flexibility were also exhibited. Additionally, the switchable phase transition mechanism and significant photoluminescence characteristics of the hybrid compound [ASD]2[ZnBr4] (1, ASD = 5-azonia-spiro[4,5]decane) were analysed. Furthermore, it is especially noteworthy that 1 exhibited a unique and efficient broadband blue-white light emission with a photoluminescence quantum yield (PLQY) of 18.29%. In another
                                    在材料中同时实现高T c(居里温度)和蓝白色光一直是迫切需要解决的巨大挑战,特别是在以柔性/可穿戴设备与光电功能为首的数字时代来临之际。然而,由于高T c和柔韧性的限制,尚未实现这种类型的材料。众所周知,杂化材料在超柔性方面优于传统的无机膜,这已被CH 3 NH 3 PbI 3膜充分证明。在这里,我们克服了这一挑战,合成了第一批高T c通过有效的阳离子-阴离子调节,介电相变体/膜与蓝白色发射耦合。同时,还表现出理想的成膜能力和柔韧性。此外,分析了杂化化合物[A
SD] 2 [ZnBr 4 ](1,A
SD = 5-azonia-spiro [4,5] decane)的可切换相变机理和显着的光致发光特性。此外,特别值得注意的是,1展示了独特而有效的宽带蓝白光发射,其光致发光量子产率(PLQY)为18.29%。换句话说,这项工作为通往理想的高T c的新途径提供了启示。 以及柔性的光电多功能材料。