High-entropy carbide powders were produced by a two-step synthesis process consisting of carbothermal reduction followed by solid solution formation. Nominally pure (Hf,Zr,Ti,Ta,Nb)C in a single-phase rock salt structure had an average particle size of about 550 nm and an oxygen content of 0.2 wt%. The fine particle size was due to the use of high-energy ball milling prior to carbothermal reduction combined with the relatively low synthesis temperature of 1600 °C. Oxygen content was minimized by completion of the carbothermal reduction reactions under vacuum. This is the first report of synthesizing a high-entropy carbide powder using individual transition metal oxides and carbon as precursors
Bulk samples of equiatomic, hexanery (5-metal), high-entropy refractory carbides were fabricated usi...
Bulk samples of equiatomic, hexanery (5-metal), high-entropy refractory carbides were fabricated usi...
The research was supported by the EPSRC Programme Grant XMAT [EP/K008749/2]. The authors gratefully ...
Preparation of high-entropy carbides in bulk quantities and in powder form via simple methods at rel...
Preparation of high-entropy carbides in bulk quantities and in powder form via simple methods at rel...
Dense (Hf, Zr, Ti, Ta, Nb)C high-entropy ceramics were produced by hot pressing (HP) of carbide powd...
This thesis aimed to streamline the method of the preparation of high entropy carbides. The simplifi...
High-entropy diboride powders were produced by a two-step synthesis process consisting of boro/carbo...
In present work, a producing method for high entropy carbides in melted salts is suggested. The meth...
A dual-phase high-entropy boride (HEB)/carbide (HEC) ceramic with a fine grain size was synthesized ...
A novel, homogeneous, nanostructured and equiatomic (TiZrHfVNb)C High Entropy Carbide (HEC) was succ...
This master thesis is a follow-up of my bachelor's project, where the goal was to prepare high entro...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
The high-entropy carbides (HECs) are reviewed in terms of the crystal structure, powder synthesis, d...
Bulk samples of equiatomic, hexanery (5-metal), high-entropy refractory carbides were fabricated usi...
Bulk samples of equiatomic, hexanery (5-metal), high-entropy refractory carbides were fabricated usi...
The research was supported by the EPSRC Programme Grant XMAT [EP/K008749/2]. The authors gratefully ...
Preparation of high-entropy carbides in bulk quantities and in powder form via simple methods at rel...
Preparation of high-entropy carbides in bulk quantities and in powder form via simple methods at rel...
Dense (Hf, Zr, Ti, Ta, Nb)C high-entropy ceramics were produced by hot pressing (HP) of carbide powd...
This thesis aimed to streamline the method of the preparation of high entropy carbides. The simplifi...
High-entropy diboride powders were produced by a two-step synthesis process consisting of boro/carbo...
In present work, a producing method for high entropy carbides in melted salts is suggested. The meth...
A dual-phase high-entropy boride (HEB)/carbide (HEC) ceramic with a fine grain size was synthesized ...
A novel, homogeneous, nanostructured and equiatomic (TiZrHfVNb)C High Entropy Carbide (HEC) was succ...
This master thesis is a follow-up of my bachelor's project, where the goal was to prepare high entro...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
The high-entropy carbides (HECs) are reviewed in terms of the crystal structure, powder synthesis, d...
Bulk samples of equiatomic, hexanery (5-metal), high-entropy refractory carbides were fabricated usi...
Bulk samples of equiatomic, hexanery (5-metal), high-entropy refractory carbides were fabricated usi...
The research was supported by the EPSRC Programme Grant XMAT [EP/K008749/2]. The authors gratefully ...