Ca3Co4O9 is a p-type semiconducting material that is well-known for its thermoelectric (TE), magnetic, electronic, and electro-optic properties. In this study, sol-gel autoignition was used to prepare Ca3Co4O9 at different calcination temperatures (773, 873, 973, and 1073 K) and time (4, 6, 8, 10, 12, and 14 h) using starch as a fuel. The phase and microstructure of the prepared Ca3Co4O9 powder were investigated. Thermogravimetry.differential thermal analysis (TGA) confirms that the final weight loss occurred at 1073 K to form Ca3Co4O9 stable powder. The variable-pressure scanning electron microscopy (VP-SEM) images show that the size of powder particles increases from 1.15 to 1.47 μm as calcination time increases from 4 to 12 h, and the si...
We report the synthesis of Ca3Co4O9 ceramics by the Sol-Gel method with citric acid as the chelati...
This work presents a short and very efficientmethod to produce high performance textured Ca3Co4O9the...
Single-phase Ca3Co4O9 with a high porosity, having a ZT of 0.09 at 627 °C, was successfully prepared...
Ca3Co4O9 is a p-type semiconductor and a promising thermoelectric material with misfit layer structu...
In this study, nanoparticles of Bi doped Ca3-xCo4O9 [Ca3-xBixCo4O9 where x=0, 0.2, 0.4 and 0.6] were...
Oxide-based thermoelectric (TE) materials are considered as one of the most eco-friendly materials f...
Ca3Co4O9 is a potential high temperature thermoelectric material. We explore the hydrothermal treatm...
This work explores the possibilities for a further enhancement of the thermoelectric properties of C...
The need for energy nowadays is causing a heated debate in our society. One way to increase the ener...
Ca 2.93 Na 0.07 Co 4 O y /x wt% K 2 CO 3 (x = 0.00, 0.01, and 0.03) polycrystalline ceramics were pr...
Thermoelectric materials can convert waste heat into usable electricity without a high operating cos...
Ca3−x AlxCo4O9 polycrystalline ceramics with a small amount of Al (0 ≤ x ≤ 0.4) were fabricated usin...
In this study, Ca3−xAgxCo4O9 ceramics were synthesized by the sol⁻gel method combined wi...
Three different synthesis methods producing nanometric grain sizes, coprecipitation with ammonium ca...
In this work, our effort was to improve the thermoelectric properties of Ca3Co4O9 thermoelectric mat...
We report the synthesis of Ca3Co4O9 ceramics by the Sol-Gel method with citric acid as the chelati...
This work presents a short and very efficientmethod to produce high performance textured Ca3Co4O9the...
Single-phase Ca3Co4O9 with a high porosity, having a ZT of 0.09 at 627 °C, was successfully prepared...
Ca3Co4O9 is a p-type semiconductor and a promising thermoelectric material with misfit layer structu...
In this study, nanoparticles of Bi doped Ca3-xCo4O9 [Ca3-xBixCo4O9 where x=0, 0.2, 0.4 and 0.6] were...
Oxide-based thermoelectric (TE) materials are considered as one of the most eco-friendly materials f...
Ca3Co4O9 is a potential high temperature thermoelectric material. We explore the hydrothermal treatm...
This work explores the possibilities for a further enhancement of the thermoelectric properties of C...
The need for energy nowadays is causing a heated debate in our society. One way to increase the ener...
Ca 2.93 Na 0.07 Co 4 O y /x wt% K 2 CO 3 (x = 0.00, 0.01, and 0.03) polycrystalline ceramics were pr...
Thermoelectric materials can convert waste heat into usable electricity without a high operating cos...
Ca3−x AlxCo4O9 polycrystalline ceramics with a small amount of Al (0 ≤ x ≤ 0.4) were fabricated usin...
In this study, Ca3−xAgxCo4O9 ceramics were synthesized by the sol⁻gel method combined wi...
Three different synthesis methods producing nanometric grain sizes, coprecipitation with ammonium ca...
In this work, our effort was to improve the thermoelectric properties of Ca3Co4O9 thermoelectric mat...
We report the synthesis of Ca3Co4O9 ceramics by the Sol-Gel method with citric acid as the chelati...
This work presents a short and very efficientmethod to produce high performance textured Ca3Co4O9the...
Single-phase Ca3Co4O9 with a high porosity, having a ZT of 0.09 at 627 °C, was successfully prepared...