Search results for "dynamic combinatorial chemistry"

showing 3 items of 3 documents

Formation and trapping of the thermodynamically unfavoured inverted-hemicucurbit[6]uril

2019

Amplification of a thermodynamically unfavoured macrocyclic product through the directed shift of the equilibrium between dynamic covalent chemistry library members is difficult to achieve. We show for the first time that during condensation of formaldehyde and cis-N,N'-cyclohexa-1,2-diylurea formation of inverted-cis-cyclohexanohemicucurbit[6]uril (i-cis-cycHC[6]) can be induced at the expense of thermodynamically favoured cis-cyclohexanohemicucurbit[6]uril (cis-cycHC[6]). The formation of i-cis-cycHC[6] is enhanced in low concentration of the templating chloride anion and suppressed in excess of this template. We found that reaction selectivity is governed by the solution-based template-a…

010405 organic chemistryPrecipitation (chemistry)Metals and AlloysDiastereomerGeneral ChemistryTrapping010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundchemistryComputational chemistryYield (chemistry)Materials ChemistryCeramics and CompositesTrifluoroacetic acidDynamic combinatorial chemistrySelectivityBinding affinitiesChemical Communications
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Strategies for Exploring Functions from Dynamic Combinatorial Libraries

2020

chemistry.chemical_classification010405 organic chemistryComputer scienceMechanical EngineeringSupramolecular chemistryEnergy Engineering and Power TechnologyNanotechnologyManagement Science and Operations Research010402 general chemistry01 natural sciencesKinetic control0104 chemical scienceschemistryDynamic combinatorial chemistryNon-covalent interactionsChemSystemsChem
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Strategies for Exploring Functions from Dynamic Combinatorial Libraries

2020

Dynamic combinatorial chemistry (DCC) is a powerful approach for creating complex chemical systems, giving access to the studies of complexity and exploration of functionality in synthetic systems. However, compared with more advanced living systems, the man‐made chemical systems are still less functional, due to their limited complexity and insufficient kinetic control. Here we start by introducing strategies to enrich the complexity of dynamic combinatorial libraries (DCLs) for exploiting unexpected functions by increasing the species of building blocks and/or templates used. Then, we discuss how dynamic isomerization of photo‐switchable molecules help DCLs increase and alter the systemic…

dynamic combinatorial chemistrynoncovalent interactionskemiallinen synteesisupramolekulaarinen kemiakinetic controlchemical complexitykompleksisuussupramolecular chemistry
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