Catalog |
name |
Description |
price |
R-R-5037 |
3-nitro-2-{3-[(3-nitro-2-pyridinyl)sulfanyl]-1H-1,2,4-triazol-1-yl}pyridine CAS No.:251307-22-9 |
3-nitro-2-{3-[(3-nitro-2-pyridinyl)sulfanyl]-1H-1,2,4-triazol-1-yl}pyridine/CAS No.:251307-22-9: a versatile chemical compound with immense potential for scientific exploration. Discover its fascinating properties and explore its applications in cutting-edge research. Embrace the complexity and variability this compound brings to the realm of science.
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R-R-5038 |
(E)-N-[3,5-bis(pyridin-2-yl)-4H-1,2,4-triazol-4-yl]-N,N-dimethylmethanimidamide |
(E)-N-[3,5-bis(pyridin-2-yl)-4H-1,2,4-triazol-4-yl]-N,N-dimethylmethanimidamide/CAS No.:320418-73-3 is a chemical compound used in scientific research. Its unique structure allows for diverse applications, making it a valuable tool for studying biological processes and developing innovative solutions in various fields.
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R-R-5039 |
2,6-Di(1H-imidazol-1-yl)pyridine CAS No.:39242-17-6 |
2,6-Di(1H-imidazol-1-yl)pyridine/CAS No.:39242-17-6, a versatile chemical compound used in diverse scientific research. Explore its applications in catalysis, drug development, and material science, unlocking endless possibilities for innovative breakthroughs.
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R-R-5040 |
Bis-(6-bromo-pyridin-2-ylmethyl)-methyl-amine CAS No.:845621-72-9 |
Bis-(6-bromo-pyridin-2-ylmethyl)-methyl-amine/CAS No.:845621-72-9 is a complex organic compound. It likely contains two pyridine rings (a type of aromatic heterocyclic compound), each substituted with a bromine atom at the 6-position . These pyridine rings are likely connected to a central methylamine group.
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R-R-5041 |
4-(p-Tolyl)-2,2:6,2-terpyridine CAS No.:89972-77-0 |
4-(p-Tolyl)-2,2:6,2-terpyridine/CAS No.:89972-77-0 derivatives has been described through various methods, aiming to introduce functional groups that influence the ligand properties and its ability to complex with metals. One method involves the reaction of 2-acetylpyridine with 4-methylbenzaldehyde, followed by condensation with concentrated ammonia, producing the ligand with a yield of 31.7% under mild conditions and easy purification steps.
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R-R-5042 |
1,1-[1,4-Phenylenebis(methylene)]bis(4,4-bipyridinium) Bis(hexafluorophosphate) CAS No.:108861-20-7 |
The synthesis of bis[2]catenanes and a bis[2]rotaxane incorporating 1,1-[1,4-phenylenebis(methylene)]bis-4,4-bipyridinium bis-(hexafluorophosphate)/CAS No.:108861-20-7 demonstrates a sophisticated self-assembly process. The synthetic route involves template-directed reactions leading to the production of catenanes containing an N-allyl functionality. These derivatives are capable of sustaining self-assembly reactions at both recognition sites to yield bis[2]catenanes, showcasing the compound versatile synthetic adaptability.
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R-R-5043 |
4-(4-Pyridyl)-2,2:6,2-terpyridine CAS No.:112881-51-3 |
4-(4-Pyridyl)-2,2:6,2-terpyridine/CAS No.:112881-51-3 is a versatile chemical compound used in scientific research. It exhibits high perplexity and burstiness due to its complex molecular structure, making it suitable for various applications such as catalysis, photophysics, and material science.
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R-R-5044 |
Terpyridine CAS No.:1148-79-4 |
Terpyridine/CAS No.:1148-79-4, a versatile chemical compound, possesses unique properties making it invaluable in scientific research. Its applications range from catalysis to material science, providing a foundation for innovative studies. With its complex structure and diverse uses, Terpyridine is an essential tool in the realm of scientific exploration.
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R-R-5045 |
2,3-Bis(pyridin-4-yl)propanenitrile CAS No.:1311317-18-6 |
2,3-Bis(pyridin-4-yl)propanenitrile/CAS No.:1311317-18-6 is a chemical compound used in scientific research. It possesses diverse applications, including catalysts, pharmaceuticals, and organic synthesis. Its unique properties make it an invaluable tool for advancing knowledge in various fields.
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R-R-5046 |
[2,2:6,2-Terpyridine]-4-carboxylic acid CAS No.:148332-36-9 |
[2,2:6,2-Terpyridine]-4-carboxylic acid/CAS No.:148332-36-9 is a derivative of terpyridine, a ligand that is well-known for its coordination chemistry with transition metals. Terpyridines are tridentate ligands that can form stable complexes with various metal ions. The 4-carboxylic acid functionality on the terpyridine allows for further modification and the introduction of additional functional groups, which can be useful in applications such as macromolecular chemistry and nanoscience .
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