Ferroelectric circularly polarized photovoltaic effect driven circularly polarized light detector and preparation method thereof
A technology of circularly polarized light and ferroelectrics, applied in the field of photodetectors, can solve problems such as changing the response of circularly polarized light, and achieve the effects of changing the response, simple preparation method, and simple structure
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[0022] A ferroelectric circularly polarized photovoltaic effect-driven circularly polarized light detector, the detector includes an insulating base layer, and an optically active halide perovskite ferroelectric single chip is arranged on one side of the insulating base layer layer and a set of metal electrode groups plated on the free surface of the single wafer.
[0023] The insulating base layer is made of glass, mica or PET.
[0024] The optically active halide perovskite ferroelectric monolithic layer consists of (ethylamine) 4 Pb 3 Br 10 Single crystal, (n-butylamine) 2 CaPb 2 Br 7 Single crystal, (n-butylamine) 2 Methylamine Pb 2 Br 7 Made of single crystal.
[0025] The optically active halide perovskite ferroelectric monolithic layer of the present invention has a circularly polarized photovoltaic effect, and can generate a photocurrent that varies with the polarization angle under excitation of circularly polarized light, thereby realizing a self-driven circ...
Embodiment 1
[0029] The optically active halide perovskite ferroelectric in this embodiment is a single crystal (ethylamine) 4 Pb 3 Br 10 . In this example, (ethylamine) 4 Pb 3 Br 10 Crystallized in the space group C2cb, it has optical activity and can produce circularly polarized photovoltaic effect. The insulating substrate is made of glass substrate, the metal electrodes are made of gold Au, and the distance between the metal electrodes is about 100 μm.
Embodiment 2
[0031] The optically active halide perovskite ferroelectric of this embodiment is (n-butylamine) 2 CaPb 2 Br 7 . In this embodiment, (n-butylamine) 2 CaPb 2 Br 7 Crystallized in the space group Cmc2 1 , with optical activity, can produce circularly polarized photovoltaic effect. The insulating substrate is made of glass substrate, the metal electrodes are made of gold Au, and the distance between the metal electrodes is about 100 μm.
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