Chiral Cationic Chromophores: A New Class of Efficient Ultrabroadband Organic THz Crystals

Author:

Yang Jeong‐A1,Lee Chae‐Won1,Kim Chaeyoon2,Auer Michael3,Yu In Cheol2,OH Jungkwon1,Yoon Woojin4,Yun Hoseop4,Kim Dongwook5,Jazbinsek Mojca3,Rotermund Fabian2,Kwon O‐Pil1ORCID

Affiliation:

1. Department of Molecular Science and Technology Ajou University Suwon 443–749 South Korea

2. Department of Physics Korea Advanced Institute of Science and Technology (KAIST) Daejeon 34141 South Korea

3. Institute of Computational Physics Zurich University of Applied Sciences (ZHAW) Winterthur 8401 Switzerland

4. Department of Chemistry & Department of Energy Systems Research Ajou University Suwon 443–749 South Korea

5. Department of Chemistry Kyonggi University San 94–6, Iui‐dong, Yeongtong‐gu Suwonsi Gyeonggi 443–760 South Korea

Abstract

AbstractA strategic approach to develop efficient ultra‐broadband terahertz (THz) crystals involves the incorporation of different electron donating groups (EDGs) into cationic chromophores. In contrast to the widely utilized non‐cyclic 4‐(dimethylamino)phenyl (DA) EDG, cyclic 5‐membered 4‐(2‐(hydroxymethyl)pyrrolidine‐1‐yl)phenyl (PB) and cyclic 6‐membered 4‐(3‐(hydroxymethyl)piperidin‐1‐yl)phenyl (PN) EDGs exhibit an asymmetrical shape with a strongly interacting hydroxymethyl group at the chiral center. Notably, the PB EDG shows narrower intrinsic vibrational states with lower conformational flexibility and smaller ring flips compared to the PN EDG. In the crystalline state, introducing the PB EDG leads to the formation of a new class of nonlinear optical assembly, the so‐called stair‐type cation‐anion assembly. This assembly demonstrates optimal chromophore alignment with state‐of‐the‐art effective first hyperpolarizability (209 × 10−30 esu). Furthermore, the PB EDG‐based crystals exhibit significantly lower THz absorption compared to previously reported benchmark crystals. In THz wave generation experiments, PB EDG‐based crystals demonstrate state‐of‐the‐art efficiency and ultrabroad spectral bandwidth, featuring a cut‐off frequency of up to 16 THz.

Funder

Ministry of Trade, Industry and Energy

Korea Institute for Advancement of Technology

National Research Foundation of Korea

Ministry of Education

Publisher

Wiley

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