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Carbon-inorganic hybrid materials: the carbon nanotube-TiO2 interface
D Eder, A H Windle, Advanced Materials, 9, 1787-1793.
Morphology control of CNT-TiO2 hybrid materials and rutile nanotubes
D Eder, A H Windle, J. Mater. Chem. 18 (17) 2063.
High-Performance Carbon Nanotube Fiber
K K K Koziol, J Vilatela, A Moisala, M S Motta, P Cunniff, M Sennett, A H Windle, Science, published online November 15, 2007.
High Performance Fibres from Dog-Bone Carbon Nanotubes
M S Motta, A Moisala, I A Kinloch, A H Windle, Advanced Materials, 19, Issue 21, 2007, 3721 - 3726. Available online.
Anatase nanotubes as support for platinum nanocrystals
D Eder, M S Motta, I A Kinloch, A H Windle, Physica E, 37 (1-2), 2007, 245-249.
The parameter space for the direct spinning
of fibres and films of carbon nanotubes
M S Motta, I A Kinloch, A Moisala, V Premnath, M Pick, A H Windle, Physica E, 37 (1-2), 2007, 40-43.
Three-dimensional carbon nanowall structures
A T H Chuang, John Robertson, B O Boskovic, K K K Koziol, Applied Physics Letters, 90, 2007, 123107-123109.
Pure Rutile nanotubes
D Eder, I A Kinloch, A H Windle, Chem. Commun. 13 1448-1450.
Crystallographic order in multi-walled carbon
nanotubes synthesized in the presence of nitrogen
C Ducati, K K K Koziol, S Friedrichs, T J V Yates, M S Shaffer, P A Midgley, A H Windle, Small, 2, 2006, 774-784.
Four-dimensional spectral tomography of carbonaceous nanocomposites
M H Gass, K K K Koziol, A H Windle, P A Midgley, Nano Letters, 6, 2006, 376-379.
Optical microstructure and viscosity enhancement for an epoxy resin matrix containing multiwall carbon nanotubes
S S Rahatekar, K K K Koziol, S A Butler, J A Elliott, M S P Shaffer, M R Mackley, A H Windle, Journal of Rheology, 50, 2006, 599-610.
Mechanical Properties of Continuously Spun Fibers of Carbon Nanotubes
M Motta, Y Li, I A Kinloch, A H Windle,Nano Letters, 5 (8), 2005, 1529-1533.
Single-Chirality Multi-walled Carbon
Nanotubes
S Friedrichs, A H Windle, K K K Koziol, C Ducati, P A Midgley, Microscopy and microanalysis, 11, 2005, 1536-1537.
Isotropic-Nematic Phase Transition in Dispersions of multiwall carbon nanotubes
W Song, A H Windle, Macromolecules, 38, No. 14, 2005, 6181-6188.
Three-dimensional internal order in Multiwall carbon nanotubes grown by chemical vapour deposition
K Koziol, M S P Shaffer, A H Windle, Adv. Mater., 17, No. 6, 2005, 760-763.
Electric field-induced aligned multi-wall carbon nanotube networks in epoxy composites
C A Martin, J K W Sandler, A H Windle, M-K Schwarz, W Bauhofer, K Schulte, M S P Shaffer, Polymer, 46, 2005, 877-886.
Orientational effect of the texture of a carbon-nanotube film on CK alpha radiation intensity
A B Okotrub, S B Dabagov, A V Gusel'nikov, I A Kinloch, A L Chuvilin, L G Bulusheva, A H Windle, JETP Letters, 81, No.1, 2005, 34-38.
Growth of single-walled carbon nanotubes by the rapid heating of a supported catalyst
Y L Li, I A Kinloch, M S P Shaffer, C Singh, J F Geng, B F G Johnson, A H Windle, Chemistry of Materials, 16, No. 26, 2005, 5637-5643.
Tribological behaviour of carbon-nanofibre-reinforced poly(ether ether ketone)
P Werner, V Altstadt, R Jaskulka, O Jacobs, J K W Sandler, M S P Shaffer, A H Windle, WEAR, 257 (9-10), 2004, 1006-1014.
