Methylammonium bromide structure 
             | 
        Common Name | Methylammonium bromide | ||
|---|---|---|---|---|
| CAS Number | 6876-37-5 | Molecular Weight | 111.96900 | |
| Density | N/A | Boiling Point | 48.7ºC at 760 mmHg | |
| Molecular Formula | CH6BrN | Melting Point | -93.5ºC | |
| MSDS | Chinese USA | Flash Point | N/A | |
| Symbol | 
             
            
            GHS07  | 
        Signal Word | Warning | |
| 
                        
                        Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites.
                        
                        
                         Science 338(6107) , 643-647, (2012) The energy costs associated with separating tightly bound excitons (photoinduced electron-hole pairs) and extracting free charges from highly disordered low-mobility networks represent fundamental losses for many low-cost photovoltaic technologies. We report ...  | 
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                        Highly efficient perovskite solar cells with tunable structural color.
                        
                        
                         Nano Lett. 15(3) , 1698-702, (2015) The performance of perovskite solar cells has been progressing over the past few years and efficiency is likely to continue to increase. However, a negative aspect for the integration of perovskite solar cells in the built environment is that the color gamut ...  | 
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                        Compositional engineering of perovskite materials for high-performance solar cells.
                        
                        
                         Nature 517(7535) , 476-80, (2015) Of the many materials and methodologies aimed at producing low-cost, efficient photovoltaic cells, inorganic-organic lead halide perovskite materials appear particularly promising for next-generation solar devices owing to their high power conversion efficien...  | 
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                        Bright light-emitting diodes based on organometal halide perovskite.
                        
                        
                         Nat. Nanotechnol. 9(9) , 687-92, (2014) Solid-state light-emitting devices based on direct-bandgap semiconductors have, over the past two decades, been utilized as energy-efficient sources of lighting. However, fabrication of these devices typically relies on expensive high-temperature and high-vac...  | 
                    
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