期刊/合計 | 獨立通訊/9 | 最後共通訊/4 | 一作或靠前共通訊/8 |
Physical Review Letters | 1 | ||
Journal of Rheology | 1 | 1 | |
Macromolecules | 1 | 3 | 4 |
Giant | 2 | ||
高分子學報 | 1 | ||
Polymer | 4 | 1 | 1 |
其他 | 1 |
Yihui Zhu,
Zihe Wang,
Hang Li,
Ming Zhao,
Yifu Ruan,
22. Y. Ruan, The Principle of Disentanglement by Intrachain Crosslinking in the Melt of Soft-Nanoparticles, in revision
21. C. Li, Y. Ruan, G. Liu*, Mass-produce sub-15 nm polymeric soft-nanoparticles and cold-flow conditions 量產15nm以下軟納米粒子與冷流條件
Polymer, 320, 128082, (2025)
20. Y. Ruan, Q. Zou, H. Zhang, Y. Zhang, H. Zhang, W. Wu, H. Liu, J. Yan, G. Liu*, The extreme of disentanglement: 100-fold viscosity reduction in model single-chain nanoparticles “單鏈交聯納米粒子揭示解纏結的極限可達100倍降黏”
Macromolecules, 57 (14), 6583-6592, (2024)
19.Tunable Slow Dynamics of Three-Dimensional Polymer Melts Through Architecture Engineering
“三維形狀高分子的結構調控慢動力學”
Macromolecules, 57 (2), 777-785, (2024)
18. X. Ouyang, J. Luo, T. Li, Y. Zhu, W. Yu, J. He, P. Zhang, G. Liu*, The second network of soft-nanoparticles in linear polymers of the same chemistry
“同種高分子球鏈體系的第二網絡”
Polymer, 283, 126216, (2023)
17. Y. Liu, X.Y. Yan, Q.Y. Guo, H. Lei, X.y. Liu, X.h. Li, Y. Wu, W. Zhang, G. Liu*, S. Z. D. Cheng*, Recent Progress on the Rheology of Giant Molecules “”
Macromolecular Chemistry and Physics, 224, 2200357, (2023)
16.G. Liu*, W. Wu, S. Yang, M. Zhu, Measuring viscoelasticity without sample amount prerequisite “黏彈性測量擺脫樣品量限製”
Giant, 13, 100141, (2023)
15. W. Wu†, J. Luo†, X. Ouyang, W. He, K. Bao, H. Li, G. Liu*, 0416-1025
Micronewton shear rheometer performing SAOS using 2 mg of sample
僅需2毫克樣品、微牛頓剪切流變儀實現小幅振蕩剪切
Journal of Rheology, 67(1), 207-218, (2023)
美國物理聯合會Scilight新聞報道 中文報道1 中文報道2 共享測試服務
14.J. Ma†, W. Wu†, Z. Ke, H. Li, J. Luo*, J. Yang*, G. Liu*, 0722-1004
Viscosity master curves and predictions of phenolic resin solutions through early aging
“酚醛樹脂老化的黏度主曲線和早期老化預測”
Polymer, 261, 125405, (2022)
13. X. Ouyang, J. Luo, G. Liu*, 0517-0905
Effects of entanglement and dispersity on shear strain hardening
“纏結度和分散度對剪切硬化的影響”
Polymer, 258, 125306, (2022)
12. C. Gu†, Z. Du†, X. Ouyang, H. Xiang, M. Zhu, J. Luo*, G. Liu*, 0307-0725
Pinching dynamics of telechelic associating and coupling polymers
Macromolecules, 55 (16), 7059-7070, (2022)
11. Y. Zhu†, J. Luo†, Q. Zou†, X. Ouyang, Y. Ruan, Y. Liu, G. Liu*,
Glassy feature in melts of 3-dimensional architectured polymer blends
“三維形狀高分子共混熔體中的類玻璃特征”
Polymer, 238, 124336, (2022)
10. J. Luo, Y. Zhu, Y. Ruan, W. Wu, X. Ouyang, Z. Du*, G. Liu*,
Diameter and elasticity governing the relaxation of soft-nanoparticles in bulk
Macromolecules, 54 (17), 8077-8087, (2021)
9. Q. Zou, Y. Zhu, Y. Ruan, R. Zhang, G. Liu*,
Coarse-grained Soft-Clusters Remain non-Diffusing in the Melt State
Giant, 8, 100070, (2021)
8. 羅錦添†, 歐陽希凱†, 劉庚鑫*, 巨型分子的黏彈性研究進展,
高分子學報, 51 (7), 687-697, (2020) 中文短評
7. Y. Liu†, G. Liu†,*, W. Zhang, C. Du, C. Wesdemiotis, S. Cheng*,
Cooperative Soft-Cluster Glass in Giant Molecular Clusters
Macromolecules, 52 (11), 4341-4348, (2019) Dynamics of shape-persistent giant molecules -
Zimm-like melt, elastic plateau, and cooperative glass-like
“保持三維形狀的巨型分子的動力學,Zimm熔體👨🏽🔧,彈性平臺,協同玻璃”
Macromolecules, 50 (17), 6637-6646, (2017)
5.G. Liu* and S.Q. Wang*,
Entangled linear polymer solutions at high shear:
from strain softening to hardening
“高速剪切時的線性纏結高分子溶液:應變軟化到應變硬化”
Macromolecules, 49 (24), 9647-9654, (2016)
4.G. Liu, S. Cheng, H. Lee, H. Ma, H. Xu, T. Chang, R.P. Quirk and S.Q. Wang*,
Strain hardening in startup shear of long chain branched polymer solutions
“長支化高分子溶液在起始剪切時的應變硬化”
Physical Review Letters, 111 (8), 068302(4), (2013)
3.G. Liu*, H. Ma, H. Lee, H. Xu, S. Cheng, H. Sun, T. Chang, R.P. Quirk and S.Q. Wang*, Long chain branched polymers to prolong homogeneous stretching and to resist melt breakup
“延長均勻拉伸和抑製熔體斷裂的長支化高分子”
Polymer, 54 (24), 6608-6616, (2013)
2.G. Liu, H. Sun, S. Rangou, K. Ntetsikas, A. Avgeropoulos and S.Q. Wang*,
Studying the origin of strain hardening: basic difference between extension and shear
“應變硬化的起因:拉伸與剪切的根本不同”
Journal of Rheology, 57 (1), 89-104, (2013) Most cited Articles in JoR 2013
1.G. Liu, and S.Q. Wang*, A particle tracking velocimetric study of stress relaxation behavior of entangled polystyrene solutions after stepwise shear
“使用粒子示蹤技術研究纏結聚苯乙烯溶液在階躍應變後的應力松弛行為”
Macromolecules, 45 (16), 6741-6747, (2012)
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