Mesoscale Modelling of Polymer Welding
K L Anderson, J T Wescott, T J Carver, A H Windle, Materials Science and Engineering, A365, 2004, 14-24.
High-throughput screening for carbon nanotube production
I A Kinloch, M S P Shaffer, Y M Lam, A H Windle, Carbon, 42, 2004, 101-110.
Collapse of single-wall carbon nanotubes is diameter dependent
James A Elliott, Jan K W sandler, Robert J Young, Milo S P Shaffer, A H Windle, Physical Review Letters, 93, No. 14, 2004, 149602.
Direct Spinning of Carbon Nanotube Fibers from Chemical Vapour Deposition Synthesis
Ya-Li Li, I A Kinloch, A H Windle, Science, 304, 2004, 276-278.
Percolation in multi-wall carbon-nanotube-epoxy composites
C Martin, J K W Sandler, M S P Shaffer, M-K Schwarz, W Bauhofer, K Schulte, A H Windle, Mat Res Soc Symp Proc, 788, 2004, Materials Research Society.
A Comparative Study of Melt Spun Polyamide-12 fibres reinforced with carbon nanotubes and nanofibres
J K W Sandler, S Pegel, M Cadek, F Gojny, M vanes, J Lohmar, W Blau, K Schulte, M S P Shaffer, A H Windle, Polymer, 45, 2004, 2001-2015.
Formation of Percolating Networks in Multi-wall carbon-nanotube-epoxy composites
C A Martin, J K W Sandler, M S P Shaffer, M-K Schwarz, W Bauhofer, K Schulte, A H Windle, Composites Science and Technology, 64, 2004, 2309-2316.
Charge transfer in carbon nanotubes actuators investigated using in situ Raman spectroscopy
S Gupta, M Hughes, A H Windle, J Robertson, Journal of Applied Physics, 95, No.4., 2004, 2038-2048.
In situ Raman spectro-electrochemistry study of single-wall carbon nanotubes
S Gupta, M Hughes, A H Windle, J Robertson, Diamond and Related Materials, 13, 2004, 1314-1321.
Multiscale modelling of carbon nanotubes
M Hamm, J A Elliott, H J Smithson, A H Windle, Mat Res Soc Symp Proc, 788, 2004, Materials Research Society.
Characterizing the Dopant Behavior of Functionalized Carbon nanotubes in Conducting Polymers
M Hughes, G A Snook, G Z Chen, M S P Shaffer, D J Fray, A H Windle, Mat Res Soc Symp Proc, 788, 2004, Material Research Society.
Controlling the nanostructure of electrochemically grown nanoporous composites of carbon nanotubes and conducting polymers
M Hughes, G Z Chen, M S P Shaffer, D J Fray, A H Windle, Composites Science and Technology, 64, 2004, 2325-2331.
Charge Transfer Dynamics in Single-Wall Carbon Nanotubes Mat: In situ Raman Spectroscopy
S Gupta, M Hughes, A H Windle, J Robertson, Mat Res Soc Symp Proc, 785, 2004, Materials Research Society.
Synthesis of single-walled carbon nanotubes by a fluidized-bed method
Ya-Li Li, I A Kinloch, M S P Shaffer, J Geng, B Johnson, A H Windle, Chemical Physics Letters, 384, 2004, 98-102.
The growth of single-walled carbon nanotubes by the rapid heating of a supported catalyst
Ya-Li Li, I A Kinloch, M S P Shaffer, C Singh, J Geng, B F G Johnson, A H Windle, Chem. Mater., 2004, 16, 5637-5643.
Spinning a nano-sized yarn
A H Windle, The Chemical Engineer, Christmas 2004, pp 38/39.
What's new about nano?
A H Windle, "Connecting", News from India, British Council Oct/Nov 2004.
Elastic-constant anisotropy and disclination interaction in nematic polymers I. Apparent variation in anisotropy
W Song, X Fan, S Chen, R Qian, A H Windle, Liquid Crystals 30, No.7, 2003, 765-774.
