[1] |
Sharma A, Tyagi V V, Chen C R, Buddhi D. Review on thermal energy storage with phase change materials and applications [J]. Review Sustain Energy Rev., 2009, 13 (2): 198-226.
|
[2] |
Xie Wangping (谢望平), Wang Nan (汪南), Zhu Dongsheng (朱冬生), Wang Xianju (王先菊). Review of heat transfer enhancement of the PCMs [J]. Chemical Industry and Engineering Progress (化工进展), 2008, 27 (2): 190-195.
|
[3] |
Zhang Zhengguo (张正国), Yan Zhipeng (燕志鹏), Fang Xiaoming (方晓明), Fang Yutang (方玉堂), Gao Xuenong (高学农). Research development of applications of nanotechnology in heat transfer enhancement [J]. Chemical Industry and Engineering Progress (化工进展), 2011, 30 (1): 34-39.
|
[4] |
Yu Z T, Fang X, Fan L W, Wang X, Xiao Y Q, Zeng Y, Xu X, Hu Y C, Cen K F. Increased thermal conductivity of liquid paraffin-based suspensions in thee of carbon nano-additives of various sizes and shapes [J]. Carbon, 2013, 53: 277-285.
|
[5] |
Fan L W, Fang X, Wang X, et al. Effects of various carbon nanofillers on the thermal conductivity and energy storage properties of paraffin-based nanocomposite phase change materials [J]. Applied Energy, 2013, 110: 163-172.
|
[6] |
Chen G H, Weng W G, Wu D J, Wu C L, Lu J R, Wang P P, Chen X F. Preparation and characterization of graphite nanosheets from ultrasonic powdering technique [J]. Carbon, 2004, 42: 753-759.
|
[7] |
Kim S, Drzal L T. High latent heat storage and high thermal conductive phase change materials using exfoliated graphite nanoplatelets [J]. Solar Energy Materials and Solar Cells, 2009, 93: 136-142.
|
[8] |
Wang N, Zhang X R, Zhu D S, Gao J W. The investigation of thermal conductivity and energy storage properties of graphite/paraffin composites [J]. Journal of Thermal Analysis and Calorimetry, 2012, 107: 949-954.
|
[9] |
Zhang L, Zhu J Q, Zhou W B, Wang J, Wang Y. Thermal and electrical conductivity enhancement of graphite nanoplatelets on form-stable polyethylene glycol/polymethyl methacrylate composite phase change materials [J]. Energy, 2012, 39: 294-302.
|
[10] |
Chen Y J, Nguyen D D, Shen M Y, Yip M C, Tai N H. Thermal characterizations of the graphite nanosheets reinforced paraffin phase change composites [J]. Composites: Part A, 2013, 44: 40-46.
|
[11] |
Zeng J L, Zheng S H, Yu S B, Zhu F R, Gan J, Zhu L, Xiao Z L, Zhu X Y, Zhu Z, Sun L X, Cao Z. Preparation and thermal properties of palmitic acid/polyaniline/exfoliated graphite nanoplatelets form-stable phase change materials [J]. Applied Energy, 2014, 115: 603-609.
|
[12] |
Yu S, Jeong S G, Chung O, Kim S. Bio-based PCM/carbon nanomaterials composites with enhanced thermal conductivity [J]. Solar Energy Materials and Solar Cells, 2014, 120: 549-554.
|
[13] |
Yu A P, Ramesh P, Itkis M E, Bekyarova E, Haddon R C. Graphite nanoplatelet-epoxy composite thermal interface materials [J]. Journal of Physical Chemistry C, 2007, 111 (21): 7565-7569.
|
[14] |
Debelak B, Lafdi K. Use of exfoliated graphite filler to enhance polymer physical properties [J]. Carbon, 2007, 45: 1727-1734.
|
[15] |
Xiang J L, Drzal L T. Investigation of exfoliated graphite nanoplatelets (xGNP) in improving thermal conductivity of paraffin wax-based phase change material [J]. Solar Energy and Material Solar Cells, 2011, 95 (7): 1811-1818.
|
[16] |
Chen Hong, Zhu Dongsheng, Qi Xiaoling, Zhang Xiurong. Effect of graphite flake on the thermal conductivity of organic phase change materials [J]. Materials Review: B, 2011, 25 (11): 56-59.
|
[17] |
Huang Liang, Zhu Pengli, Liang Xianwen, Yu Shuhui, Sun Rong, Wang Zhengping. Study on the dielectric properties of inorganic particles filled polymer composites [J]. Materials Review: A, 2014, 28 (10): 11-20.
|
[18] |
Lin W, Zhang R W, Wong C P. Modeling of thermal conductivity of graphite nanosheet composites [J]. Journal of Electronic Materials, 2010, 39 (3): 268-272.
|
[19] |
Maxwell J C. A Treatise on Electricity and Magnetism [M]. 2nd ed. Camlridge:Oxford University Press, 1904: 435-444.
|
[20] |
Bruggeman D A G. Dielectric constant and conductivity of mixtures of isotropic materials [J]. Annals of Physics, 1935, 24: 636-639.
|
[21] |
Nielsen L E. Thermal conductivity of particulate filled polymers [J]. Journal of Applied Polymer Science, 1973, 17: 3819-3820.
|
[22] |
Xu Y S, Ray G, Abdel-Magid B. Thermal behavior of single-walled carbon nanotube polymer-matrix composites [J]. Composites: Part A, 2006, 37: 114-121.
|
[23] |
Fang X, Fan L W, Ding Q, Wang Xi, Yao X L, Hou J F, Yu Z T, Cheng G H, Hu Y C, Cen K F. Increased thermal conductivity of eicosane-based composite phase change materials in the presence of graphene nanoplatelets [J]. Energy and Fuels, 2013, 27: 4041-4047.
|
[24] |
Cai Y, Wei Q F Huang F L, Gao W D. Preparation and properties studies of halogen-free flame retardant form-stable phase change materials based on paraffin/high density polyethylene composites [J]. Applied Energy, 2008, 85 (8): 765-775.
|
[25] |
Fang X, Fan L W, Ding Q, Yao X L, Wu Y Y, Hou J F, Wang X, Yu Z T, Cheng G H, Hu Y C. Thermal energy storage performance of paraffin-based composite phase change materials filled with hexagonal boron nitride nanosheets [J]. Energy Conversion and Management, 2014, 80: 103-109.
|