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- W4385429168 abstract "ABSTRACTDispersion state of carbon nanotubes (CNTs) in cellulose nanofibrils (CNFs) film at variant sonication time in the presence of sodium dodecyl sulfate (SDS) has been studied in this work. The sonication was extended up to 120 min, and the CNF-CNTs-SDS suspension’s viscosity was measured at different times. Overall, viscosity of CNF-CNTs-SDS suspension decreased continuously as sonication continued except for the period of 60–75 min, where an increase in the viscosity was observed. Based on morphological investigations, the partial dispersion of particles at the early stage of sonication (i.e. up to 60 min) was followed by coagulation or reagglomeration of the particles during 60–75 min and increasing sonication time by 120 min led to improved dispersion of CNTs in CNFs. Likewise, the electrical conductivity and tensile strength obeyed the same trend due to improved CNTs-CNFs film’s network (30–60 and 75–120 min) and the corresponding reduction (60–75 min) caused by the partial agglomeration of CNT and CNF moieties. These findings highlight that sonication time is not a straightforward parameter and should be elaborated to reach the desired dispersion.KEYWORDS: Carbon nanotubescellulose nanofibrilsdispersionsonication time Disclosure statementNo potential conflict of interest was reported by the authors.Additional informationNotes on contributorsHamed ArabDr. Hamed Arab is currently a postdoctoral researcher at National Institute of Scientific Research (INRS-ETE). He hold his PhD in Materials Engineering from Politecnico di Milano university. His filed of expertise includes Carbon nanotube modification and application, CO2 conversion and sequestration, synthesis of photoactive films, electro/photo-electro chemical approaches for environmental applications such as water splitting and wastewater treatment.Mohammad Ebrahim KarkhanehchinMr. Mohammad Ebrahim Karkhanehchin did a Master's in Chemical Engineering from the Ferdowsi University of Mashhad in 2017.Maryam MokhtarifarDr. Maryam Mokhtarifar graduated in Materials Science at Polytechnic University of Milan, Italy, and has conducted her research in the filed of smart self-cleaning coating and round-the-clock (memory) photocatalysts. As a postdoctoral researcher at Polytechnique du Montreal University, Canada, in the Department of Chemical Engineering, she continued working on photocatalytic and recovery of rare earth elements in electronic waste. Currently, she is working on environmental engineering, focusing on CO2 reduction to mitigate climate change in the chemical engineering department at Massachusetts Institute of Technology (MIT), US.Daria Camilla BoffitoDr. Daria C. Boffito is a Full Professor in Chemical Engineering at Polytechnique Montréal since 2016, whereby she is the head of the Process Intensification and Heterogenous Catalysis (EPIC) research group. She holds the Canada Research Chair in Intensified Mechano-Chemical Processes for Sustainable Biomass Conversion. Her fields of expertise include sonochemistry, heterogeneous catalyst synthesis and characterization, biomass conversion, and photocatalysis.Majid BaniadamDr. Majid Baniadam obtained his Ph.D. from Shiraz University in 2009 and then joined the Department of Chemical Engineering at Ferdowsi University of Mashhad as a faculty member.Morteza MaghrebiDr. Morteza Maghrebi obtained his Ph.D. from University of Tehran in 2009 and then joined the Department of Chemical Engineering at Ferdowsi University of Mashhad as a faculty member." @default.
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- W4385429168 date "2023-07-31" @default.
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- W4385429168 title "Towards a More Conductive and Stronger Cellulose-CNTs Composite Film through Controlling the Texture" @default.
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- W4385429168 doi "https://doi.org/10.1080/25740881.2023.2237101" @default.
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