Elastic-constant anisotropy and disclination interation in nematic polymers II. Effects of disclination interaction
W Song, H Tu, G Goldbeck-Wood, A H Windle, Liquid Crystals 30, No.7, 2003, 775-784.
Multiscale Modelling in Polymer Science
J Crawshaw, A H Windle, Fibre Diffraction Review 11, 2003, 52-67.
Ultra-low electrical percolation threshold in carbon-nanotube-epoxy composites
J K W Sandler, J E Kirk, I A Kinloch, M S P Shaffer, A H Windle, Polymer 44, 2003, 5893-5899.
Nematic liquid crystallinity of
multiwall carbon nanotubes
WH Song, IA Kinloch, AH Windle, Science, 302, 2003, 1363 – 1363.
Towards the Production of
Large-Scale Aligned Carbon Nanotubes
C Singh, M S P Shaffer, K K K Koziol, I A Kinloch, A H Windle, Chemical Physics Letters, 372, 2003, 860 – 865.
Production of Controlled
Architectures of Aligned Carbon Nanotubes by an Injection Chemical Vapour
Deposition Method
C Singh, M S P Shaffer, A H Windle, Carbon, 41, 2003, 359-368.
Carbon-nanofibre-reinforced
poly(ether ether ketone) fibres
J. Sandler, M.S.P. Shaffer, P. Werner, V. Altstädt, A.H. Windle, J. Mater. Sci., 38(10), 2003, 2135 - 2141.
Variations in the Raman Peak
Shift as a function of hydrostatic pressure for various carbon nanostructures: a simple geometric effect
J Sandler, M S P Shaffer, A H Windle, Physical Review B, 67, 2003, 035417.
Electrolytic, TEM and Raman
studies on the Production of Carbon nanotubes in Molten NaCl
I A Kinloch, G Z Chen, J Howes, C Boothroyd, C Singh, D J Fray, A H Windle, Carbon, 41, 2003, 1127-1141.
Microstructure of nematic
amorphous copolymers: Dependence on the nematic volume fraction
M. Hamm, G. Goldbeck-Wood, A.V. Zvelindovsky, and J.G.E.M. Fraaije, J. Chem. Phys., 2003, 118(20), 9401-9419.
Electrochemical Capacitance of
Nanocomposite Films, formed by Coating Aligned Arrays of Carbon Nanotubes with
Polypyrrole
M Hughes, M S P Shaffer, A C Renouf, C Singh, G Z Chen, D J Fray, A H Windle, Advanced Materials, 2002, 14(5), 382-385.
Electrochemical Capacitance of a
Nanoporous Composite of Carbon Nanotubes and Polypyrrole
M Hughes, G Z Chen, M S P Shaffer, D J Fray, A H Windle, Chemistry of Materials, 2002, 14(4), 1610-1613.
The Effect of Nanotube Loading
and Dispersion on the Three-Dimensional Nanostructure of Carbon
Nanotube-Conducting Polymer Composite Films
M Hughes, G Z Chen, M S P Shaffer, D J Fray, A H Windle, Proceedings of the MRS 2002 Fall Meeting, Boston, Massachusetts, 739, 2002, H5.3.1 - H5.3.6.
Tailoring the Electrochemical
Properties of Carbon Nanotube-Polypyrrole Composite Films for Electrochemical
Capacitor Applications
M Hughes, G Z Chen, M S P Shaffer, D J Fray, A H Windle, Proceedings of the 202nd ECS Meeting, Salt Lake City, Utah, 25, 2002, 68 – 77.
Carbon-nanofibre-reinforced
poly(ether ether ketone) composites
J Sandler, P Werner, M S P Shaffer, V Demchuk, V Altstadt, A H Windle, Composites: Part A 33, 2002, 1033-1039.
