Methylammonium example sentences
"Methylammonium" Example Sentences
1. Methylammonium chloride is a common precursor in organic synthesis.2. The methylammonium lead halide perovskites show promising photovoltaic properties.
3. Researchers are exploring new applications for methylammonium-based materials.
4. A solution of methylammonium bromide was prepared for the experiment.
5. The stability of methylammonium iodide under various conditions is being investigated.
6. Methylammonium formate is a less common but useful reagent.
7. The crystal structure of methylammonium lead iodide is well-studied.
8. Methylammonium cations are crucial to the function of certain perovskite solar cells.
9. This study focuses on the synthesis and characterization of methylammonium lead bromide.
10. The degradation pathways of methylammonium based perovskites are complex.
11. We observed significant improvements in efficiency using methylammonium as a cation.
12. Methylammonium can act as a template in the synthesis of porous materials.
13. The properties of methylammonium salts vary greatly depending on the anion.
14. Methylammonium is a small, organic cation with a positive charge.
15. Future research should investigate the toxicity of methylammonium compounds.
16. Methylammonium lead iodide is a commonly used perovskite material.
17. Are there any alternatives to methylammonium in perovskite solar cells?
18. The impact of humidity on methylammonium perovskite stability is well documented.
19. Understanding the dynamics of methylammonium ions is crucial.
20. Methylammonium bromide crystals are often used in diffraction studies.
21. Improper handling of methylammonium compounds can lead to safety hazards.
22. Several studies have explored the use of methylammonium in organic electronics.
23. The synthesis of methylammonium chloride is a relatively simple process.
24. Methylammonium is an important building block in many organic compounds.
25. High-quality methylammonium halide perovskites are crucial for high-efficiency solar cells.
26. The research team successfully synthesized a new methylammonium-based material.
27. Further research is needed to fully understand the behavior of methylammonium in solution.
28. Methylammonium plays a significant role in the optoelectronic properties of perovskites.
29. Careful purification of methylammonium precursors is essential for high-performance devices.
30. The cost-effectiveness of methylammonium-based perovskites makes them attractive for large-scale applications.
31. Methylammonium is a relatively simple organic molecule.
32. We hypothesize that the methylammonium cation influences the band gap of the perovskite.
33. The long-term stability of methylammonium perovskites remains a challenge.
34. Methylammonium salts can be synthesized via several different routes.
35. Methylammonium iodide decomposes under certain conditions.
36. This paper reviews the recent advances in methylammonium perovskite research.
37. The advantages and disadvantages of using methylammonium in perovskite solar cells are discussed.
38. Methylammonium bromide is a crystalline solid.
39. The concentration of methylammonium ions affects the film morphology.
40. We compared the performance of methylammonium and formamidinium perovskites.
41. The use of methylammonium in perovskite solar cells has revolutionized the field.
42. Methylammonium is a key component in many perovskite-based devices.
43. The chemical properties of methylammonium are well understood.
44. Methylammonium lead bromide perovskites exhibit excellent light absorption.
45. This work explores the potential of methylammonium for other applications beyond perovskites.
46. The synthesis and characterization of methylammonium are described in detail.
47. Methylammonium is a protonated methylamine.
48. The environmental impact of methylammonium should be carefully considered.
49. Further studies are required to optimize the synthesis of methylammonium-based materials.
50. Methylammonium based perovskites offer a promising path towards sustainable energy.
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