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Lishuai Zong

Researcher at Dalian University of Technology

Publications -  73
Citations -  904

Lishuai Zong is an academic researcher from Dalian University of Technology. The author has contributed to research in topics: Curing (chemistry) & Phthalonitrile. The author has an hindex of 13, co-authored 60 publications receiving 594 citations.

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Controllable Fabrication of Zinc Borate Hierarchical Nanostructure on Brucite Surface for Enhanced Mechanical Properties and Flame Retardant Behaviors

TL;DR: The design of fine structure might pave the way for the future development of halogen-free flame retardants combining both enhanced mechanical properties and excellent flame retardant behaviors.
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Promoting and Tuning Porosity of Flexible Ether-Linked Phthalazinone-Based Covalent Triazine Frameworks Utilizing Substitution Effect for Effective CO2 Capture

TL;DR: The experimental results revealed that the introduction of the substituents can effectively decrease the probability of the network interpenetration from the longer struts and the intermolecular/intramolecular intercalation from the increased degree of conformation freedom in the flexible ether-linkage, making porous PHCTFs promising candidates applied in gas sorption and separation field.
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Toughening and reinforcing of benzoxazine resins using a new hyperbranched polyether epoxy as a non-phase-separation modifier

TL;DR: A novel hyperbranched polyether epoxy (HBPEE) bearing a stiff fluorene unit and flexible aliphatic chains has been synthesized using a one-pot approach and used as a toughener for bis-benzoxazine resin (MDA-BOZ).
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Amino-terminated nitrogen-rich layer to improve the interlaminar shear strength between carbon fiber and a thermoplastic matrix

TL;DR: An amino-terminated nitrogen-rich layer of poly(cyclotriphosphazene-co-melamine) (PPM) coating was used to functionalize carbon fiber (CF) to strengthen the interfacial adhesion of CF reinforced copoly(phthalazinone ether sulfone)s (PPBES) through a facile in-situ polymerization as mentioned in this paper.
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Hyperbranched polyether epoxy grafted graphene oxide for benzoxazine composites: Enhancement of mechanical and thermal properties

TL;DR: In this paper, the properties and morphologies of graphene oxide (GO) and benzoxazine (BOZ) sheets were characterized by FT-IR, XRD, XPS, Raman spectroscopy, TEM and AFM.