1. Zhuang, S.; Liu, Y*., Interface Controlled Thermal Rectification Phenomenon of Monolayer Graphene/Boron Nitride Hetero-sheet. Journal of Physical Chemistry Letters 2020, 11, 9731–9737.
2. Zhang, F.; Liu, Y*., Interphase structures and properties of carbon nanotube-reinforced polymer nanocomposite fibers. In Carbon Nanotube Fibers and Yarns, Woodhead Publishing: 2020; pp 71-102.
3. Suo, X.; Cao, Z.; Yu, Y.; Liu, Y*., Dynamic self-stiffening in polyacrylonitrile/thermoplastic polyurethane composites. Composites Science and Technology 2020, 198, 108256.
4. Zhuang, S.; Zhang, F.; Liu, Y.*; Lu, C., Exceptional high thermal conductivity of inter-connected annular graphite structures. Physical Chemistry Chemical Physics 2019, 21, 25495-25505.
5. Wang, W.; Li, Y.; Li, W.; Zhang, B.; Liu, Y.*, Effect of solvent pre-treatment on the structures and dissolution of microcrystalline cellulose in lithium chloride/dimethylacetamide. Cellulose 2019, 1-15.
6. Hao, J.; Wei, H.; Lu, C.; Liu, Y.*, New aspects on the cyclization mechanisms of Poly (acrylonitrile-co-itaconic acid). European Polymer Journal 2019, 121, 109313.
7. An, F.; Zhou, P.; Lu, C.; Liu, Y.*, Tuning the surface grooves of carbon fibers by dry-jet gel-spinning. Carbon 2019, 143, 200-203.
8. Li, Y.; Yu, Y.; Liu, Y.*; Lu, C., Interphase Development in Polyacrylonitrile/SWNT Nano-composite and its Effect on Cyclization and Carbonization for Tuning Carbon Structures. ACS Applied Nano Materials 2018, 1 (7), 3105-3113.
9. Hao, J.; Li, W.; Suo, X.; Wei, H.; Lu, C.; Liu, Y.*, Highly isotactic (> 60%) polyacrylonitrile-based carbon fiber: Precursor synthesis, fiber spinning, stabilization and carbonization. Polymer 2018, 157, 139-150.
10. Wan, Y.; An, F.; Zhou, P.; Li, Y.; Liu, Y.*; Lu, C.; Chen, H., Regenerated Cellulose I from LiCl? DMAc Solution. Chemical Communications 2017, 53, 3595-3597.
11. Li, Y.; Zhou, P.; An, F.; Liu, Y.*; Lu, C., Dynamic self-stiffening and structural evolutions of polyacrylonitrile/carbon nanotube nanocomposites. ACS applied materials & interfaces 2017, 9 (6), 5653-5659.
12. Wan, Y.; Zhou, P.; Liu, Y.*; Chen, H., Novel wearable polyacrylonitrile/phase-change material sheath/core nano-fibers fabricated by coaxial electro-spinning. RSC advances 2016, 6 (25), 21204-21209.
13. Jia, Z.; Lu, C.*; Liu, Y.*; Zhou, P.; Wang, L., Lignin/polyacrylonitrile composite hollow fibers prepared by wet-spinning method. ACS Sustainable Chemistry & Engineering 2016, 4 (5), 2838-2842.
14. Newcomb, B. A.; Giannuzzi, L. A.; Lyons, K. M.; Gulgunje, P. V.; Gupta, K.; Liu, Y.; Kamath, M.; McDonald, K.; Moon, J.; Feng, B., High resolution transmission electron microscopy study on polyacrylonitrile/carbon nanotube based carbon fibers and the effect of structure development on the thermal and electrical conductivities. Carbon 2015, 93, 502-514.
15. Chae, H. G.; Newcomb, B. A.; Gulgunje, P. V.; Liu, Y.; Gupta, K. K.; Kamath, M. G.; Lyons, K. M.; Ghoshal, S.; Pramanik, C.; Giannuzzi, L., High strength and high modulus carbon fibers. Carbon 2015, 93, 81-87.
16. Liu, Y.; Kumar, S., Polymer/carbon nanotube nano composite fibers–a review. ACS applied materials & interfaces 2014, 6 (9), 6069-6087.
17. Liu, Y.; Chae, H. G.; Kumar, S., Gel-spun carbon nanotubes/polyacrylonitrile composite fibers. Part III: Effect of stabilization conditions on carbon fiber properties. Carbon 2011, 49 (13), 4487-4496.
18. Liu, Y.; Chae, H. G.; Kumar, S., Gel-spun carbon nanotubes/polyacrylonitrile composite fibers. Part II: Stabilization reaction kinetics and effect of gas environment. Carbon 2011, 49 (13), 4477-4486.
19. Liu, Y.; Chae, H. G.; Kumar, S., Gel-spun carbon nanotubes/polyacrylonitrile composite fibers. Part I: Effect of carbon nanotubes on stabilization. Carbon 2011, 49 (13), 4466-4476. |