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Identification
CAS Number
14965-49-2
Name
methylammonium iodide
Synonyms
14965-49-2 239-037-4 Greatcell Solar(R)Iodure de méthanaminium Methanamine hydriodideMethanamine, hydriodideMethanaminium iodide Methanaminium, iodide (1:1) Methanaminiumiodid Methylamine hydriodideMethylamine hydroiodidemethylammonium iodideMFCD28100833Monomethylammonium iodideN-methylammonium iodide 98%hydroiodideMethanamine methanamine hydroiodideMethanamine, hydriodide (9CI)Methanamine, hydriodide(9CI)methyl ammonium iodidemethylamine hydroiodide (low water content)METHYLAMINE HYDROIODIDE|METHANAMINE HYDROIODIDEmethylaminehydroiodide(lowwatercontent)
SMILES
C.
StdInChI
InChI=1S/CH5N.HI/c1-2;/h2H2,1H3;1H
StdInChIKey
LLWRXQXPJMPHLR-UHFFFAOYSA-N
Molecular Formula
CH6IN
Molecular Weight
158.969
MDL Number
MFCD28100833
Properties
Appearance
White powder
Safety Data
Symbol
GHS07
Signal Word
Warning
Hazard statements
H302,H315,H319,H335
Precautionary Statements
P261 - P264 - P270 - P301 + P312 - P302 + P352 - P305 + P351 + P338
RIDADR
NONH for all modes of transport
WGK Germany
3
MSDS Download
Specifications and Other Information of Our methylammonium iodide CAS 14965-49-2
Identification Methods
HNMR
Purity
99.99%min
Carbon Content
7.3% ~7.8 %
Nitrogen Conten
8.5% ~ 9.0 %
Shelf Life
1 year
Storage
Under room temperature away from light, Oxygen-proof, water-proof, light-proof, low-humidity, dry storage.
Known Application
Methylammonium iodide (MAI), based on alkyl halides like iodides and bromides, serves as a crucial precursor for the preparation of perovskite materials used in photovoltaic applications. When combined with lead iodide (PbI₂), MAI plays a key role in forming methylammonium lead iodide perovskites (MAPbI₃), which significantly impact the morphology and crystallization of the perovskite structure. This modification of the material's structure can improve its optoelectronic properties, making it highly efficient for energy-harvesting applications.
Perovskite materials are known for their excellent light absorption, charge carrier mobility, and tunable bandgaps, making them ideal for use in next-generation energy devices. In particular, MAI-based perovskites are central to the development of perovskite solar cells (PSCs), which have shown rapid efficiency improvements in recent years. In addition to their potential in solar cells, these perovskite materials are also being explored in the production of light-emitting diodes (LEDs), offering a promising alternative for high-efficiency lighting and display technologies.
As the world shifts towards renewable energy, perovskite-based devices, enabled by precursors like methylammonium iodide, are poised to play a critical role in advancing sustainable energy solutions.
General View of Documents
Links
This product is developed by our R&D company Warshel Chemical Ltd (https://www.warshel.com/).
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