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. 2021 Sep 8;9:711488. doi: 10.3389/fchem.2021.711488

TABLE 1.

Comparison of the key parameters of the presented CPL photodetectors.

Chiral materials Wavelength (nm) p R (A W−1) D* (Jones) EQE (%) g res Ref.
1-Aza[6]helicene 365 0.01 Yang et al. (2013a)
ProSQ-C6:PCBM 545 0.054 3.3×1014 22 Schulz et al. (2019)
ortho-π-Extended PDI double-[7]heterohelicene 730 2.45 0.45 2.1×1010 89 0.057 Zhang et al. (2021)
Single-crystalline CPDI-Ph NWs 460 7.57×104 334 8.81×104 Shang et al. (2017)
Hydrazine-doped C1CPDI-Ph-CF crystal 495 1122 1.71×107 2.1×1016 3.0×105 0.12 Shang et al. (2020)
P3CT/BN hybrid film 375 0.1 Kim et al. (2019)
Achiral P6BT induced by CPL 450 40.34 1.86 × 10–5 7.44×107 1.62 × 10–3 1.94 Cheng et al. (2020a)
Plasmonic nanostructures 1340 39.3 9.9×1014 1.96×104 - Li et al. (2015)
Center-symmetrical “Y”-shaped gold antenna 1550 0.021 Xiao et al. (2019)
(α-PEA)2PbI3 perovskites 395 0.797 7.1×1011 0.1 Chen et al. (2019a)
Chiral 2D (MBA)2PbI4 perovskite 518 0.45 2.2×1011 Ma et al. (2019)
1D and 2D (α-PEA)2PbI4 perovskites 520 - 0.6 3.06×1011 140 0.23 Wang et al. (2019b)
Chiral lead-free hybrid perovskites 520 2.2 × 10–5 1.2×107 0.3 Li et al. (2021)
Chiral-perovskite nanowire arrays 505 47.1 1.24×1013 0.15 Zhao et al. (2021)
Chiral cellulose nanocrystal films 405 Grey et al. (2018)
Carbon dot nanomaterials 450 Zheng et al. (2018)
Cholesteric liquid crystal films 830 300 4.5×104 1.9 Han et al. (2020)