs with nonlinear optical properties overcome the limitations of conventional blue‐emitting nanomaterials. These findings provide insights into the mechanism of the colloidal synthesis of Cs5Cu3Cl6I2 NCs and a foundation for further research.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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