Ferrocene Interlayer for a Stable and Gap-Free P3HT-Based Perovskite Solar Cell as a Low-Cost Power Source for Indoor IoTs
收藏NIAID Data Ecosystem2026-05-02 收录
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https://figshare.com/articles/dataset/Ferrocene_Interlayer_for_a_Stable_and_Gap-Free_P3HT-Based_Perovskite_Solar_Cell_as_a_Low-Cost_Power_Source_for_Indoor_IoTs/28212870
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资源简介:
Although poly(3-hexylthiophene-2,5-diyl) (P3HT) with
its stability-boosting
hydrophobic surface is a promising low-cost alternative dopant-free
hole transport material for n-i-p perovskite solar cells (PSCs), the
P3HT-based PSCs suffer from surface energy mismatch between hydrophilic
perovskite and hydrophobic P3HT, which results in interlayer gap,
poor electronic contact, and poor charge extraction. In this study,
low-cost ferrocene (Fc) acts as an interlayer at the perovskite/P3HT
interface, inducing the replacement of the hydrophobic edge-on stacking
of alkyl side chains with the hydrophilic π–π stacking
of thiophene rings within the P3HT structure to mitigate such an energy
mismatch. With an optimal amount of Fc, an average PCE of 23.6% has
been achieved under indoor light at 1000 lux in comparison to 20.6%
of P3HT-based PSCs without Fc. In addition, an unencapsulated device
with the interlayer can retain 80% of initial PCE (T80) over 12 months
in the dark with 70% RH, longer than T80 of 8 months without Fc. Finally,
a Bluetooth sensor module is powered by three Fc-passivated P3HT-based
PSCs connected in series to demonstrate the capacity of replacing
batteries used for the Internet of Things (IoTs).
创建时间:
2025-01-15



