Results 151 to 160 of about 23,853 (173)
Effect of the Ti2CT x (T x = O, OH, and H) Functionalization on the Formation of (TiO2)5/Ti2CT x Composites. [PDF]
García-Romeral N+2 more
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Confinement-induced Ni-based MOF formed on Ti3C2Tx MXene support for enhanced capacitive deionization of chromium(VI). [PDF]
Zhang X, Wang Z, Guo X.
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Molecular Dynamics Study of Bending Deformation of Mo2Ti2C3 and Ti4C3 (MXenes) Nanoribbons. [PDF]
Borysiuk V, Lyashenko IA, Popov VL.
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Qualitative and quantitative electrochemiluminescence evaluation of trace Pt single-atom in MXenes. [PDF]
Shi Y, Liu Y.
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Advanced Materials, 2022
AbstractEnergy harvesting modules play an increasingly important role in the development of autonomous self‐powered microelectronic devices. MXenes (i.e., 2D transition metal carbide/nitride) have recently emerged as promising candidates for energy applications due to their excellent electronic conductivity, large specific surface area, and tunable ...
Yizhou Wang+5 more
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AbstractEnergy harvesting modules play an increasingly important role in the development of autonomous self‐powered microelectronic devices. MXenes (i.e., 2D transition metal carbide/nitride) have recently emerged as promising candidates for energy applications due to their excellent electronic conductivity, large specific surface area, and tunable ...
Yizhou Wang+5 more
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Ultrastretchable MXene Microsupercapacitors
Small, 2023AbstractStretchable microsupercapacitors represent emerging miniaturized energy‐storage devices for next‐generation deformable electronics. Two‐dimensional (2D) transition metal carbides (MXenes) are considered attractive electrode materials due to their metallic conductivity, hydrophilic surfaces, and excellent processability.
Menglu Wang+7 more
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Small Methods, 2023
AbstractRecently, anion storage materials have gained significant attention owing to the widened cell voltage and additional anion storing capacity for a large energy density. MXenes are considered as the emerging anion storing materials owing to their sufficient interlayer spacing, rich surface chemistries, tunable structures, remarkable ...
Guanyao Wang+4 more
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AbstractRecently, anion storage materials have gained significant attention owing to the widened cell voltage and additional anion storing capacity for a large energy density. MXenes are considered as the emerging anion storing materials owing to their sufficient interlayer spacing, rich surface chemistries, tunable structures, remarkable ...
Guanyao Wang+4 more
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ACS Biomaterials Science & Engineering, 2023
MXene materials, which consist of nitrides, carbides, or carbonitrides of transition metals, possess a distinctive multilayered structure resulting from the specific etching of the "A" layer from MAX phase precursors. This unique structure allows for tunable properties through intercalation and surface modification.
Moein Safarkhani+3 more
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MXene materials, which consist of nitrides, carbides, or carbonitrides of transition metals, possess a distinctive multilayered structure resulting from the specific etching of the "A" layer from MAX phase precursors. This unique structure allows for tunable properties through intercalation and surface modification.
Moein Safarkhani+3 more
openaire +2 more sources
Holdups in Nitride MXene's Development and Limitations in Advancing the Field of MXene
Small, 2022AbstractAs nanomaterials are becoming a key component in various electronics, 2D nanomaterials are emerging and attracting tremendous attention in the scientific community due to their unique physical, chemical, and structural properties. In recent years, a new family of 2D carbides and nitrides, known as MXenes, has become the center of attention for ...
Denis Johnson+3 more
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Journal of Materials Chemistry A, 2019
MXenes, 2D transition metal carbides/nitrides, with superior electrical, optical, and mechanical properties is a recent discovery and have already been deployed in a variety of fields such as batteries, composites, sensors and medical devices.
Massoud Malaki+2 more
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MXenes, 2D transition metal carbides/nitrides, with superior electrical, optical, and mechanical properties is a recent discovery and have already been deployed in a variety of fields such as batteries, composites, sensors and medical devices.
Massoud Malaki+2 more
openaire +2 more sources