Yin Ruotong, Yu Gan, Cong Wei-Yan, Guan ChengBo, Li Jinping, Lu Ying-Bo
School of Space Science and Physics, Shandong University, Weihai 264209, China.
ACS Appl Mater Interfaces. 2020 Oct 7;12(40):44798-44804. doi: 10.1021/acsami.0c13374. Epub 2020 Sep 28.
Double perovskite ABB'X, including all-inorganic and hybrid organic-inorganic composition, show great potential applications. The role of A cations (organic molecules or inorganic ions) in the double perovskite is distinct from that in the standard perovskite. Therefore, we carried out systematic analyses of the geometric and electronic structures of CsAgBiBr and (MA)AgBiBr (MA = CHNH) double perovskites. CsAgBiBr maintains the standard cubic double perovskite lattice. While MA molecules prefer to align in the [110] direction in (MA)AgBiBr and give rise to obvious lattice distortion. The band gap of (MA)AgBiBr is slightly less than that of CsAgBiBr. Because of the spherical or quasi-spherical wave functions of the s/d orbitals, the lattice distortion and the transverse shift between Ag/Bi and Br induced by MA molecules do not change the composition of the band edges. But the complex bonding interactions between MA and the inorganic frameworks make the Ag-Br or Bi-Br bond lengths no longer identical values, so the bond strength and the energy level of each bonding state are dispersed and the band is expanded, which reduces the band gap of the hybrid organic-inorganic double perovskite (MA)AgBiBr. Making the role of A cations in the ABB'X double perovskite clear, we could find an excellent double perovskite to put forward their applications.
双钙钛矿ABB'X,包括全无机和有机-无机杂化成分,展现出巨大的潜在应用价值。A阳离子(有机分子或无机离子)在双钙钛矿中的作用与标准钙钛矿中的不同。因此,我们对CsAgBiBr和(MA)AgBiBr(MA = CHNH)双钙钛矿的几何结构和电子结构进行了系统分析。CsAgBiBr保持标准的立方双钙钛矿晶格。而MA分子在(MA)AgBiBr中倾向于沿[110]方向排列,并导致明显的晶格畸变。(MA)AgBiBr的带隙略小于CsAgBiBr的带隙。由于s/d轨道的球形或准球形波函数,MA分子引起的晶格畸变以及Ag/Bi与Br之间的横向位移不会改变带边的组成。但是MA与无机骨架之间复杂的键合相互作用使得Ag-Br或Bi-Br键长不再是相同的值,因此每个键合态的键强度和能级都发生了分散,能带展宽,这降低了有机-无机杂化双钙钛矿(MA)AgBiBr的带隙。明确了A阳离子在ABB'X双钙钛矿中的作用后,我们就能找到一种优异的双钙钛矿并提出其应用。