代表性论文
[1] Lin L, Liu S, Fu S, Zhang S, Deng H*, Fu Q*. Fabrication of Highly Stretchable Conductors via Morphological Control of Carbon Nanotube Network. Small. 2013;9:3620-9.
[2] Lin L, Liu SY, Zhang Q, Li XY, Ji MZ, Deng H*, Fu Q*, Towards tunable sensitivity of electrical property to strain for conductive polym...
代表性论文
[1] Lin L, Liu S, Fu S, Zhang S, Deng H*, Fu Q*. Fabrication of Highly Stretchable Conductors via Morphological Control of Carbon Nanotube Network. Small. 2013;9:3620-9.
[2] Lin L, Liu SY, Zhang Q, Li XY, Ji MZ, Deng H*, Fu Q*, Towards tunable sensitivity of electrical property to strain for conductive polymer composites based on thermoplastic elastomer. ACS Appl Mater Interfaces. 2013;5:5815-24.
[3] Deng H*, Ji M, Yan D, Fu S, Duan L, Zhang M, Fu Q*, Towards tunable resistivity-strain behavior through construction of oriented and selectively distributed conductive networks in conductive polymer composites. Journal of Materials Chemistry A. 2014;2:10048-58.
[4] Deng H*, Lin L, Ji MZ, Zhang SM, Yang MB, Fu Q*. Recent progress on the morphological control of conductive network in conductive polymer composites and the use as electroactive multifunctional materials. Progress in Polymer Science. 2014;39 627-55.
[5] Duan L, Fu S, Deng H*, Zhang Q, Wang K, Chen F, Fu Q*, The resistivity-strain behavior of conductive polymer composites: stability and sensitivity. Journal of Materials Chemistry A. 2014;2:17085-98.
[6] Ji M, Deng H*, Yan D, Li X, Duan L, Fu Q*. Selective localization of multi-walled carbon nanotubes in thermoplastic elastomer blends: An effective method for tunable resistivity-strain sensing behavior. Composites Science and Technology. 2014;92:16-26.
[7] Zhang SM, Deng H*, Zhang Q, Fu Q*. Formation of Conductive Networks with Both Segregated and Double-Percolated Characteristic in Conductive Polymer Composites with Balanced Properties. ACS Appl Mater Interfaces. 2014;6:6835-44.
[8] Yu F, Deng H*, Bai H, Zhang Q, Wang K, Chen F, Fu Q*, Confine Clay in an Alternating Multi layered Structure through Injection Molding: A Simple and Efficient Route to Improve Barrier Performance of Polymeric Materials. ACS Appl Mater Interfaces. 2015;7:10178-89.
[9] Zhou H, Deng H*, Zhang L, Wu Z, Deng S, Yang W, Zhang Q, Chen F, Fu Q*, Toward multi-functional polymer composites through selectively distributing functional fillers. Composites Part A: Applied Science and Manufacturing. 2016;82:20-33.
[10] Zhou Y, Zhou Y, Deng H*, Fu Q*, A novel route towards tunable piezoresistive behavior in conductive polymer composites: Addition of insulating filler with different size and surface characteristics. Composites Part A: Applied Science and Manufacturing. 2017;96:99-109.