His primary areas of investigation include Composite material, Carbon nanotube, Electrical conductor, Crystallization and Nanocomposite. Many of his studies on Composite material involve topics that are commonly interrelated, such as Percolation threshold. His Carbon nanotube study integrates concerns from other disciplines, such as Carbon black and Thermoplastic polyurethane.
His studies examine the connections between Electrical conductor and genetics, as well as such issues in Raman spectroscopy, with regards to Thermogravimetric analysis and X-ray photoelectron spectroscopy. His Crystallization study combines topics in areas such as Nanotechnology, Polypropylene and Polymer. His research in Polymer intersects with topics in Polyester, Filler and High-density polyethylene.
His primary scientific interests are in Composite material, Carbon nanotube, Polymer, Nanocomposite and Polypropylene. Hua Deng regularly links together related areas like Crystallization in his Composite material studies. He usually deals with Carbon nanotube and limits it to topics linked to Percolation threshold and Rheology.
In his study, which falls under the umbrella issue of Polymer, Hydroxide is strongly linked to Dielectric. His work in the fields of Nanocomposite, such as Polymer nanocomposite, overlaps with other areas such as Sepiolite. His work deals with themes such as Copolymer, Polyethylene, Polymer chemistry, Polyolefin and Toughness, which intersect with Polypropylene.
His main research concerns Composite material, Polymer, Dielectric, Filler and Electrical conductor. Hua Deng studied Composite material and Surface modification that intersect with Barium titanate. His Polymer research includes elements of Ultimate tensile strength, Nanocomposite, Ceramic, Filler and Polypropylene.
In his study, Nanowire, Thermoplastic, Silicone and Mechanical property is inextricably linked to Polymer composites, which falls within the broad field of Filler. Hua Deng has researched Electrical conductor in several fields, including Layer, Thermal conductivity, Carbon nanotube and Thermoplastic polyurethane. His Polymer blend research includes themes of PEDOT:PSS and Crystallization.
Hua Deng spends much of his time researching Composite material, Polymer, Electrical conductor, Filler and Dielectric. His Electrical conductor research incorporates elements of Layer, Thermal conductivity, Polydimethylsiloxane and Carbon nanotube. The study incorporates disciplines such as High-density polyethylene, Polymer composites and Polypropylene in addition to Thermal conductivity.
His study with Carbon nanotube involves better knowledge in Nanotechnology. Hua Deng has included themes like Polyvinylidene fluoride, Hydroxide and Surface modification in his Dielectric study. His Surface modification research is multidisciplinary, relying on both Dispersion, Barium titanate and Composite number.
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Progress on the morphological control of conductive network in conductive polymer composites and the use as electroactive multifunctional materials
Hua Deng;Lin Lin;Mizhi Ji;Shuangmei Zhang.
Progress in Polymer Science (2014)
Realizing the enhancement of interfacial interaction in semicrystalline polymer/filler composites via interfacial crystallization
Nanying Ning;Sirui Fu;Wei Zhang;Feng Chen.
Progress in Polymer Science (2012)
New Understanding in Tuning Toughness of β-Polypropylene: The Role of β-Nucleated Crystalline Morphology
Feng Luo;Chengzhen Geng;Ke Wang;Hua Deng.
Macromolecules (2009)
A simple and efficient method to prepare graphene by reduction of graphite oxide with sodium hydrosulfite
Tiannan Zhou;Feng Chen;Kai Liu;Hua Deng.
Nanotechnology (2011)
Towards tunable sensitivity of electrical property to strain for conductive polymer composites based on thermoplastic elastomer.
Lin Lin;Siyao Liu;Qi Zhang;Xiaoyu Li.
ACS Applied Materials & Interfaces (2013)
Conductive network formation in the melt of carbon nanotube/thermoplastic polyurethane composite
Rui Zhang;Alice Dowden;Hua Deng;Mark Baxendale.
Composites Science and Technology (2009)
Tailoring impact toughness of poly(L-lactide)/poly(ε-caprolactone) (PLLA/PCL) blends by controlling crystallization of PLLA matrix.
Hongwei Bai;Hao Xiu;Jian Gao;Hua Deng.
ACS Applied Materials & Interfaces (2012)
Control of Crystal Morphology in Poly(l-lactide) by Adding Nucleating Agent
Hongwei Bai;Weiyi Zhang;Hua Deng;Qin Zhang.
Macromolecules (2011)
Controlling the dynamic percolation of carbon nanotube based conductive polymer composites by addition of secondary nanofillers: The effect on electrical conductivity and tuneable sensing behaviour
Emiliano Bilotti;Han Zhang;Hua Deng;Rui Zhang.
Composites Science and Technology (2013)
Fabrication of a transparent superamphiphobic coating with improved stability
Zhoukun He;Meng Ma;Xiaorong Lan;Feng Chen.
Soft Matter (2011)
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