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Dive into the research topics where Song Hong is active.

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Featured researches published by Song Hong.


Langmuir | 2014

Yielding Behavior in Colloidal Glasses: Comparison between “Hard Cage” and “Soft Cage”

Zhi Zhou; Javoris V. Hollingsworth; Song Hong; He Cheng; Charles C. Han

Rheological measurements are utilized to examine the yielding behavior of a polystyrene (PS) core and poly(N-isopropylacrylamide) (PNIPAM) shell microgel system with varying shell/core ratio. For a shell/core ratio of 0.15 at high concentrations, the suspensions show a typical hard sphere (HS) yielding response where the loss modulus (G″) exhibits a single peak due to cage breaking. As a result of tighter cages and less cage distortion prior to yielding, the peak location of G″ decreases with volume fraction. For a shell/core ratio of 1.10, which behaves like a soft jammed glass at high concentration, the suspensions exhibit a one-step yielding behavior similar to that of HS glass. However, the location of the peak in G″ increases with volume fraction, demonstrating the important role of particle deformation in the breakage of cages. For an intermediate shell/core ratio of 0.34, the system displays a two-step yielding behavior, as observed in previous reports for attractive glasses. By increasing the volume fraction, the strain of the first peak increases while the second one decreases. In addition, as the effective volume fraction increases to 112%, the two peaks merge into one broad peak. It is demonstrated that the first peak of G″ is due to deformation of the shell, and the second peak of G″ is attributed to cage breaking as a result of the cores colliding with each other. Combining these results, a yielding state diagram from typical HS to soft jammed glass is demonstrated.


Carbon | 2009

The reduction of carbon nanotube (CNT) length during the manufacture of CNT/polymer composites and a method to simultaneously determine the resulting CNT and interfacial strengths

Shao-Yun Fu; Zhen-Kun Chen; Song Hong; Charles C. Han


Macromolecular Rapid Communications | 2006

Shear-Controlled Micro/Nanometer-Scaled Super-Hydrophobic Surfaces with Tunable Sliding Angles from Single Component Isotactic Poly(propylene)

Yonghua Yao; Xia Dong; Song Hong; Hongli Ge; Charles C. Han


Journal of Polymer Science Part A | 2008

Thermal sensitive fluorescent hyperbranched polymer without fluorophores

Pingli Wang; Xin Wang; Kun Meng; Song Hong; Xin Liu; He Cheng; Charles C. Han


Macromolecules | 2008

Layered Structure Formation in the Reaction-Induced Phase Separation of Epoxy/Polyimide Blends

Fenghua Chen; Tongchen Sun; Song Hong; Kun Meng; Charles C. Han


Polymer | 2009

Shear-induced crystallization in a blend of isotactic polypropylene and high density polyethylene

Yan Wang; Kun Meng; Song Hong; Xu-Ming Xie; Chenggui Zhang; Charles C. Han


Journal of Chemical Physics | 2008

Shear-induced crystallization in phase-separated blend of isotactic polypropylene and poly (ethylene-co-octene)

Kun Meng; Xia Dong; Song Hong; Xin Wang; He Cheng; Charles C. Han


Macromolecules | 2008

Liquid–Liquid Phase Separation and Crystallization in Thin Films of a Polyolefin Blend

Song Hong; Xiaohua Zhang; Ruoyu Zhang; Li Wang; Jiang Zhao; Charles C. Han


Polymer | 2009

Reactive compatibilization of polyamide-12/poly(butylene terephthalate) blends with hyperbranched PEI-g-PA12: Morphology and thermal properties

Pingli Wang; Kun Meng; He Cheng; Song Hong; Jinkun Hao; Charles C. Han; Harald Haeger


Soft Matter | 2014

Effects of Particle Softness on Shear Thickening of Microgel Suspensions

Zhi Zhou; Javoris V. Hollingsworth; Song Hong; Guangmin Wei; Yu Shi; Xi Lu; He Cheng; Charles C. Han

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Charles C. Han

Chinese Academy of Sciences

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He Cheng

Chinese Academy of Sciences

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Charles C. Han

Chinese Academy of Sciences

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Kun Meng

Molecular Sciences Institute

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Jiang Zhao

Chinese Academy of Sciences

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Xia Dong

Chinese Academy of Sciences

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Yonghua Yao

Chinese Academy of Sciences

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Zhi Zhou

Chinese Academy of Sciences

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Hongli Ge

Chinese Academy of Sciences

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Li Wang

Chinese Academy of Sciences

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