Abstract
The mesoporous (meso)-TiO2 layer is a key component of high-efficiency perovskite solar cells (PSCs). Herein, pore size controllable meso-TiO2 layers are prepared using spin coating of commercial TiO2 nanoparticle (NP) paste with added soft polymer templates (SPT) followed by removal of the SPT at 500 °C. The SPTs consist of swollen crosslinked polymer colloids (microgels, MGs) or a commercial linear polymer (denoted as LIN). The MGs and LIN were comprised of the same polymer, which was poly(N-isopropylacrylamide) (PNIPAm). Large (L-MG) and small (S-MG) MG SPTs were employed to study the effect of the template size. The SPT approach enabled pore size engineering in one deposition step. The SPT/TiO2 nanoparticle films had pore sizes > 100 nm, whereas the average pore size was 37 nm for the control meso-TiO2 scaffold. The largest pore sizes were obtained using L-MG. SPT engineering increased the perovskite grain size in the same order as the SPT sizes: LIN < S-MG
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Lian, Q., Mokhtar, M. Z., Lu, D., Zhu, M., Jacobs, J., Foster, A. B., … Saunders, B. R. (2020). Using Soft Polymer Template Engineering of Mesoporous TiO2Scaffolds to Increase Perovskite Grain Size and Solar Cell Efficiency. ACS Applied Materials and Interfaces, 12(16), 18578–18589. https://doi.org/10.1021/acsami.0c02248
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