Preparation method of lead-free organic and inorganic cation common hybridization perovskite material and film thereof
A technology of perovskite materials and organic cations, applied in semiconductor/solid-state device manufacturing, photovoltaic power generation, electrical components, etc., can solve the problems of photoelectric performance attenuation and poor stability of perovskite materials, and achieve electronic transition and stability The effect of improved performance and good photoelectric conversion performance
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Embodiment 1
[0029] A lead-free organic-inorganic cation co-hybridized perovskite material is obtained by co-hybridizing BiI3 with methylamino organic cations and Rb inorganic cations.
[0030] The preparation method of the lead-free organic-inorganic cation hybrid perovskite material and its thin film comprises the following steps:
[0031] S1. Mix BiI3, methyl iodide, and RbI in a stoichiometric ratio of 1:2:1 and grind them in a mortar for 15 minutes to obtain a brown-black lead-free organic-inorganic cation hybrid perovskite material;
[0032] S2. Put the perovskite material obtained in step S1 into a mold, press and form it under a pressure of 45MPa, and then vacuum seal to obtain a perovskite target;
[0033]S3. Put the perovskite target material obtained in step S2 into the vacuum magnetron sputtering table, and evacuate to 10 -5 Pa, fill it with argon gas to 0.65Pa, turn on the radio frequency power supply and perform magnetron sputtering. After the thickness of the film reaches 5...
Embodiment 2
[0035] A lead-free organic-inorganic cation co-hybridized perovskite material is obtained by co-hybridizing BiI3 with methylamino organic cations and Cs inorganic cations.
[0036] The preparation method of the lead-free organic-inorganic cation hybrid perovskite material and its thin film comprises the following steps:
[0037] S1. Mix BiI3, methyl iodide, and CsI in a stoichiometric ratio of 1:2:1 and put them into a mortar for 15 minutes to grind to obtain a brown-black lead-free organic-inorganic cation hybrid perovskite material;
[0038] S2. Put the perovskite material obtained in step S1 into a mold, press and form it under a pressure of 45MPa, and then vacuum seal to obtain a perovskite target;
[0039] S3. Put the perovskite target material obtained in step S2 into the vacuum magnetron sputtering table, and evacuate to 10 -5 Pa, fill it with argon gas to 0.65Pa, turn on the radio frequency power supply and perform magnetron sputtering. After the thickness of the film...
Embodiment 3
[0041] A lead-free organic-inorganic cation co-hybridized perovskite material is obtained by co-hybridizing BiI3 with methylamino organic cations and K inorganic cations.
[0042] The preparation method of the lead-free organic-inorganic cation hybrid perovskite material and its thin film comprises the following steps:
[0043] S1. Mix BiI3, methyl iodide, and KI according to the stoichiometric ratio of 1:2:1 and put them into a mortar for grinding for 15 minutes to obtain a brown-black lead-free organic-inorganic cation co-hybridized perovskite material;
[0044] S2. Put the perovskite material obtained in step S1 into a mold and press it under a pressure of 55 MPa, and then vacuum seal to obtain a perovskite target;
[0045] S3. Put the perovskite target material obtained in step S2 into the vacuum magnetron sputtering table, and evacuate to 10 -5 Pa, fill it with argon gas to 0.65Pa, turn on the radio frequency power supply and perform magnetron sputtering. After the thick...
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