Materials Chemistry Group

Functional (pharmaceutical) molecular solids

The design of functional molecular materials has advanced tremendously through cocrystallisation: the assembly of multiple chemical species in the same crystal lattice. Underlying cocrystals formation are rules that guide molecular recognition and self-assembly. We are deciphering this "intermolecular language" by combining experimental work with data mining and molecular modelling. Our particular interest is constructing functional materials through weak supramolecular interactions, such as hydrogen and halogen bonds.

Surface dynamics of molecular solids

Properties of crystalline solids are usually measured as a bulk property, and the results interpreted in terms of crystal structure. However, such a description does not adequately describe the surface of molecular crystals, at which the distribution of forces on a molecule is non-symmetrical, resulting in high mobility and reactivity. The atomic force microscope (AFM) is a unique tool for studying such surface-related dynamics.

 

Teaching

 

Current teaching includes a third year undergraduate lecture course on the Chemistry of Materials.  The course examines a range of organic, metal-organic and inorganic materials and demonstrates their varied uses. We will, in particular, identify important structural features relevant to such areas as the pharmaceutical and petrochemical industries and to naturally occurring biomaterials such as bone. The underlying chemistry and properties will be shown to be often sensitive to the way that the constituent atoms and molecules are packed together. This aspect of solid state control will be examined in some detail.


The development and design of new materials, incorporating structural characteristics of inorganic solids and functionality of organic molecules will be described.


The control of crystal morphology is important in many applications, and this will be discussed in the context of templating crystal growth, both in Nature and in the laboratory, and of crystal engineering. Numerous important materials, including many found in Nature, are in fact inorganic-organic composites, and these will also be discussed in detail.


From paracetamol to petrol to proteins to bone – the importance of the Chemistry of Materials will be explored in these lectures.

Also, as part of the Cambridge fourth year program I teach a course on Organic Solids that builds on the lecture course Chemistry of Materials given in Part II (although it is not required that students have taken this course). The first six lectures of the course, given by me, will cover aspects of crystal chemistry, structure and reactivity of organic solids. Examples of lattice controlled reactions will be given, including photochemical and thermal. Particular emphasis will be placed on how solid state properties impact on the development of drug products in the pharmaceutical industry. Experimental approaches to understanding molecular packing will be described and will lead into the second part of the course, given by my colleague, Dr Graeme Day.

Publications

Concentration-modulated absorption spectroscopy
AJ Langley, RA Beaman, J Baran, AN Davies, WJ Jones
Opt Lett
(1985)
10
THE ROLE OF INTERCALATES IN HETEROGENEOUS CATALYSIS
W JONES, JM THOMAS, D TILAK, TB TENNAKOON, R SCHLOGL, P DIDDAMS
ACS SYMPOSIUM SERIES
(1985)
288
Structure of a ‘doped’ diacetylene that is polymerisable in the solid state
CR Theocharis, H Nakanishi, H Matsuda, W Jones, JM Thomas, M Kato
Journal of the Chemical Society Chemical Communications
(1985)
Crystal and molecular structure of 1,3-dibenzylcyclobutane-2,4-bis(2?-spiro-(5?-p-chloro)-benzylcyclopentanone): Product of a single-crystal?single-crystal reaction
W Jones, CR Theocharis
Journal of Crystallographic and Spectroscopic Research
(1984)
14
LAYERED SOLIDS: THEIR STRUCTURAL CHARACTERIZATION CHEMISTRY AND ROLE IN HETEROGENEOUS CATALYSIS.
W Jones, R Schlogl, DT Tennakoon, JM Thomas
American Chemical Society Division of Petroleum Chemistry Preprints
(1984)
29
CRYSTAL-STRUCTURE OF 3,3-(P-N,N-DIMETHYLAMINOPHENYL)-6-N,N-DIMETHYLAMINOPHTHALIDE, (CRYSTAL-VIOLET LACTONE)
CR Theocharis, W Jones
Journal of Chemical Crystallography
(1984)
14
EFFICIENT CONVERSION OF CO+H2 INTO ACETYLENE AT ATMOSPHERIC-PRESSURE USING A GRAPHITE-BASED CATALYST
W Jones, R Schlögl, JM Thomas
J. Chem. Soc., Chem. Commun.
(1984)
Evidence for the formation of single crystals of sodium metal during the decomposition of sodium aluminum hydride: An electron microscopic study
W Jones, TG Sparrow, BG Williams, PJ Herley
Materials Letters
(1984)
2
The solid-state photodimerisation of 2,5-dibenzylidenecyclopentanone (DBCP); a topochemical reaction that yields an amorphous product
CR Theocharis, W Jones, JM Thomas, M Motevalli, MB Hursthouse
Journal of the Chemical Society Perkin Transactions 2
(1984)
THE PARTITIONING OF NON-APATITE INORGANIC PHOSPHORUS IN SEDIMENTS FROM LAKES ERIE AND ONTARIO
PG MANNING, T BIRCHALL, W JONES
CAN MINERAL
(1984)
22

Research Interest Groups

Telephone number

01223 336468

Email address