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The Structural Origin of Chiroptical Properties in Perovskite Nanocrystals with Chiral Organic Ligands
- Kim, Young-Hoon;
- Song, Ruyi;
- Hao, Ji;
- Zhai, Yaxin;
- Yan, Liang;
- 외 9명
WEB OF SCIENCE
119SCOPUS
121초록
The authors investigate how chiral ligands attached to perovskite nanocrystal (PNC) surfaces structurally distort the perovskite lattice. Chiral electro-optical properties of the resulting PNCs are demonstrated through the fabrication of a circularly polarized light (CPL) detector with a discrimination of up to 14% between left- and right-handed CPL. Both experimental and electronic-structure-based simulations are combined to provide insights into the interactions (both structural and electronic) between chiral organic ligands and PNCs. The major finding is a centro-asymmetric distortion of the surface lattice that penetrates up to five atomic unit cells deep into the PNCs, which is the likely cause of the chiral-optical properties. Spin-polarized transport through chiral-PNCs results from the chiral-induced spin selectivity effect and amplifies the discrimination between left and right-handed CPL as is experimentally demonstrated in the detectors.
키워드
- 제목
- The Structural Origin of Chiroptical Properties in Perovskite Nanocrystals with Chiral Organic Ligands
- 저자
- Kim, Young-Hoon; Song, Ruyi; Hao, Ji; Zhai, Yaxin; Yan, Liang; Moot, Taylor; Palmstrom, Axel F.; Brunecky, Roman; You, Wei; Berry, Joseph J.; Blackburn, Jeffrey L.; Beard, Matthew C.; Blum, Volker; Luther, Joseph M.
- 발행일
- 2022-06
- 유형
- Article; Early Access
- 권
- 32
- 호
- 25
- 페이지
- 1 ~ 10