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Liangbin Li

Researcher at University of Science and Technology of China

Publications -  371
Citations -  11338

Liangbin Li is an academic researcher from University of Science and Technology of China. The author has contributed to research in topics: Crystallization & Nucleation. The author has an hindex of 48, co-authored 341 publications receiving 8970 citations. Previous affiliations of Liangbin Li include The Chinese University of Hong Kong & Sichuan University.

Papers
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Journal ArticleDOI

Observation of a pp̄ mass threshold enhancement in Ψ′ π +π - J/Ψ(J/Ψ γ p) decay

M. Ablikim, +289 more
- 01 Apr 2010 - 
TL;DR: In this paper, the decay channel Ψ' → π+π− J/Ψ(J/Ω → γp) was studied using a sample of 1.06 × 108 Ω' events collected by the BESIII experiment at BEPCII.
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Window of Pressure and Flow To Produce β-Crystals in Isotactic Polypropylene Mixed with β-Nucleating Agent

TL;DR: In this article, the authors explored the simultaneous effects of pressure and flow on β-crystal formation in isotactic polypropylene (iPP) mixed with β-nucleating agent (β-NA) when a flow field exists simultaneously.
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Multimorphological Crystallization of Shish-Kebab Structures in Isotactic Polypropylene: Quantitative Modeling of Parent–Daughter Crystallization Kinetics

TL;DR: In this paper, a model for the crystallization kinetics of flow-induced shish-kebab structures in isotactic polypropylene is presented, which is validated with in-situ wide-angle X-ray diffraction data.
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Steady–shear‐induced Isothermal Crystallization of Poly(L‐lactide) (PLLA)

TL;DR: In this paper, the isothermal crystallization of poly(L-lactide) under steady-shear flow was investigated in situ using an optical polarizing microscope with a hot shear stage.
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Mixing Assisted Direct Formation of Isotactic Poly(1-butene) Form I′ Crystals from Blend Melt of Isotactic Poly(1-butene)/Polypropylene

TL;DR: In this article, the influence of mixing of iPB-1/iPP blend on the polymorphism of iPP-1 under processing-relevant conditions is studied with emphasis on the competition between the thermodynamically stable form I′ crystal and the kinetically favored form II.