Skip to content
RDL
Network
Ecosystem
Switch app
TR
About
FAQ
Sign in
Get started
New evidence disclosed for networking in natural rubber by dielectric relaxation spectroscopy — Jie Liu (2015) | RDL Network
Back
Cite
Save
Save for later
Share
Home
Publications
New evidence disclosed for networking in natural rubber by dielectric relaxation spectroscopy
Shared by
Guo Baochun
South China University of Technology
New evidence disclosed for networking in natural rubber by dielectric relaxation spectroscopy
Soft Matter 11(11): 2290-2299
Article
2015
English
Authors
+3 more
JL
Jie Liu
SW
Siwu Wu
ZT
Zhenghai Tang
Abstract
1 min read
A branch relaxation mode was identified for the first time, which provides new implications for natural networking structures in natural rubber.
Discussion
(0)
Sign in
to like and join the discussion.
No comments yet. Be the first to comment.
Related publications
Article
2013
Effects of interfacial interaction on chain dynamics of rubber/graphene oxide hybrids: a dielectric relaxation spectroscopy study
Siwu Wu
,
Zhenghai Tang
,
Guo Baochun
,
Liqun Zhang
,
Demin Jia
RSC Advances
Article
2009
Dielectric Relaxation in Dimethyl Sulfoxide/Water Mixtures Studied by Microwave Dielectric Relaxation Spectroscopy
Zijie Lu
,
Evangelos Manias
,
Digby D Macdonald
,
Michael T. Lanagan
Article
2004
Molecular Motions in Chitosan Studied by Dielectric Relaxation Spectroscopy
María Teresa Viciosa
,
Madalena Dionı́sio
,
Ricardo M. P. da Silva
,
Rui L Reis
,
João F. Mano
Article
2010
Dielectric Relaxation Spectroscopy of Hydrated and Dehydrated Silk Fibroin Cast from Aqueous Solution
Yu Lei
,
Xiao Hu
,
David Kaplan
,
Peggy Cebe
Article
2024
Energy transfer driven brightening of MoS2 by ultrafast polariton relaxation in microcavity MoS2/hBN/WS2 heterostructures
Zehua Hu
,
Tanjung Krisnanda
,
Antonio Fieramosca
,
Jiaxin Zhao
,
Qianlu Sun
,
Yuzhong Chen
,
Haiyun Liu
,
Yuan Luo
,
Rui Su
,
Junyong Wang
,
Kenji Watanabe
,
Takashi Taniguchi
,
Goki Eda
,
Xiao Renshaw Wang
,
Sanjib Ghosh
,
K. Dini
,
D. Sanvitto
,
T. C. H. Liew
,
Qihua Xiong
Discussion(0)
No comments yet. Be the first to comment.