The reversible condensation–hydrolysis reactions of boronic acids have proven to be a highly useful class of thermodynamically controlled dynamic covalent process, enabling the construction of sugar sensors, stimuli-responsive materials, and complex covalent architectures. Yet, the common diol or diphenol coupling partners tend to produce relatively unstable condensation products, exhibit oxidative sensitivity, or offer limited options for expanding structural diversity. To address these drawbacks, we explore a series of coupling partners including non-diol salicylate and salicylamide derivatives, in combination with two boronic acids. In nonaqueous solvents, the condensation–hydrolysis equilibria are sensitive to the nature and concentrati...
Resumen del póster presentado a la XXXVIII Reunión Bienal de la Real Sociedad Española de Química, c...
The SOSIP-TSE methodology was until recently based on only two orthogonal dynamic covalent bonds : D...
The reversible condensation of catechols and boronic acids to boronate esters is a paradigm reaction...
<p>The reversible condensation–hydrolysis reactions of boronic acids have proven to be a highly usef...
This work was supported by the EPSRC under Grants [EP/K016342/1 and EP/J500549/1]; the Leverhulme Tr...
Dynamic covalent chemistry is a unique class of interactions that exhibit reversible covalent bonds ...
Dynamic covalent chemistry is a unique class of interactions that exhibit reversible covalent bonds ...
Orthogonal dynamic covalent bonds are of interest for the construction of functional systems. The or...
Noncovalent and reversible covalent interactions are of central importance to the fields of catalysi...
Noncovalent and reversible covalent interactions have long been exploited in catalysis and supramole...
Nuclear magnetic resonance and mass spectrometry raw data files. For detailed information, see readm...
Noncovalent and reversible covalent interactions are of central importance to the fields of catalysi...
Noncovalent and reversible covalent interactions have long been exploited in catalysis and supramole...
Click-like condensation of boronic acids with specifically designed triols (boronate-triol coupling)...
Click-like condensation of boronic acids with specifically designed triols (boronate-triol coupling)...
Resumen del póster presentado a la XXXVIII Reunión Bienal de la Real Sociedad Española de Química, c...
The SOSIP-TSE methodology was until recently based on only two orthogonal dynamic covalent bonds : D...
The reversible condensation of catechols and boronic acids to boronate esters is a paradigm reaction...
<p>The reversible condensation–hydrolysis reactions of boronic acids have proven to be a highly usef...
This work was supported by the EPSRC under Grants [EP/K016342/1 and EP/J500549/1]; the Leverhulme Tr...
Dynamic covalent chemistry is a unique class of interactions that exhibit reversible covalent bonds ...
Dynamic covalent chemistry is a unique class of interactions that exhibit reversible covalent bonds ...
Orthogonal dynamic covalent bonds are of interest for the construction of functional systems. The or...
Noncovalent and reversible covalent interactions are of central importance to the fields of catalysi...
Noncovalent and reversible covalent interactions have long been exploited in catalysis and supramole...
Nuclear magnetic resonance and mass spectrometry raw data files. For detailed information, see readm...
Noncovalent and reversible covalent interactions are of central importance to the fields of catalysi...
Noncovalent and reversible covalent interactions have long been exploited in catalysis and supramole...
Click-like condensation of boronic acids with specifically designed triols (boronate-triol coupling)...
Click-like condensation of boronic acids with specifically designed triols (boronate-triol coupling)...
Resumen del póster presentado a la XXXVIII Reunión Bienal de la Real Sociedad Española de Química, c...
The SOSIP-TSE methodology was until recently based on only two orthogonal dynamic covalent bonds : D...
The reversible condensation of catechols and boronic acids to boronate esters is a paradigm reaction...