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초록
Layered metal-halide perovskites (L-MHPs) form self-assembled quantum wells with strongly bound excitons and electron-phonon interactions that promote polaron formation. Due to spin-orbit coupling and Rashba-type spin-splitting of the electronic bands, spin-polarized excitons can be photoexcited with circularly polarized light, making these materials promising in opto-spintronics. Recently, we have shown that photoexcitation with excess energy extends spin-lifetimes in (BA)2FAPb2I7 by over 2 orders of magnitude compared to resonant excitation and attributed this to polaron formation. Here, we study spin-lifetimes in L-MHPs with different A-site cations: (Hexa)2MAPb2I7, (Hexa)2FAPb2I7, (Hexa)2CsPb2I7 (Hexa: hexylammonium, MA: methylammonium, FA: formamidinium, Cs: cesium). We find that all studied materials exhibit vastly extended spin-lifetimes under excess-energy excitation, but that the polaron formation barrier is reduced with increasing polarity of the A-site cations. First-principles calculations show that (Hexa)2MAPb2I7 has the most stable polarons and (Hexa)2CsPb2I7, the least. Our findings demonstrate tuning of optically controlled exciton spin-lifetimes in L-MHPs through composition engineering, providing a pathway toward optimized materials for spintronics.
키워드
- 제목
- Cation Tuning of Polaron Barriers in Layered Perovskites for Optical Spin Lifetime Control
- 저자
- Romano, Valentino; Hormann, Martin; Stadlbauer, Anna; Mosconi, Edoardo; Gregori, Luca; De Angelis, Filippo; Deschler, Felix; Cerullo, Giulio; Camargo, Franco V. A.
- 발행일
- 2025-09-12
- 유형
- Article; Early Access
- 저널명
- ACS ENERGY LETTERS
- 권
- 10
- 호
- 9
- 페이지
- 4636 ~ 4643