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Publications Dr. Shang-Lin Gao

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1.Qi, H.; Liu, J.; Deng, Y.; Gao, S.-L.; Mäder, E.
Cellulose fibres with carbon nanotube networks for water sensing more
Journal of Materials Chemistry A 2 (2014) 5541-5547
2.Qi, H.; Liu, J.; Gao, S.-L.; Mäder, E.
Multifunctional films composed of carbon nanotubes and cellulose regenerated from alkaline/urea solution more
Journal of Materials Chemistry A 1 (2013) 2161-2168
3.Ma, Peng-Cheng; Liu, J.; Gao, S.-L.; Mäder, E.
Development of functional glass fibres with nanocomposite coating: A comparative study more
Composites: Part A 44 (2013) 16-22
4.Fan, Q.; Qin, Z.; Gao, S.-L.; Wu, Y.; Pionteck, J.; Mäder, E.; Zhu, M.
The use of a carbon nanotube layer on a polyurethane multifilament substrate for monitoring strains as large as 400% more
Carbon 50 (2012) 4085-4092
5.Zhang, J.; Liu, J.; Zhuang, R.-C.; Mäder, E.; Heinrich, G.; Gao, S.-L.
Single MWNT-glass fiber as strain sensor and switch more
Advanced Materials 23 (2011) 3392-3397
6.Zhuang, R.-C.; Doan, T.T.L.; Liu, J.; Zhang, J.; Gao, S.-L.; Mäder, E.
Multi-functional multi-walled carbon nanotube-jute fibres and composites more
Carbon 49 (2011) 2683-2692
7.Gao, S.-L.; Mäder, E.
Nano reinforcements in surface coatings and composite interphases more
in: Advances in Nanocomposites, Boreddy Reddy, ed. (InTech 2011) , 837-854
8.Mechtcherine, V.; de Andrade Silva, F.; Butler, M.; Zhu, Deju; Mobasher, B.; Gao, S.-L.; Mäder, E.
Behaviour of strain-hardening cement-based composites under high strain rates more
Journal of Advanced Concrete Technology 9 (2011) 51-62
9.Gao, S.-L.; Zhuang, R.-C.; Zhang, J.; Liu, J.; Mäder, E.
Glass fibre with carbon nanotube networks as Multifunctional sensors more
Advanced Functional Materials 20 (2010) 1885-1893
10.Zhang, J.; Zhuang, R.-C.; Liu, J.; Mäder, E.; Heinrich, G.; Gao, S.-L.
Functional interphases with multi-walled carbon nanotubes in glass fibre/epoxy composites more
Carbon 48 (2010) 2273-2281
11.Siddiqui, N. A.; Li, E. L.; Sham, M.-L.; Tang, B. Z.; Gao, S.-L.; Mäder, E.; Kim, J.-K.
Tensile strength of glass fibres with carbon nanotube-epoxy nanocomposite coating: Effects of CNT morphology and dispersion state more
Composites / Part A 41 (2010) 539-548
12.Zhao, N. P.; Rödel, H.; Herzberg, C.; Gao, S.-L.; Krzywinski, S.
Stitched glass/PP composite. Part I: Tensile and impact properties more
Composites / Part A 40 (2009) 635-643
13.Bahners, T.; Häßler, R.; Gao, S.-L.; Mäder, E.; Wego, A.; Schollmeyer, E.
Photochemical surface modification of PP for abrasion resistance more
Applied Surface Science 255 (2009) 9139-9145
14.Scheffler, C.; Gao, S.-L.; Plonka, R.; Mäder, E.; Hempel, S.; Butler, M.
Interphase modification of alkali-resistant glass fibres and carbon fibres for textile reinforced concrete II: Water adsorption and composite interphases more
Composites Science and Technology 69 (2009) 905-912
15.Scheffler, C.; Gao, S.-L.; Plonka, R.; Mäder, E.; Hempel, S.; Butler, M.; Mechtcheringe, V.
Interphase modification of alkali-resistant glass fibres and carbon fibres for textile reinforced concrete I: Fibre properties and durability more
Composites Science and Technology 69 (2009) 531-538
16.Gao, S.-L.; Mäder, E.; Plonka, R.
Nanocomposite coatings for healing surface defects of glass fibers and improving interfacial adhesion more
Composites Science and Technology 68 (2008) 2892-2901
17.Mäder, E.; Melcher, S.; Liu, J.; Gao, S.-L.; Bianchi, A. D.; Zherlitsyn, S.; Wosnitza, J.
Adhesion of PBP fiber in epoxy composites more
Journal of Materials Science 42 (2007) 8047-8052
18.Mäder, E.; Gao, S.-L.; Plonka, R.; Wang, J.
Investigation on Adhesion, Interphases, and Failure Behaviour of CBTŌ/ Glass Fiber Composites more
Composites Science and Technology 67 (2007) 3140-3150
19.Mäder, E.; Rothe, C.; Gao, S.-L.
Commingled yarns of surface nanostructured glass and polypropylene filaments for effective composite properties more
Journal of Materials Science 42 (2007) 8062-8070
20.de Lange, P. J.; Akker, P.G.; Mäder, E.; Gao, S.-L.; Prasithphol, W.; Young, R. J.
Controlled interfacial adhesion of twaron aramid fibres in composites by the finish formulation more
Composites Science and Technology 67 (2007) 2027-2035

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