Thermal Conductivity of Polyacrylamide Hydrogels at the Nanoscale
被引:51
|
作者:
Xu, Shuai
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机构:
Xi An Jiao Tong Univ, State Key Lab Strength & Vibrat Mech Struct, Int Ctr Appl Mech, Xian 710049, Peoples R China
Univ Calif San Diego, Mech & Aerosp Engn, La Jolla, CA 92093 USAXi An Jiao Tong Univ, State Key Lab Strength & Vibrat Mech Struct, Int Ctr Appl Mech, Xian 710049, Peoples R China
Xu, Shuai
[1
,2
]
Cai, Shengqiang
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机构:
Univ Calif San Diego, Mech & Aerosp Engn, La Jolla, CA 92093 USAXi An Jiao Tong Univ, State Key Lab Strength & Vibrat Mech Struct, Int Ctr Appl Mech, Xian 710049, Peoples R China
Cai, Shengqiang
[2
]
Liu, Zishun
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机构:
Xi An Jiao Tong Univ, State Key Lab Strength & Vibrat Mech Struct, Int Ctr Appl Mech, Xian 710049, Peoples R ChinaXi An Jiao Tong Univ, State Key Lab Strength & Vibrat Mech Struct, Int Ctr Appl Mech, Xian 710049, Peoples R China
Liu, Zishun
[1
]
机构:
[1] Xi An Jiao Tong Univ, State Key Lab Strength & Vibrat Mech Struct, Int Ctr Appl Mech, Xian 710049, Peoples R China
[2] Univ Calif San Diego, Mech & Aerosp Engn, La Jolla, CA 92093 USA
hydrogel;
modeling by a reaction method;
none-equilibrium molecular dynamics;
thermal conductivity;
2-order-3-phase model;
GRAPHENE;
TRANSPARENT;
D O I:
10.1021/acsami.8b09891
中图分类号:
TB3 [工程材料学];
学科分类号:
0805 ;
080502 ;
摘要:
A polymer network can imbibe copious amounts of water and swell, and the resulting state is known as a hydrogel. In many potential applications of hydrogels, such as stretchable conductors, ionic cables, and neuroprostheses, the thermal conductivities of hydrogels should be understood clearly. In the present work, we build molecular dynamics (MD) models of random cross-linked polyacrylamide hydrogels with different water volume fractions through a reaction method. On the basis of these models, thermal conductivities of hydrogels at the nanoscale are investigated by a none-equilibrium MD method. This work reveals that when the water fraction of hydrogels is under 85%, the thermal conductivity increases with the water fraction, and can be even higher than the thermal conductivities of both pure polymer networks and pure water because of the influence of the interface between polymer networks and water. However, when the water fraction in hydrogels is bigger than 85%, its thermal conductivity will decrease and get close to the water's conductivity. Accordingly, to explain this abnormal phenomenon, a 2-order-3-phase theoretical model is proposed by considering hydrogel as a 3-phase composite. It can be found that the proposed theory can predict results which agree quite well with our simulated results.
机构:
Zhejiang Univ, Ctr X Mech, Dept Engn Mech, State Key Lab Fluid Power & Mechatron Syst,Key Lab, Hangzhou 310027, Peoples R China
Inst Flexible Elect Technol THU, Jiaxing 314000, Peoples R ChinaZhejiang Univ, Ctr X Mech, Dept Engn Mech, State Key Lab Fluid Power & Mechatron Syst,Key Lab, Hangzhou 310027, Peoples R China
Wu, Tonghao
Zhong, Danming
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机构:
Zhejiang Univ, Ctr X Mech, Dept Engn Mech, State Key Lab Fluid Power & Mechatron Syst,Key Lab, Hangzhou 310027, Peoples R China
Inst Flexible Elect Technol THU, Jiaxing 314000, Peoples R China
Zhejiang Univ, Huanjiang Lab, Zhuji 311800, Peoples R ChinaZhejiang Univ, Ctr X Mech, Dept Engn Mech, State Key Lab Fluid Power & Mechatron Syst,Key Lab, Hangzhou 310027, Peoples R China
Zhong, Danming
Qu, Shaoxing
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h-index: 0
机构:
Zhejiang Univ, Ctr X Mech, Dept Engn Mech, State Key Lab Fluid Power & Mechatron Syst,Key Lab, Hangzhou 310027, Peoples R China
Zhejiang Univ, Affiliated Hosp 2, Eye Ctr, Sch Med, Hangzhou 310009, Peoples R ChinaZhejiang Univ, Ctr X Mech, Dept Engn Mech, State Key Lab Fluid Power & Mechatron Syst,Key Lab, Hangzhou 310027, Peoples R China
机构:
Univ Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, France
Univ Tokyo, Dept Mech Engn, Tokyo 113856, JapanUniv Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, France
Davier, B.
Dollfus, P.
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机构:
Univ Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, FranceUniv Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, France
Dollfus, P.
Le, N. D.
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h-index: 0
机构:
Univ Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, FranceUniv Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, France
Le, N. D.
Volz, S.
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机构:
Univ Tokyo, CNRS, LIMMS UMI 2820, Meguro Ku, 4-6-1 Komaba, Tokyo 1538505, JapanUniv Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, France
Volz, S.
Shiomi, J.
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h-index: 0
机构:
Univ Tokyo, Dept Mech Engn, Tokyo 113856, JapanUniv Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, France
Shiomi, J.
Saint-Martin, J.
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h-index: 0
机构:
Univ Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, FranceUniv Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, F-91120 Palaiseau, France