Synthesis and Characterization of
Carbon Nanofibers produced by the floating Catalyst Method
C Singh, T Quested, C B Boothroyd, P Thomas, I A Kinloch, A I Abou-Kandil, A H Windle, J Phys.chem..B 106, 2002, 10915-10922.
Synthesis of High Purity
Single-Walled Carbon Nanotubes in High Yield
J Geng, C Singh, D Shephard, M S P Shaffer, B F G Johnson, A H Windle, Chem Comm, 2002, 2666-2667.
A Rheological Study of
Concentrated Aqueous Nanotube Dispersions
I A Kinloch, S A Roberts, A H Windle, Polymer, 43, 2002, 7483-7491.
Recursive packing of dense
particle mixtures
J A Elliott, A Kelly and A H Windle, J. Mat. Sci. Letters, 21, 2002, 1249-1251.
In-situ deformation of an
open-cell flexible polyurethane foam characterised by 3D computed
microtomography
J A Elliott, A H Windle, J R Hobdell, G Eeckhaut, R J Olman, W Ludwig, E Boller, P Cloetens, J Baruchel, J. Mat. Sci., 37, 2002, 1547-1555.
Structure formation in liquid
crystalline polymers
M. Hamm , G. Goldbeck-Wood, G.J.A. Sevink, A.V. Zvelindovsky, J.G.E.M. Fraaije, J. Chem. Phys., 2002, 116(7), 3152-3161.
Polystyrene grafted multi-walled
carbon nanotubes
M S P Shaffer and K Koziol, Chem. Commun., 2002, (18), 2074 – 2075.
Carbon-Nanofibre-filled
thermoplastic composites
J Sandler, M S P Shaffer, Y-M Lam, P Werner, V Altstadt, J Nastalczyk, G Broza, K Schulte, C-A Keun, A H Windle, Mat Res Soc Symp Proc, 2001, 706.
Doping and Electrochemical
Capacitance of Carbon Nanotube-Polypyrrole Composite Films
M Hughes, G Z Chen, M S P Shaffer, D J Fray, A H Windle, Proceedings of the MRS 2001 Fall Meeting, Boston, Massachusetts, 703, 2001, V13.36.1 – V13.36.6.
Dynamic mean field theory for
the mesoscale morphologies of liquid crystalline polymers
M. Hamm , G. Goldbeck-Wood, G.J.A. Sevink, A.V. Zvelindovsky, J.G.E.M. Fraaije, Macromolecules, 2001, 34(23), 8378-8379.
Mixed Phase Wx Moy Cz S2 nanotubes
W K Hsu, Y Q Zhu, C Boothroyd, I Kinloch, S Trasobares, H Terrones, N Grobert, R Escudero, G Z Chen, M Terrones, C Colliex, D J Fray, H W Kroto, D R M Walton, A H Windle, Chemistry of Materials, 12(12), 2000, 3541.
Morphology, Structure and Growth
Mechanism of WS2 Nanotubes
Y Q Zhu. W K Hsu, H Terrones, B Q Wei, H K Kroto, D R M Walton, C Boothroyd, I Kinloch, G Z Chen, D J Fray, A H Windle, Journal of Materials Chemistry, 2000, 10, 2570 – 2577.
A Monte Carlo lattice model for
chain diffusion in dense polymer systems and its interlocking with molecular
dynamics simulation
K.R. Haire, T.J. Carver and A.H. Windle, Comp. and Theor. Polymer Science, 11, 2001, 17-28.
The role of crystallinity in the
deformation of main-chain liquid-crystalline copolyesters
S. Salahshoor-Kordestani, S. Hanna and A.H. Windle, Polymer, 41, 2000, 6619-6626.
Lattice modelling of penetrant diffusion
through heterogeneous polymers
P.M. Hadgett, G. Goldbeck-Wood and A.H. Windle, Polymer, 41, 2000, 6151-6160.
Carbon Nanotube and Polypyrrole
Composites: Coating and Doping
G.Z. Chen, M.S.P. Shaffer, D. Coleby, G. Dixon, W. Zhou, D.J. Fray and A.H. Windle, Advanced Materials 2000, 12, No. 7, pp. 522-526.
