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Enantiomeric hybrid high-temperature multiaxial ferroelectrics with a narrow bandgap and high piezoelectricity

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摘要 Ferroelectric semiconductors have sparked growing attention in the field of optoelectronics,due to their unique ferroelectric photovoltaic effect.Recently,substantial efforts have been devoted to the development of ferroelectric semiconductors,including inorganic oxides,organic-inorganic hybrids,and metal-free perovskites.Nevertheless,reports of ferroelectric semiconductors with a bandgap of less than 2 eV have been scarce.Here,in combination with the incorporation of triiodide(I_(3)−)and the introduction of chiral cations,we successfully constructed a pair of enantiomeric organic-inorganic hybrid ferroelectric semiconductors,(S-1,2-DAP·I)_(4)·I_(3)·BiI_(6)and(R-1,2-DAP·I)_(4)·I_(3)·BiI_(6)(R/S-1,2-DAP=(R/S)-(–)-1,2-diaminopropane),which possess high-temperature multiaxial ferroelectric phase transition with an Aizu notation of 422F2(s)at 405 K,a narrow bandgap of 1.56 eV comparable to that of CH3NH3PbI_(3)(∼1.5 eV),and an impressive piezoelectric response(piezoelectric coefficient,d22 of 35 pC/N)on par with PVDF(polyvinylidene fluoride,30 pC/N).With intriguing attributes,(S-1,2-DAP·I)_(4)·I_(3)·BiI_(6)and(R-1,2-DAP·I)_(4)·I_(3)·BiI_(6)exhibit great potential for application of self-power polarized-light detection and piezoelectric sensors.
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第8期462-466,共5页 中国化学快报(英文版)
基金 This work was supported financially by the National Key Research and Development Program of China(No.2017YFA0204800) National Natural Science Foundation of China(Nos.22175079 and 21875093) Natural Science Foundation of Jiangxi Province(Nos.20204BCJ22015 and 20202ACBL203001) Jiangxi Provincial Department of Education Science and Technology Research Project(No.GJJ210812) Jiangxi Provincial Natural Science Foundation of China(No.20212BAB214021) Science and Technology Project of Jiangxi Provincial Department of Education(No.GJJ200836).
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