Zhou Chenkun, Lin Haoran, Tian Yu, Yuan Zhao, Clark Ronald, Chen Banghao, van de Burgt Lambertus J, Wang Jamie C, Zhou Yan, Hanson Kenneth, Meisner Quinton J, Neu Jennifer, Besara Tiglet, Siegrist Theo, Lambers Eric, Djurovich Peter, Ma Biwu
Department of Chemical and Biomedical Engineering , FAMU-FSU College of Engineering , Tallahassee , FL 32310 , USA . Email:
Materials Science and Engineering Program , Florida State University , Tallahassee , FL 32306 , USA.
Chem Sci. 2017 Nov 21;9(3):586-593. doi: 10.1039/c7sc04539e. eCollection 2018 Jan 21.
Single crystalline zero-dimensional (0D) organic-inorganic hybrid materials with perfect host-guest structures have been developed as a new generation of highly efficient light emitters. Here we report a series of lead-free organic metal halide hybrids with a 0D structure, (CNHX)SnX (X = Br, I) and (CNH)SbX (X = Cl), in which the individual metal halide octahedra (SnX) and quadrangular pyramids (SbX) are completely isolated from each other and surrounded by the organic ligands CNHX and CNH, respectively. The isolation of the photoactive metal halide species by the wide band gap organic ligands leads to no interaction or electronic band formation between the metal halide species, allowing the bulk materials to exhibit the intrinsic properties of the individual metal halide species. These 0D organic metal halide hybrids can also be considered as perfect host-guest systems, with the metal halide species periodically doped in the wide band gap matrix. Highly luminescent, strongly Stokes shifted broadband emissions with photoluminescence quantum efficiencies (PLQEs) of close to unity were realized, as a result of excited state structural reorganization of the individual metal halide species. Our discovery of highly luminescent single crystalline 0D organic-inorganic hybrid materials as perfect host-guest systems opens up a new paradigm in functional materials design.
具有完美主客体结构的单晶零维(0D)有机-无机杂化材料已被开发成为新一代高效发光体。在此,我们报道了一系列具有0D结构的无铅有机金属卤化物杂化物,(CNHX)SnX(X = Br、I)和(CNH)SbX(X = Cl),其中单个金属卤化物八面体(SnX)和四角锥(SbX)彼此完全隔离,分别被有机配体CNHX和CNH包围。通过宽带隙有机配体对光活性金属卤化物物种的隔离导致金属卤化物物种之间没有相互作用或电子能带形成,使得块状材料能够展现出单个金属卤化物物种的固有性质。这些0D有机金属卤化物杂化物也可被视为完美的主客体体系,金属卤化物物种周期性地掺杂在宽带隙基质中。由于单个金属卤化物物种的激发态结构重组,实现了具有接近单位的光致发光量子效率(PLQEs)的高发光、强斯托克斯位移宽带发射。我们对作为完美主客体体系的高发光单晶0D有机-无机杂化材料的发现为功能材料设计开辟了新的范例。