代表性论文专著
以下论文的通信作者
发表有关石墨烯浆料及其在能源动力领域中的应用方面的国际期刊论文
1. Large scale production of graphene by ultrasound-assisted exfoliation of pristine graphite in supercritical CO2/H2O medium, Chemical Engineering Journal 138:872-879,2017 (2018年ESI高被引论文)
2. Preparation of few-layer and single-layer graphene by exfoliation of expandable graphite in supercritical N, N-dimethylformamide. Journal of Supercritical Fluids, 63: 99-104, 2012 (2012年,2013年热点下载论文,曾进入该期刊近五年引用率最高的TOP25之一)
3. Raman Spectroscopic Characterization of Graphene. Applied Spectroscopy Reviews, 45(5)369–407,2010 (一直保持该期刊most read article)
4. Three-dimensional graphene network assisted high performance dye sensitized solar cells, Journal of Power Sources,234: 60–68, 2013 (2015年ESI高被引论文)
5. Application of graphene as filler to improve thermal transport property of epoxy resin for thermal interface materials, International Journal of Heat and Mass Transfer 85:420-429,2015 (2016年ESI年高被引论文)
6. Two kinds of graphene-based composites for photoanode applying in dye-sensitized solar cell, Journal of Power Sources, 220:95-102, 2012 (2014年ESI高被引论文)
7. Confined interfacial assembly of controlled Li2Ti3O7 building blocks and Si nanoparticles in Lithium-ion batteries,Energy Storage Materials 44 (2022) 239-249
8. Silicon‐Based Self‐Assemblies for High Volumetric Capacity Li‐Ion Batteries via Effective Stress Management,Advanced Functional Materials 2002980,2020
9. Scalable synthesis of hierarchical hollow Li4Ti5O12 microspheres assembled by zigzag-like nanosheets for high rate lithium-ion batteries,Journal of Power Sources 340:263-272,2017
10. A flexible mesoporous Li4Ti5O12-rGO nanocomposite film as free-standing anode for high rate lithium ion batteries,Journal of Power Sources 375:59–67,2018
11. Core-shell structured Si@C nanocomposite for high-performance Li-ion batteries with a highly viscous gel as precursor Journal of Power Sources 438: 227001, 2019
12. Facile preparation of core-shell Si@Li4Ti5O12 nanocomposite as large-capacity lithium-ion battery anode, Journal of Energy Chemistry 40:89-98, 2020
13. Solution-based Synthesis and characterization of a silver nanoparticle-graphene hybrid film. Carbon 49(14):4731–4738, 2011
14. Hyperelastic characteristics of graphene natural rubber composites and reinforcement and toughening mechanisms at multi-scale, Composite Structures 228: 111365, 2019
15. Experimental test and curve fitting of creep recovery characteristics of modified graphene oxide natural rubber and its relationship with temperature, Polymer Testing 87: 106509, 2020
16. Viscoelastic and fatigue properties of graphene and carbon black hybrid structure filled natural rubber composites under alternating loading, Construction and Building Materials 265: 120299, 2020
17. High photoactive and visible-light responsive graphene/titanate nanotubes photocatalysts: preparation and characterization. Journal of Hazardous Materials, 198: 78-86, 2011 (2012-2013年ESI高被引论文)
18. Simple and green synthesis of monodisperse silver nanoparticles and surface-enhanced Raman scattering activity, RSC advances, 2:11404-11409,2012
19. Photocatalytic mechanism of graphene/titanate nanotubes photocatalyst under visible-light irradiation, Materials Chemistry and Physics, 138(2-3), 608-614,2013
20. Preparation of few layers three-dimensional graphene networks by CVD for energy storage application, Chemical Vapor Deposition,20(1-3):14-22, 2014
21. Growth Mechanism and Influences From Kinetic Factors on Carbon Materials With Varied Substrate During APCVD Process,Journal of Physical Chemistry C 117(47):25175–25184,2013
22. Morphology evolution of exfoliated trimanganese tetroxide nanosheets in supercritical N, N-dimethylformamide and a mass transfer model for growth kinetics, Powder Technology 259:109-116,2014
23. Supercritical hydrothermal synthesis of titanium dioxide nanostructures with controlled phase and morphology, Journal of Supercritical Fluids 94:165-173,2014
24. Phase diagram and supercritical deoxidation kinetics of manganese oxides in organic solvent N, N-dimethylformamide, Journal of Supercritical Fluids 95:24-34, 2014
25.Effect of Nitric Acid Treatment on Preparation of Graphene Sheets by Supercritical N, N-dimethylformamide Exfoliation,Ind. Eng. Chem. Res.53(37):14310–14314,2014
26. Hierarchical electromagnetic absorption in micro-waveguide stuffed with magnetic media for resin-based composites of graphene nanosheets and manganese oxides, Composites Part A: Applied Science and Manufacturing, 76:233-243, 2015
27. Against overcharring design of flame-retardant electromagnetic absorbing composites with graphene nanosheets and manganese oxides in modified epoxy resin,Ind. Eng. Chem. Res.55:934-947,2016
28.Graphene production via supercritical fluids, RSC Advances 6:10132-10143, 2016