Facile ionic transport in lead halide perovskites plays a critical role in device performance. Understanding the microscopic origins of high ionic conductivities has been complicated by indirect measurements and sample microstructural heterogeneities. Here, we report the direct visualization of halide anion interdiffusion in CsPbCl3-CsPbBr3 single crystalline perovskite nanowire heterojunctions using wide-field and confocal photoluminescence measurements. The combination of nanoscale imaging techniques with these single crystalline materials allows us to measure intrinsic anionic lattice diffusivities, free from complications of microscale inhomogeneity. Halide diffusivities were found to be between 10-13 and ∼10-12 cm2/second at about 100 ...
Halide perovskites have shown great potential for light emission and photovoltaic applications due t...
This thesis focuses on the electrical and thermal transport properties of two distinct systems: lead...
Fast ionic conductors constitute a family of materials exhibiting high values of the ionic conductiv...
The facile chemical transformation of metal halide perovskites via ion exchange has been attributed ...
Lead-halide perovskites are a family of semiconductor materials with excellent optoelectronic proper...
Halide perovskites have attracted increasing research attention with regard to their potential for o...
Halide perovskites are promising semiconductor materials for solution-processed optoelectronic devic...
Mobile ions play a crucial role in hybrid halide perovskites, especially as single crystals, from he...
Ion exchange, as a postsynthetic transformation strategy, offers more flexibilities in controlling m...
Single-crystal CH3NH3PbX3 (X = I-, Cl-, Br-) perovskite nanowires (NWs) and nanoplates (NPs), which ...
The development of metal halide perovskite/perovskite heterostructures is hindered by rapid interfac...
Understanding energy transport in metal halide perovskites is essential to effectively guide furth...
Single-crystal CH<sub>3</sub>NH<sub>3</sub>PbX<sub>3</sub> (X = I<sup>–</sup>, Cl<sup>–</sup>, Br<su...
Halide perovskites are emerging as revolutionary materials for optoelectronics. Their ionic nature ...
Halide perovskites are a promising class of materials for incorporation in optoelectronics with high...
Halide perovskites have shown great potential for light emission and photovoltaic applications due t...
This thesis focuses on the electrical and thermal transport properties of two distinct systems: lead...
Fast ionic conductors constitute a family of materials exhibiting high values of the ionic conductiv...
The facile chemical transformation of metal halide perovskites via ion exchange has been attributed ...
Lead-halide perovskites are a family of semiconductor materials with excellent optoelectronic proper...
Halide perovskites have attracted increasing research attention with regard to their potential for o...
Halide perovskites are promising semiconductor materials for solution-processed optoelectronic devic...
Mobile ions play a crucial role in hybrid halide perovskites, especially as single crystals, from he...
Ion exchange, as a postsynthetic transformation strategy, offers more flexibilities in controlling m...
Single-crystal CH3NH3PbX3 (X = I-, Cl-, Br-) perovskite nanowires (NWs) and nanoplates (NPs), which ...
The development of metal halide perovskite/perovskite heterostructures is hindered by rapid interfac...
Understanding energy transport in metal halide perovskites is essential to effectively guide furth...
Single-crystal CH<sub>3</sub>NH<sub>3</sub>PbX<sub>3</sub> (X = I<sup>–</sup>, Cl<sup>–</sup>, Br<su...
Halide perovskites are emerging as revolutionary materials for optoelectronics. Their ionic nature ...
Halide perovskites are a promising class of materials for incorporation in optoelectronics with high...
Halide perovskites have shown great potential for light emission and photovoltaic applications due t...
This thesis focuses on the electrical and thermal transport properties of two distinct systems: lead...
Fast ionic conductors constitute a family of materials exhibiting high values of the ionic conductiv...