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Jun Ma

Researcher at Harbin Institute of Technology

Publications -  1523
Citations -  58397

Jun Ma is an academic researcher from Harbin Institute of Technology. The author has contributed to research in topics: Nasopharyngeal carcinoma & Medicine. The author has an hindex of 97, co-authored 1338 publications receiving 39643 citations. Previous affiliations of Jun Ma include Shenyang Aerospace University & University of Technology, Sydney.

Papers
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Unraveling the interaction of hydroxylamine and Fe(III) in Fe(II)/Persulfate system: A kinetic and simulating study.

TL;DR: Kinetic simulations indicated that Fe(II) was produced slower from Fe(III)-ascorbic acid complexes than that with hydroxylamine, which caused the difference in oxidation kinetics, which could improve the understanding about the effect of hydroroxylamine and other reductants in promoting pollutants elimination in Fe( II)/PDS system.
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Employing a novel bioelastomer to toughen polylactide

TL;DR: In this article, a novel bioelastomer (BE) was used to increase the cold crystallization ability of PLA, which was valuable for practical processing and performance, and showed a brittle-to-ductile transition owing to addition of BE.
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Thermal Degradation and Fire Properties of Fungal Mycelium and Mycelium - Biomass Composite Materials

TL;DR: Pyrolysis flow combustion calorimetry (PCFC) evaluations reveal that the corresponding combustion propensity of mycelium is significantly lower compared to poly(methyl methacrylate) (PMMA) and polylactic acid (PLA), indicating that they are noticeably less prone to ignition and flaming combustion, and therefore safer to use.
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Modification of Pd-Fe nanoparticles for catalytic dechlorination of 2,4-dichlorophenol.

TL;DR: The role of dispersants themselves in dechlorination properties of Pd/Fe NPs is more significant than that of volume ratio of PAA to water, weight ratio of PMMA to anisole and volume ratios of water to ethanol in determining the properties of A-Pd/ Fe, M-PD/Fe and C-P d/FeNPs, respectively.
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A novel method for preparation of disorderly exfoliated epoxy/clay nanocomposite

TL;DR: In this paper, a disorderly exfoliated epoxy/clay nanocomposite was first prepared by a novel method and the reaction mechanism and structure were proven by 1HNMR, XRD, and TEM.