We are interested in molecular recognition, aiming to uncover and exploit the rules governing non-covalent interactions. Hydrophobic, π–π, donor–acceptor, metal– ligand and hydrogen bonding interactions are used to create new supramolecular systems that expand our understanding of molecular behaviour and may have useful recognition, catalytic or photophysical properties. In particular in the past few years we have developed the concept of dynamic combinatorial chemistry as a new approach for discovering entirely unexpected structures and assemblies. Over the years our building blocks have included peptides, metalloporphyrins, steroids and simple aromatics, and our products have included macrocycles, rotaxanes, catenanes, molecular knots and supramolecular nanotubes. Very recently, while investigating dynamic chemistry in the solid state using ball mill grinding, we have discovered solvent and surface effects on polymorph stability in nanocrystals

Please note that I am not taking any new students or postdocs into my research group.

 

 

 

Selected Publications

 

Evolution of dynamic combinatorial chemistry, Accounts Chem. Res., (2012), 45, 2211.

Discovery of an organic trefoil knot, Science, (2012), 338, 783.

Templated dynamic synthesis of a [3]Catenane, Angew. Chemie Intl. Edn., (2012), 51, 1443.

Thermodynamics of supramolecular naphthalenediimide nanotubes, J. Am. Chem. Soc., (2012), 134, 566.

Discovery of linear receptors for multiple dihydrogen phosphate ions using dynamic combinatorial chemistry, J. Am. Chem. Soc., (2011), 133, 3804.

Formation pathways of Donor-Acceptor catenanes in aqueous dynamic combinatorial libraries, J. Am. Chem. Soc., (2011), 133, 3198.

Solid-state dynamic combinatorial chemistry, Chem. Sci., (2011), 2, 696.

An unexpected receptor for C70, Angew. Chemie Intl. Edn., (2008), 47, 2689.

Publications

A simple nuclear magnetic resonance method for the study of stable free radicals
I Baxter, JKM Sanders
Journal of the Chemical Society Chemical Communications
(1974)
Reaction of 3-alkyl-2-benzyl-1,4-naphthoquinones with t-butylamine: isolation of epoxides and heterocycles
I Baxter, JKM Sanders
Journal of the Chemical Society, Chemical Communications
(1974)
N.M.R. Spectroscopy of metalloporphyrin radical cations. Electron density and aggregation effects
JKM Sanders, I Baxter
Tetrahedron Letters
(1974)
15
Dimerisation of 2-alkyl-1,4-naphthoquinones in the presence of t-butylamine
I Baxter, JKM Sanders, GE Evans
J CHEM SOC PERK T 1
(1974)
The configuration of 1 -methyl-5 -androstan-3-ones.
B Pelc, JK Sanders
J Chem Soc Perkin 1
(1972)
9
Shift Reagents in NMR Spectroscopy
JKM SANDERS, DH WILLIAMS
Nature
(1972)
240
Reactions of 2-ethyl- and 2-benzyl-1,4-naphthoquinone with N-methylcyclohexylamine
I Baxter, DW Cameron, JKM Sanders, RB Titman
Journal of the Chemical Society Perkin Transactions 1
(1972)
Secondary deuterium isotope effect on Lewis basicity: Tris(dipivaloylmethanato)-europium as a simple and effective probe
JKM Sanders, DH Williams
Chemical Communications
(1972)
Reactions of 2-ethyl- and 2-benzyl-1,4-naphthoquinone with N-methylcyclohexylamine
I Baxter, DW Cameron, JKM Sanders, RB Titman
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 1
(1972)
EVIDENCE FOR CONTACT AND PSEUDO-CONTACT CONTRIBUTIONS IN LANTHANIDE-INDUCED 31PNMR SHIFTS
JKM Sanders, DH Williams
Tetrahedron Letters
(1971)
12

Research Group

Telephone number

01223 336411

Email address