Electronic interaction between
photoexcited poly(p-phenylene vinylene) and carbon nanotubes
H. Ago, M.S.P. Shaffer, D.S.Ginger, A.H. Windle and R.H. Friend, Phys. Review B, Vol. 61, No. 3, 2286-2290, 2000.
Elliott, J.A. and Windle, A.H.
"A dissipative particle dynamics method for modelling the geometrical
packing of filler particles in polymer composites
J A Elliott, A H Windle, J. Chem. Phys., 113, 2000, 10367-10376.
A Rheo-Optical Study of
Flow-Induced Textures in Thermotropic Liquid Crystalline Polymers. The Influence of Molecular Weight
A. Romo-Uribe and A.H. Windle, Proc. R. Soc. Lond. A (1999) 455, 1175-1201.
Development of a Dispersion
Process for Carbon Nanotubes in an Epoxy Matrix
J. Sandler, M.S.P. Shaffer, T. Prosse, W. Bauhofer, K. Schulte and A.H. Windle, Polymer, 40 (1999), 5967-5971.
Modelling of Shear Flow in
Liquid Crystalline Materials
M.S. Lavine and A.H. Windle, Liquid Crystals 1999, Vol. 26, No. 10, 1521-1530.
Fabrication and Characterization
of Carbon Nanotube/Poly(vinyl alcohol) Composites
M.S.P. Shaffer and A.H. Windle, Advanced Materials 1999, 11, No. 11, 937-941.
Analogies between Polymer
Solutions and Carbon Nanotube Dispersions
M.S.P. Shaffer and A.H. Windle, Macromolecules, Vol. 32, No. 20, pp6864-6866, 1999.
Work Functions and Surface
Functional Groups of Multiwall Carbon Nanotubes
H. Ago, T. Kugler, F. Cacialli, W.R. Salaneck, M.S.P. Shaffer, A.H. Windle and R.H. Friend, J. Phys. Chem. B, Vol. 103, No. 38, 1999, pp 8116-8121.
Composites of Carbon Nanotubes
and Conjugated Polymers for Photovoltaic Devices
H. Ago, K. Petritsch, M.S.P. Shaffer, A.H. Windle and R.H. Friend, Advanced Materials, 1999, 11, No. 15, pp 1281-1285.
Lattice Modelling of
Nematodynamics
G. Goldbeck-Wood and A. H. Windle, Rheol. Acta 38: 548-561 (1999).
Crystallinity in Poly(vinyl
alcohol). 1. An X-ray diffraction study of atactic PVOH
H.E. Assender and A.H. Windle, Polymer, 1998, 39, 4295-4302.
Crystallinity in Poly(vinyl
alcohol). 2. Computer modelling of crystalline structure over a range of
tacticities
H.E. Assender and A.H. Windle, Polymer, 1998, 39, 4303-4312.
Structure of a self-assembled
hydrogen-bonded 'living' main chain liquid crystalline polymer
C.B. He, A.M. Donald, A.C. Griffin, T. Waigh, A.H. Windle, Journal of Polymer Science Part B - Polymer Physics, 1998, 36, 1617-1624.
Electrolytic conversion of
graphite to carbon nanotubes in fused salts
G.Z. Chen, X. Fan, A. Luget, M.S.P. Shaffer, D.J. Fray and A.H. Windle Journal of Electroanalytical Chemistry, 1998, 446, 1-6.
Application of a CCD-Based X-Ray
Diffractometer to Polymer Fibre Diffraction
S. Hanna, A.M.E. Baker and A.H. Windle, Polymer, 1998, 39, 2409-2414.
Electrochemical Investigation of
the Formation of Carbon Nanotubes in Molten Salts
G. Z. Chen, I. Kinloch, M.S.P. Shaffer, D.J. Frey and A.H. Windle, High Temp. Material Processes 2(1998), 459-469.
A Transient Liquid Crystalline Phase
as a Precursor for Crystallization in Random Co-polyester Fibers
G.E. Welsh, D.J. Blundell and A.H. Windle, Macromolecules Vol. 31, No. 21, pp.7562-7565 (1998).
