Catalog |
name |
Description |
price |
R-R-4987 |
9-Anthracenecarboxylic acid CAS No.:723-62-6 |
9-Anthracenecarboxylic acid (9AC)/CAS No.:723-62-6 is a compound that exhibits reversible photomechanical responses in its crystal form. This characteristic makes it a subject of interest for the development of photomechanical materials. The molecule ability to undergo [4 + 4] photodimerization under light irradiation is central to its photomechanical properties.
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R-R-4988 |
4,7-Dimethoxy-1,10-phenanthroline CAS No.:92149-07-0 |
4,7-Dimethoxy-1,10-phenanthroline/CAS No.:92149-07-0 has been synthesized and used as an efficient ligand in copper-catalyzed N-arylation of imidazole with aryl iodides and bromides under mild conditions. This synthesis process allowed the transformation of various hindered and functionalized imidazoles and aryl halides with good to excellent yields.
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R-R-4989 |
2-(Oxan-4-yl)-1,3-oxazole-4-carboxylic acid CAS No.:955401-82-8 |
2-(Oxan-4-yl)-1,3-oxazole-4-carboxylic acid/CAS No.:955401-82-8 is a versatile material used in diverse scientific research areas. Its unique structure and properties make it an ideal candidate for drug development, materials synthesis, and biological studies. The compound holds promise in advancing various scientific endeavors due to its perplexing nature and burstiness in applications.
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R-R-4990 |
5-Cyclohexyloxazole-4-carboxylic acid CAS No.:1226165-87-2 |
5-Cyclohexyloxazole-4-carboxylic acid/CAS No.:1226165-87-2 is a chemical compound with the CAS Number: 1226165-87-2 . It has a molecular weight of 195.22 and its IUPAC name is 5-cyclohexyl-1,3-oxazole-4-carboxylic acid . The compound is solid in physical form.
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R-R-4991 |
4,4-Bis(triethoxysilyl)-1,1-biphenyl CAS No.:123640-93-7 |
4,4-Bis(triethoxysilyl)-1,1-biphenyl/CAS No.:123640-93-7 is a specific organosilicon compound. While direct studies on this compound are limited, research on similar bis(triethoxysilyl) compounds and biphenyl derivatives provides insights into its potential characteristics and applications.
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R-R-4992 |
(S)-4-Hydroxy-2,6-bis(4-nitrophenyl)dinaphtho-[2,1-d:1,2-f][1,3,2]dioxaphosphepine 4-sulfide |
(S)-4-Hydroxy-2,6-bis(4-nitrophenyl)dinaphtho-[2,1-d:1,2-f][1,3,2]dioxaphosphepine 4-sulfide/CAS No.:1706459-42-8 is a chemical compound used in scientific research. Its complex structure allows for diverse applications, including catalysis, synthesis, and material science, making it a valuable tool in advancing various fields of scientific exploration.
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R-R-4993 |
5-(Piperidin-4-yl)-1,3-oxazole-4-carboxylic acid CAS No.:1874188-40-5 |
5-(Piperidin-4-yl)-1,3-oxazole-4-carboxylic acid/CAS No.:1874188-40-5 is a versatile material used extensively in scientific research due to its unique properties. It finds applications in drug discovery, organic synthesis, and catalysis, making it an invaluable tool for advancing various fields of science.
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R-R-4994 |
1,10-Phenanthrolin-5-amine CAS No.:54258-41-2 |
1,10-Phenanthrolin-5-amine/CAS No.:54258-41-2 is a derivative of the heterocyclic compound 1,10-phenanthroline, which is known for its versatility in coordination chemistry. This compound has been the subject of various studies due to its potential applications in catalysis, luminescence, and as a building block for the construction of complex ligands for various purposes, including interactions with DNA and as chemosensors for metal cations and anions.
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R-R-4995 |
2,9-Dimethyl-1,10-phenanthroline hydrochloride CAS No.:7296-20-0 |
2,9-Dimethyl-1,10-phenanthroline hydrochloride/CAS No.:7296-20-0 is a derivative of the phenanthroline family, which is known for its ability to form complexes with various metal ions. The compound is characterized by the presence of two methyl groups at the 2 and 9 positions of the phenanthroline molecule, which can influence its binding properties and overall molecular geometry.
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R-R-4996 |
2-(4-Fluorophenyl)-1,3-oxazole-4-carboxylic acid CAS No.:927800-88-2 |
2-(4-Fluorophenyl)-1,3-oxazole-4-carboxylic acid/CAS No.:927800-88-2: a versatile chemical compound with diverse applications in scientific research. Explore its potential in drug synthesis, material science, and biological studies, unlocking new possibilities for innovation and discovery.
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