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A commercial aromatic membrane was modified by grafting nitrogen-doped graphene oxide quantum dots (N-GOQDs) to enhance chlorine resistance, embedding two-dimensional MXene Ti3C2Tx, introducing synthetically reductive thioether units and oxidized graphitic carbon nitride (OGCN).
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Here, flexible surface-enhanced Raman scattering (SERS) substrates composed of gold nanoparticles (AuNPs) and two-dimensional MXene Ti3C2TX nanosheets have been designed.
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Mxene Ti3c2tx sentence examples within 2d Mxene Ti3c2tx
Polymer composites of emerging nanomaterials such as 2D MXene Ti3C2Tx are promising candidates for manufacturing high-performance electromagnetic wave absorption materials.
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Herein, an MXene-based melamine sponge (MS) was facilely fabricated by hydrogen bonding interaction between the amino groups on the skeleton of the MS and the polar groups on the surface of the as-exfoliated 2D MXene Ti3C2Tx nanosheets.
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Mxene Ti3c2tx sentence examples within Layer Mxene Ti3c2tx
Based on the experimental results, a simulation model is built to observe the radiation energy transformation in DASCs and results show that better photothermal performance of thin-layer MXene Ti3C2Tx stems from its stronger localized surface plasmon resonance (LSPR) effect.
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The few-layer MXene Ti3C2Tx was fabricated and utilized as a saturable absorber (SA) to realize passive Q-switched visible bulk laser covering the spectral range of orange (607 nm), red (639 nm), and deep red (721 nm).
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Mxene Ti3c2tx sentence examples within mxene ti3c2tx nanosheet
To further improve the reaction rate, well-defined heterostructures based on plasmonic gold nanoparticles on MXene Ti3C2Tx nanosheets (Au NPs@Ti3C2Tx) were rationally designed and systematically investigated to improve the performance of the oxygen evolution reaction (OER).
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However, two-dimensional (2D) MXene Ti3C2Tx nanosheet is liable to stack together and lose the high specific surface area, which limits its gas sensing performance.
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Wdeemonstrate an all-fiber temperature sensor utilizing a cascaded Mach- Zehnder interferometer and ring resonator with MXene Ti3C2Tx, showing a high conversion efficiency of 0.
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MXene Ti3C2Tx have been used in flexible electronic devices for their unique properties such as high conductivity, excellent mechanical performance, flexibility, and good hydrophilicity, but less research has focused on MXene-based cotton fabric strain sensors.
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The commonly used MXene Ti3C2Tx was prepared by selective etching and its structure and morphology were studied in detail.
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Here, we use two-dimensional transition metal carbides (MXene Ti3C2Tx) with various termination groups (Tx) to tune the work function (WF) of the perovskite absorber and the TiO2 electron transport layer (ETL), and to engineer the perovskite/ETL interface.
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We report simple and compact all-fiber erbium-doped soliton and dispersion-managed soliton femtosecond lasers mode-locked by the MXene Ti3C2Tx.
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The authors mixed the MXene Ti3C2Tx (where Tx is a functional group) with carboxymethylated cellulose nanofibrils (CNFs), which in their film form have high toughness and can withstand large strains.
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