Scinovex
articleTop 1% cited

Dynamic Covalent Chemistry

Angewandte Chemie International Edition · 2002 · Vol. 41(6) · pp. 898–952
Stuart J. RowanStuart CantrillGraham R. L. CousinsJeremy K. M. SandersJ. Fraser Stoddart

Abstract

Dynamic covalent chemistry relates to chemical reactions carried out reversibly under conditions of equilibrium control. The reversible nature of the reactions introduces the prospects of "error checking" and "proof-reading" into synthetic processes where dynamic covalent chemistry operates. Since the formation of products occurs under thermodynamic control, product distributions depend only on the relative stabilities of the final products. In kinetically controlled reactions, however, it is the free energy differences between the transition states leading to the products that determines their relative proportions. Supramolecular chemistry has had a huge impact on synthesis at two levels: one is noncovalent synthesis, or strict self-assembly, and the other is supramolecular assistance to molecular synthesis, also referred to as self-assembly followed by covalent modification. Noncovalent synthesis has given us access to finite supermolecules and infinite supramolecular arrays. Supramolecular assistance to covalent synthesis has been exploited in the construction of more-complex systems, such as interlocked molecular compounds (for example, catenanes and rotaxanes) as well as container molecules (molecular capsules). The appealing prospect of also synthesizing these types of compounds with complex molecular architectures using reversible covalent bond forming chemistry has led to the development of dynamic covalent chemistry. Historically, dynamic covalent chemistry has played a central role in the development of conformational analysis by opening up the possibility to be able to equilibrate configurational isomers, sometimes with base (for example, esters) and sometimes with acid (for example, acetals). These stereochemical "balancing acts" revealed another major advantage that dynamic covalent chemistry offers the chemist, which is not so easily accessible in the kinetically controlled regime: the ability to re-adjust the product distribution of a reaction, even once the initial products have been formed, by changing the reaction's environment (for example, concentration, temperature, presence or absence of a template). This highly transparent, yet tremendously subtle, characteristic of dynamic covalent chemistry has led to key discoveries in polymer chemistry. In this review, some recent examples where dynamic covalent chemistry has been demonstrated are shown to emphasise the basic concepts of this area of science.

Supramolecular Chemistry and ComplexesAdvanced Polymer Synthesis and CharacterizationSupramolecular Self-Assembly in MaterialsDynamic covalent chemistryCovalent bondSupramolecular chemistryChemistryNon-covalent interactionsMoleculeCatenaneCombinatorial chemistryComputational chemistryNanotechnology

MeSH terms

KineticsOrganic ChemicalsThermodynamicsCombinatorial Chemistry TechniquesMacromolecular Substances
Citations
2,525
FWCI
45.90
field-weighted impact
References
527
Percentile
100%
vs. same field & year
Citations per year
Cited by
Im Goldenen Zeitalter der Organokatalyse
Angewandte Chemie · 2004 · 726 citations
Covalent organic frameworks
Chemical Society Reviews · 2012 · 2,982 citations
Covalent Organic Frameworks: Design, Synthesis, and Functions
Chemical Reviews · 2020 · 3,681 citations
Nucleation–elongation: a mechanism for cooperative supramolecular polymerization
Organic & Biomolecular Chemistry · 2003 · 471 citations
Covalent organic frameworks (COFs): from design to applications
Chemical Society Reviews · 2012 · 3,837 citations
Related articles
Dynamic Covalent Chemistry
Angewandte Chemie International Edition · 2002 · 2,525 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Dynamic Covalent Chemistry · Scinovex