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M

Muchao Qu

Researcher at University of Erlangen-Nuremberg

Publications -  34
Citations -  512

Muchao Qu is an academic researcher from University of Erlangen-Nuremberg. The author has contributed to research in topics: Percolation threshold & Carbon nanotube. The author has an hindex of 9, co-authored 22 publications receiving 258 citations.

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Electrical conductivity and mechanical properties of melt-spun ternary composites comprising PMMA, carbon fibers and carbon black

TL;DR: In this article, the electrical conductivity of melt spun composites consisting of PMMA containing both aligned carbon fibers (CF) and carbon black (CB) has been investigated, and two mechanical contour plots for elastic modulus and tensile strength were presented, showing how the decreasing tensile and increasing E-modulus of the PMMA/CF/CB ternary composites was depending on the CB and CF filling fractions.
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Biocompatible, Flexible Strain Sensor Fabricated with Polydopamine-Coated Nanocomposites of Nitrile Rubber and Carbon Black.

TL;DR: In this article, a flexible, biocompatible, nitrile butadiene rubber (NBR)-based strain sensor with high stretchability, good sensitivity, and excellent repeatability is presented for the first time.
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An outstanding antichlorine and antibacterial membrane with quaternary ammonium salts of alkenes via in situ polymerization for textile wastewater treatment

TL;DR: In this article, the amides groups in the polyamide structure were converted to imides by targeted grafted from diallyl dimethyl ammonium chloride (DADMAC) molecules.
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Hydrothermally synthesized ZnO-RGO-PPy for water-borne epoxy nanocomposite coating with anticorrosive reinforcement

TL;DR: In this article , a waterborne epoxy (WEP) nanocomposite coating with hydrothermal synthesized zinc oxide (ZnO)-reduced graphene oxide (RGO)-polypyrrole (PPy) was prepared and an enhanced corrosion resistance was reported.
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Fabrication, characterization and modelling of triple hierarchic PET/CB/TPU composite fibres for strain sensing

TL;DR: In this paper, a triple-layered coaxial fiber structure was fabricated for strain sensor applications, where the core consisted of melt-spun poly (ethylene terephthalate) (PET) where in a subsequent step carbon black (CB) particles were coated onto the surface of the PET fibre to build the conductive pathways by a dissolving-coating method.