Dispersion and packing of carbon
nanotubes
M.S.P Shaffer, X.F. Fan and A.H. Windle, Carbon, Vol. 36, No. 11, pp.1603-1612 (1998).
Modelling of Liquid Crystal
Polymers at Different Length Scales
G. Goldbeck-Wood, P. Coulter, J.R. Hobdell, M.S. Lavine, K.Yonotake and A.H. Windle, Molecular Simulation, 1998, Vol. 21, pp. 143-160.
A numerical technique for
predicting microstructure in liquid crystalline polymers
J. Hobdell and A.H. Windle, Liquid Crystals, 1997, 23, 157-173.
The solvation of poly(Vinyl
alcohol)
H.E. Assender and A.H. Windle, Macromolecular Symposia, 1997, 114, 199-204.
Domain structures in
magnetically orientated liquid crystalline polymers
H.E Assender and A.H. Windle, Polymer, 1997, 38, 677-688.
Modeling of microstructural
development in biaxially drawn polymer films
L.M. Nicholson and A.H. Windle, Proc. Am. Chem. Soc.: PMSE Div, 1997, 76, 587-588.
Structural aspects of the
nematic-isotropic transition in liquid crystals: an investigation using a
development of the Lebwohl-Lasher lattice model
D. Gonin and A.H. Windle, Liquid Crystals, 1997, 23, 489-502.
Structure and linear
viscoelastic behaviour of main-chain thermotropic liquid crystalline polymers
A. Romo-Uribe, T.J. Lemmon and A.H. Windle, J. Rheology, 1997, 41(5), 1117-1145.
Disclinations: A Short Review
A.H. Windle in "Polymers and Organic Solids", eds. L. Shi and D. Zhu, 1997, Science Press Beijing.
Computational modelling of
disclination loops under shear flow
M.S. Lavine and A.H. Windle, Macromol. Symp., 1997, 124, 35-47.
The origin of banded textures
induced by shear - a suggested scheme and a relevant rheological effect
H. Fischer, A. Keller and A.H. Windle, J. Non-Newtonian Fluid Mech., (1996), 67, 241-268.
A microstructural model for
liquid crystalline polymers
J.R. Hobdell and A.H. Windle, Mat. Res. Soc. Symp. Proc., (1996), 425, 131-136.
Self-ordering in ultrathin films
of side-chain liquid-crystalline polymer
V.N. Bliznyuk, Z.I. Kazantseva and A.H. Windle, Thin Solid Films, (1996), 284-285, 271-274.
Molecular Modeling of Atactic
Poly(VinylChloride)
A. Flores and A.H. Windle, Computational & Theoretical Polymer Science, (1996), 6, 67-77.
Liquid-crystalline polymers
under shear
Romo-Uribe A, Windle A H, Abstracts of papers of the American Chemical Society, (1996), 211(2), pp.207-POLY
The relaxation of a magnetically
orientated liquid crystalline polymer
H E Assender and A H Windle, Polymer, (1996) 37, 371-375
Diffraction study of the
crysatalline structure of random copolymers of poly(ethylene terephthalate )
and poly(ethylene naphthylene-2,6-dicarboxylate)
X Lu and A H Windle, Polymer, (1996), 37, pp.2027-2038
A Metallurgist's Guide to
Polymers
A H Windle, Chapter 32 in Physical Metallurgy, ed R W Cahn and P Haasen, Elsevier Science BV, (1996), pp.2763-2740
"Log Rolling"
alignment in main-chain thermotropic liquid crystalline polymer melts: an
in-situ WAXS study.
