Amerigo Scientific
Amerigo Scientific
The high stability and formation of the supramolecular structures of the syn and anti isomers of the dioxime of bicyclo[3. 3. 1]nonane-3,7-dione were studied.
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Amerigo Scientific
Biphenyl-2-carboxaldehyde is an oxygen-containing polycyclic aromatic hydrocarbon derivative (OPAH). It can be prepared via Suzuki cross-coupling reaction between phenyl boronic acid and 2-bromobenzaldehyde.
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Amerigo Scientific
Biphenyl-3,3′,5,5′-tetracarboxylic acid (H4BPTC) is a carboxylic ligand material, which has multiple co-ordinated sites, and the carboxyl groups lie in the position of 120° that extend in all the directions. It has a luminescent property with an emission band maximum at 405 nm.
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Amerigo Scientific
Biphenyl-3,4′,5-tricarboxylic acid (H3BPT) is a co-ordination polymer, which is majorly used as an unsymmetrically substituted linker. It forms self-assembly under the solvothermal condition to synthesize 3D lanthanide based metal organic frameworks (MOFs).
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Amerigo Scientific
Biphenyl-4-methanol acts as monofunctional alcohol initiator during the ring-opening polymerization of trimethylene carbonate (TMC) catalyzed by CH3SO3H and copolymerisation of ε-caprolactone and TMC.
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Amerigo Scientific
Biphenyl-4,4′-disulfonyl chloride reacts with cycloinulohexaose in pyridine to form capped cyclofructan, 6A,6C-di-O-(biphenyl-4,4′-disulfonyl)-cycloinulohexaose.
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Amerigo Scientific
Biphenyl-4,4′-dithiol (BPDT) is an aryl dithiol that is prepared by taking a mixture of stannous chloride dihydrate and glacial acetic acid with anhydrous hydrogen chloride. It forms a self-assembled monolayer on a variety of surfaces by attaching one thiol group to the surface while the other can create nucleation sites for other functional groups.
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Amerigo Scientific
Bis(2-chloroethyl) ether is a chemical intermediate. 2-Chloroethyl β-D-glucosiduronic acid is the major metabolite of bis(2-chloroethyl)ether.
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Amerigo Scientific
Bis(2-ethylhexyl) phosphite is an chemical warfare simulant and its reaction with common ion binary ionic liquid has been investigated. Mass-transfer kinetics of Eu3+ and Am3+ in bis(2-ethylhexyl) phosphite-n-dodecane-NaCl-HCl-water system has been investigated.
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