Chen Cheng, Zhang Wan-Ying, Ye Qiong, Fu Da-Wei
Ordered Matter Science Research Center, Jiangsu Key Laboratory for Science and Applications of Molecular Ferroelectrics, Southeast University, Nanjing, 211189, P.R. China.
Sci Rep. 2017 Oct 2;7(1):12493. doi: 10.1038/s41598-017-12338-y.
With the flourishing development of star molecule (CHNH)PbI, organic-inorganic perovskites with multifunction and flexibility have become a worldwide focus. However, the controllable photoelectric switchable material (especially electric, optical, thermal multifunctional switches) still face great challenges, and most of them are ceramic and toxic lead-based series. Herein a lead-free perovskite-like crystal and flexible thin film, ImMC (ImMC = (HIm)∙[MnCl∙MnCl]) (1), with many advantages over inorganic ceramics and lead-based perovskites, performs ideal optical and dielectric duple switching properties simultaneously. The order-disordered HIm (Im = imidazole) cations of α-type occupy two lattice sites corresponding to "Switch-ON/0" and "Switch-OFF/1" states, respectively. Interestingly, the optical and dielectric "ON/OFF or 0/1" switches can be integrated into one single-molecule single/duple channel module with high signal-noise ratio, in which the "ON/OFF" response can be precisely controlled by temperature or/and light wavelength signal to realize automatically multiple switching. In brief, the lead-free multifunctional switch opens up a brand new route and shows the mark of its real genius as a highly desirable material for its advanced applications in highly integrated circuit and ultrahigh-encrypted storage in flexible photoelectric devices.
随着明星分子(CHNH)PbI的蓬勃发展,具有多功能和灵活性的有机-无机钙钛矿已成为全球关注的焦点。然而,可控光电开关材料(尤其是电、光、热多功能开关)仍面临巨大挑战,且大多数为陶瓷和有毒的铅基系列。在此,一种无铅钙钛矿状晶体和柔性薄膜ImMC(ImMC = (HIm)∙[MnCl∙MnCl]) (1),与无机陶瓷和铅基钙钛矿相比具有许多优势,同时表现出理想的光学和介电双开关特性。α型的有序-无序HIm(Im = 咪唑)阳离子分别占据对应于“开启/0”和“关闭/1”状态的两个晶格位点。有趣的是,光学和介电“开/关或0/1”开关可以集成到一个具有高信噪比的单分子单/双信道模块中,其中“开/关”响应可以通过温度或/和光波长信号精确控制,以实现自动多重切换。简而言之,这种无铅多功能开关开辟了一条全新的途径,并显示出其作为一种极具前景的材料在高度集成电路和柔性光电器件中的超高加密存储等先进应用中的真正优势。