A Romo-Uribe and A H Windle, Macromolecules, (1996), 29, pp.6246-6255
Hierarchical approach to
modelling of liquid crystalline polymers
J R Hobdell, M S Lavine and A H Windle, Journal of Computer-Aided Materials Design, (1996), 3, pp. 359-368
Topological point defects in
liquid crystalline polymers
J Hobdell and A H Windle, Liquid Crystals, (1995), 19(4), 401-407
Small-angle X-ray scattering
from a thermotropic random copolymer during solid-state annealing
D J Wilson, S Seifert, N Stribeck, H G Zachmann and A H Windle, Acta Polymerica, (1995) 46(3), 373-378
Modeling of microstructure in
liquid-crystalline polymers
Hobdell J, Lavine M, Windle A H, Abstracts of papers of the American Chemical Society, (1996), 209(2), pp.336-POLY
A novel polymer fibre
diffractometer based on a scanning, X-ray sensitive, charge coupled device
S Hanna and A H Windle, J. Appl. Cryst, (1995), 28(6), 673-689
Melt viscosity of main-chain thermotropic
liquid crystalline polymers without flexible spacers
A Romo-Uribe and A H Windle, Macromolecules, (1995), 28(21), 7085-7087
The effect of shear on
thermotropic liquid crystal polymers
T.M. Nicholson, M.R.Mackley, L.Gervat and A.H.Windle, Phil. Trans. R. Soc. Lond. A (1995), 350, 1-27
Crystallization of random
copolymers of poly(ethylene terephthalate) and poly(ethylene
naphthalene-2,6-dicarboxylate)
X Lu and A.H. Windle, Polymer, (1995), 36, 451-459
Persistence Lengths of aromatic
polyamides: a computer simulation approach
C He and A H Windle, Macromol. Theory Simul., (1995), 4, 289-304
Liquid-crystalline behavior in
fluorocarbon-hydrocarbon microblock polymers
T Davidson, A C Griffin, L M Wilson and A H Windle, Macromolecules , (1995), 28, 354-357
Prediction of microstructure in
liquid crystalline polymers
J R Hobdell and A H Windle, J. Chem. Soc. Faraday Trans., (1995), 91(16), 2497-2505
Determination of the crystal
structure of poly-(para-phenylene terephthalate) from powder diffraction data:
a computer modelling approach
S Hanna, P D Coulter and A H Windle, J. Chem. Soc. Faraday Trans., (1995), 91(16), 2615-2622
Use of a CCD-based area
detection system on a fibre diffractometer
S Hanna and A H Windle, Advances in X-Ray Analysis, (1995), 38, 503-510
A novel opticalmethod for
monitoring homeotropic alignment, applied to a side chain liquid crystal
polymer in AC and DC electric fields
R.B Findlay and A.H. Windle, Mol. Cryst. Liq. Cryst., (1994), 241, 255-273
Modelling of form in thermotropic
polymers
H E Assender, M S Lavine and A H Windle, Phil. Trans, R. Soc. Lond. A (1994) , 348, 73-96
Two-dimensional lattice model of
disclinations in liquid crystals: choice of energy function
H.E. Assender and A.H. Windle, Macromolecules, (1994), 27, 3439-3441
Structure of thermotropic main
chain polymers
A. H. Windle in "Liquid Crystalline and Mesomorphic Polymers" ed. V. Shibaev and L. Lam, Springer Verlag, (1994), p. 26-76
Rigid rod polyamides based on
2,2', 6,6' tetra substituted biphenyls- synthesis, characterization and
structures
C. He, A.C. Griffin and A.H. Windle, Journal of Applied Polymer Science, (1994), 53, 561-574
Self-Order and Form in Polymeric
Materials
A Keller, M Warner and A H Windle. eds. Chapman and Hall, for the Royal Society , London (1994), 181 pp
Diffraction measurements of
crystalline morphology in a thermotropic random copolymer
D.J. Wilson, C.G. Vonk, A.H. Windle, Polymer, (1993), 34, 227
Diffraction modelling of PVC: a
solution to the crystallinity enigma
R.J. Hobson and A.H. Windle, Die Makromolekulare Chemie, Theory and Simulations, (1993), 2, 257
Modelling of microstructure in
mesophases
S.E. Bedford and A.H. Windle, Liquid Crystals (1993), 15, 31
Liquid Crystalline Polymers
A. H. Windle, Materials World, (1993), 1, 488
Crystallization and shape
emulation in atactic PVC and PAN
R.J. Hobson and A.H. Windle, Polymer, (1993), 34, 3583
Magnetic orientation and
microstructure of main-chain thermotropic co- polyesters
A. Anwer and A.H. Windle, Polymer, (1993), 34, 3347
Crystallisation of thermotropic
main-chain liquid crystalline copolyesters
S. Hanna, B.L. Hurrell and A.H. Windle, Crystallization of Polymers, - ed. M. Dosière, NATO ASI Series C, (1993), 405, p.559-564, Kluwer, Dorecht.
