Department of Chemistry

portrait of Professor Wilhelm Huck

Professor Wilhelm Huck

Groups: Huck group website

Telephone: 01223 334370 (shared)
             01223 331797

E-mail: wtsh2@cam.ac.uk

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General


Nanotechnology - Control over polymers at the nanometer level

The overall research interest of my group is the use of polymers as building blocks in nanotechnology. State-of-the-art lithographic techniques like focused ion beam, e-beam or extreme UV lithography are able to generate patterns in the sub-100 nm region. However, these techniques have their limitations in terms of materials that can be patterned and the high costs of investment in equipment. Alternative techniques based on self-assembly and self-organization of organic and inorganic particles into well-defined regular nanostructures are therefore highly desirable. Polymers could be ideal building blocks for such approaches because of their natural 5-100 nm lengthscale, ease of synthesis, and rich chemistry. Currently, it is impossible to design and fabricate arbitrary polymers with well-defined shape and functionality. If we are to bridge the gap between the biological world and nanofabrication, major advances in the control over polymeric materials at the nanometer level are necessary. As a result of recent progress in controlling lengthscales of polymer materials at the nanometer level, we are starting to explore the effects of nanoconfinement on phase-separation, glass transition temperature, conductivity, and optical properties, in a variety of polymer systems.

 

The tools we are developing:

Nanocontact printing
Micro and nanoembossing
Controlled phase separation of block copolymers

 

Fields of potential applications:

Polymer electronics
Nanoscale eletronic and biological devices
Optoelectronic devices
Growth of polymer brushes

 

Selected Publications

Edmondson, S.; Huck, W. T. S. Quasi-2D Polymer Objects From Patterned, Cross-linked Polymer Brushes Adv. Mater. 2004, 16, 1327-1331

Wang, J. Z.; Zheng, Z. H.; Li, H. W.; Huck, W. T. S.; Sirringhaus, H. Dewetting of conducting polymer inkjet droplets on patterned surfaces, Nature Materials, 2004, 3, 171-176

Sullivan, T. P.; van Poll, M. L.; Dankers, P. Y. W.; Huck, W. T. S. Forced peptide synthesis in nanoscale confinement under elastomeric stamps, Angew. Chem. Int. Ed. 2004, 43, 4190-4193

Yang, Z., Huck, W.T.S., Clarke, S.M., Tajabkhsh, A.R., Terentjev, E.M. Shape-Memory Nanoparticles from Inherently Nonspherical Polymer Colloids, Nature Materials, 2005, 4, 486-490

Research Interests


Teaching


Personal


Publications

Publications

Polymer brushes: From synthesis to 'smart surfaces'.
WTS Huck, AA Brown, S Edmondson, NS Khan - ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (2005) 229, U981
Nanostructured polymers in polymeric optoelectronic devices.
WTS Huck, G Fichet, GL Whiting, H Snaith, RH Friend - ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (2005) 229, U1156
Homeotropic alignment on surface-initiated liquid crystalline polymer brushes
PJ Hamelinck, WTS Huck - Journal of Materials Chemistry (2005) 15, 381
(DOI: 10.1039/b413670e)
Organisation of recombinant lipid-tagged cytochrome on surface
P Kreutzmann, M Manzanera, J Norris, R Michael, M Moreau, WTS Huck, PD Barker - BIOPHYSICAL JOURNAL (2005) 88, 394A
Locking and unlocking of polyelectrolyte brushes: toward the fabrication of chemically controlled nanoactuators
S Moya, O Azzaroni, T Farhan, VL Osborne, WTS Huck - Angewandte Chemie - International Edition (2005) 44, 4578
(DOI: 10.1002/anie.200500228)
Effects of nanoconfinement on the morphology and reactivity of organic materials
WTS Huck - Chemical Communications (2005), 4143
(DOI: 10.1039/b502849n)
Bioadhesion at micro-patterned stimuli-responsive polymer brushes
CDH Alarcon, T Farhan, VL Osborne, WTS Huck, C Alexander - Journal of Materials Chemistry (2005) 15, 2089
(DOI: 10.1039/b419142k)
AFM study of cationically charged polymer brushes: Switching between soft and hard matter
T Farhan, O Azzaroni, WTS Huck - Journal of Materials Chemistry (2005) 15, 66
Self-organized photonic structures in polymer light-emitting diodes
G Fichet, N Corcoran, PKH Ho, AC Arias, JD MacKenzie, WTS Huck, RH Friend - Advanced Materials (2004) 16, 1908
(DOI: 10.1002/adma.200400316)
Polymer field effect transistors fabricated by dewetting
JZ Wang, ZH Zheng, HW Li, WTS Huck, H Sirringshaus - Synthetic Metals (2004) 146, 287
(DOI: 10.1016/j.synthmet.2004.08.007)

Funding