Academic literature on the topic 'Graphene-NMP Interactions'

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Journal articles on the topic "Graphene-NMP Interactions"

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Almansoori, Muntaser, Ayman Rezk, Sabina Abdul Hadi, Khalid Askar, and Ammar Nayfeh. "High Optical Abropsion from Thin Film MoS2 Nano-Flakes." ECS Meeting Abstracts MA2024-01, no. 12 (2024): 1032. http://dx.doi.org/10.1149/ma2024-01121032mtgabs.

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Due to their distinctive electronic and optical characteristics, transition metal dichalcogenides (TMDs) have become significant materials in optoelectronics. Molybdenum disulfide (MoS2) flakes have received significant interest due to their potential applications. The unique bandgap properties exhibited by MoS2 flakes render them highly appealing for applications in optoelectronic devices [1]. A direct bandgap in this material enables effective interactions between light and matter, which is significant for various applications, including transistors, photodetectors, and light-emitting diodes
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Hadano, Fabio Seiti, Anderson Emanuel Ximim Gavim, Josiani Cristina Stefanelo, et al. "NH3 Sensor Based on rGO-PANI Composite with Improved Sensitivity." Sensors 21, no. 15 (2021): 4947. http://dx.doi.org/10.3390/s21154947.

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This work reports on a reduced graphene oxide and poly(aniline) composite (rGO-PANI), with rGO clusters inserted between PANI chains. These clusters were formed due the plasticizing effect of N-methyl-2-pyrrolidone (NMP) solvent, which was added during the synthesis. Further, this composite was processed as thin film onto an interdigitated electrode array and used as the sensitive layer for ammonia gas, presenting sensitivity of 250% at 100 ppm, a response time of 97 s, and a lowest detection limit of 5 ppm. The PANI deprotonation process, upon exposure to NH3, rGO, also contributed by improvi
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Bank, Ali, Shapour Jafargholinejad, and Pouya Rezai. "Lithium Detection with Microfluidic Electrochemical Sensor: Proof of Concept Enhancements by Dean Flow and Lithium Manganese Oxide." ECS Meeting Abstracts MA2025-01, no. 59 (2025): 2823. https://doi.org/10.1149/ma2025-01592823mtgabs.

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This abstract presents the proof-of-concept of a novel low-cost and easy-to-fabricate Microfluidic Electrochemical Sensor (MES) capable of detecting and distinguishing lithium in LiCl and LiClO4 formats in water. Lithium Manganese Oxide (LMO) slurry was mixed with Graphene Carbon Paste (GCP) at various concentrations to increase the device electrode’s specificity towards lithium, while novel addition of Dean flow assisted fluid recirculation in the channel and sample-electrode interactions. Recently, lithium detection has become an area of interest from mining to electronic waste applications.
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Gotzias, Anastasios, and Yannis Lazarou. "Graphene Exfoliation in Binary NMP/Water Mixtures by Molecular Dynamics Simulations." ChemPlusChem, February 5, 2024. http://dx.doi.org/10.1002/cplu.202300758.

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We investigate the molecular mechanism underlying the liquid‐phase exfoliation of graphene in aqueous/N‐methyl‐2‐pyrrolidone (NMP) solvent mixtures and calculate the associated free energies, considering different NMP concentrations and exfoliation temperatures. We employ steered molecular dynamics to establish a path for the exfoliation of a graphene sheet from graphite within each solvent environment. Then, we conduct umbrella sampling simulations throughout the created paths to compute the potential of mean force (PMF) of the graphene sheet. As the nanosheet disperses into the liquid, it be
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Ni, Zhi, Shaoyu Zhao, and Jie Yang. "Nonlinear vibration investigation of nanocomposite multilayer perovskite membranes." Nonlinear Dynamics, May 2, 2025. https://doi.org/10.1007/s11071-025-11189-x.

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Abstract Perovskite membranes have great potential in solar cells and flexible electronics due to their excellent light absorption capabilities, efficient charge transport properties, and mechanical flexibility. Owing to the extremely thin structural properties of perovskite membranes and the inevitable mechanical stress and deformation during operation, understanding their vibration characteristics and dynamic response in working conditions is of great significance to their practical application and future development. This study examines the nonlinear vibration and dynamic response of nanoco
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Park, Anseong, Seungtae Kim, Je-Yeon Jung, et al. "Characterization of interactions in battery slurry via MD simulation: Influence on miscibility, morphology, and dispersion with varying ACN content in HNBR." Journal of Chemical Physics 161, no. 23 (2024). https://doi.org/10.1063/5.0244629.

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This paper investigates the phase behaviors, morphology changes, and degree of dispersion of a multi-component cathode battery slurry system. The slurry comprises polyvinylidene fluoride (PVDF) as the binder, hydrogenated nitrile butadiene rubber (HNBR) as the dispersant with varying acrylonitrile (ACN) content, N-methyl-2-pyrrolidone (NMP) as the solvent, and carbon nanotubes/graphene (CNTs/GRA) as the conductive agent. Several analytical methods, including visualized imaging, solubility parameters, radial distribution function (RDF) analysis, β phase PVDF analysis, near-atom analysis, and po
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Dissertations / Theses on the topic "Graphene-NMP Interactions"

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Arunachalam, Vaishali. "Aqueous and Non-aqueous Dispersions of Graphene and Boron Nitride Nanosheets : NMR Measurements and Molecular Dynamics Simulations." Thesis, 2017. http://etd.iisc.ac.in/handle/2005/4306.

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Preface Ever since the discovery of graphene in 2004, there has been considerable interest in two dimensional (2D) nanomaterials due to their distinctive properties and the prospect of potential applications. A 2D-nanomaterial may be obtained from the bulk layered material by procedures that can overcome the van der Waals attractive force that hold adjacent layers together. Historically this was first achieved by micro-mechanical cleavage by the deceptively simple procedure of peeling atomically thin single layers from the bulk material using scotch tape. The procedure, unfortunately, i
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