A flow-orientation transition in
a thermotropic random copolyester
A. Romo-Uribe and A.H. Windle, Macromolecules, (1993), 26, 7100-7102
Crystalline structure of atactic
poly(Acrylonitrile)
R.J. Hobson and A.H. Windle, Macromolecules, (1993), 26, 6903-6907
Sequence segregation in molten
liquid crystalline random copolymers
S. Hanna, A.Romo-Uribe and A.H. Windle, Nature, (1993), 366, 546-549
Dimensions of crystallites in a
thermotropic random copolyester
S. Hanna, T. J. Lemmon, R. J. Spontak and A. H. Windle, Polymer, (1992), 33, 3
Crystallite morphology in
thermotropic random copolymers: Application of transmission electron microscopy
R. J. Spontak and A. H. Windle, J. Poly. Sci, Polymer Phys Edition (1992), 30, 61
Shear induced crystallization in
a liquid crystalline random copolyester
T. M. Nicholson, M. R. Mackley and A. H. Windle, Polymer, (1992), 33, 435
Liquid Crystalline Polymers
A. M. Donald and A. H. Windle CUP Solid State Series, (1992), 192pp
Diffraction from aperiodic
crystals of mesomorphic chains
S. Hanna and A. H. Windle, S.E. Bedford and A.H. Windle, San Francisco 92, ACS Preprints
Influence of temperature on the
structure of poly 2-6' hydroxynaphthoic acid
S. Hanna and A. H. Windle, Polymer, (1992), 33, 2825
Influence of chain flexibility
on polymer mesogenicity
S. E. Bedford, K. Yu and A. H. Windle, J. Chem. Soc. Faraday Trans, (1992), 88(13) 1765-1773
Crystal structure in thermotropic
random copolyesters
S. Hanna, T. J. Lemmon and A. H. Windle, (1991) "Polymer Science, Contemporary Themes" Tata McGraw-Hill, New Delhi, ed. S. Sivaram
Orientation kinetics of
thermotropic main-chain liquid crystalline polymers in a magnetic field
A. Anwer and A. H. Windle, Polymer, (1991), 32, 103
Comparative study of side-chain
liquid crystalline polymers and their monomers designed for non-linear optical
applications
R. B. Findlay, T. J. Lemmon and A. H. Windle, J. Mat. Res. (1991), 6, 305
Conformational analysis of amine
cured epoxy resins
R. Lovell and A. H. Windle, Polymer, (1991), 32, 2272
Microstructure of a thermotropic
random copolymer of hydroxybenzoic acid, isophthalic acid and hydroquinone
R. J. Spontak, A. H. Windle and W. A MacDonald, J. Mat. Sci., (1991), 26, 4234
A supra molecular approach to
the modelling of textures in liquid crystals
S. E. Bedford, T. M. Nicholson and A. H. Windle, Liquid Crystals, (1991), 10, 63
Electron microscopy of
crystalline structure in thermotropic random copolyesters
A. Anwer, S. E. Bedford, R. J. Spontak, A. H. Windle, Proc. E. M. Soc Am. ed. G.W. Bailey (1991), 1054
Alignment of a smectic
side-chain liquid crystalline polymer using surfaces and alternating electric
fields
R. B. Findlay and A. H. Windle, Mol. Cryst. Liq. Cryst., (1991), 206, 55
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