Phase Transition and Negative Thermal Expansion in Guanidinium Magnesium-Hypophosphite Hybrid Perovskite
When the A- and X-sites in three-dimensional (3D) ABX3-type organic–inorganic hybrid perovskites are occupied by organic molecules, the perovskites possess rich features and functionalities. Herein, we report a new hybrid organic–inorganic ABX3-type guanidinium hypophosphite perovskite [Gua][Mg(H2...
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Veröffentlicht in: | Chemistry of materials 2020-08, Vol.32 (16), p.6886-6891 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | When the A- and X-sites in three-dimensional (3D) ABX3-type organic–inorganic hybrid perovskites are occupied by organic molecules, the perovskites possess rich features and functionalities. Herein, we report a new hybrid organic–inorganic ABX3-type guanidinium hypophosphite perovskite [Gua][Mg(H2POO)3] (Gua = guanidinium, C(NH2)3 +), where its A- and X-sites are occupied by Gua cations and hypophosphite (H2POO–) bridges, respectively, therefore displaying many excellent properties. Results show that it undergoes a second-order irreversible phase transition and exhibits a significant negative thermal expansion (NTE, α b (LT) = −7.7(7) and α b (HT) = −20.5(1) MK–1) effect along the b-axis. In addition, UV–vis absorption spectrum and calculated band structure and density of states demonstrate that the total structure donate to the large direct band gap. These results show that hypophosphite perovskites provide a promising platform for preparation of new functional materials. |
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ISSN: | 0897-4756 1520-5002 |
DOI: | 10.1021/acs.chemmater.0c01654 |