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Symmetry breaking of AMX-type perovskite derivatives induced by polar quaternary ammonium cations: achieving efficient nonlinear optical properties. | LitMetric

Low-dimensional organic-inorganic metal halides, especially lead-free perovskites, are attracting increasing attention because of their environmentally friendly processing, flexible structures, chemical stability, and promising nonlinear optical properties. Herein, we report a new stable polar 0D lead-free hybrid bismuth chloride to enable the second-harmonic generation (SHG) active material (BTA)BiCl (BTA = benzyltriethylammonium, CHCHN(CH)) that was obtained by the antisolvent vapor diffusion method and crystallized in the polar space group. Its structure features organic cations surrounded by face-sharing [BiCl] dimers. (BTA)BiCl exhibits a wide direct bandgap (3.21 eV) and a strong phase-matchable SHG conversion efficiency (1.39 × KDP). Theoretical calculation reveals that the SHG response is owing to the synergistic effect of distorted inorganic [BiCl] anions and polar organic BTA cations. This work not only enriches the family of organic-inorganic AMX (A = monovalent cations; M = trivalent metal ions; and X = halide ions) NLO crystals but also provides the possibilities for further designing novel lead-free semiconducting piezoelectric, pyroelectric and ferroelectric materials.

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http://dx.doi.org/10.1039/d2dt00451hDOI Listing

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