Gioti, C.; Karakassides, A.; Asimakopoulos, G.; Baikousi, M.; Salmas, C.E.; Viskadourakis, Z.; Kenanakis, G.; Karakassides, M.A.
Multifunctional Carbon-Based Hybrid Foams for Shape-Stabilization of Phase Change Materials, Thermal Energy Storage, and Electromagnetic Interference Shielding Functions. Micro 2022, 2, 390-409.
https://doi.org/10.3390/micro2030026
AMA Style
Gioti C, Karakassides A, Asimakopoulos G, Baikousi M, Salmas CE, Viskadourakis Z, Kenanakis G, Karakassides MA.
Multifunctional Carbon-Based Hybrid Foams for Shape-Stabilization of Phase Change Materials, Thermal Energy Storage, and Electromagnetic Interference Shielding Functions. Micro. 2022; 2(3):390-409.
https://doi.org/10.3390/micro2030026
Chicago/Turabian Style
Gioti, Christina, Anastasios Karakassides, Georgios Asimakopoulos, Maria Baikousi, Constantinos E. Salmas, Zacharias Viskadourakis, George Kenanakis, and Michael A. Karakassides.
2022. "Multifunctional Carbon-Based Hybrid Foams for Shape-Stabilization of Phase Change Materials, Thermal Energy Storage, and Electromagnetic Interference Shielding Functions" Micro 2, no. 3: 390-409.
https://doi.org/10.3390/micro2030026
APA Style
Gioti, C., Karakassides, A., Asimakopoulos, G., Baikousi, M., Salmas, C. E., Viskadourakis, Z., Kenanakis, G., & Karakassides, M. A.
(2022). Multifunctional Carbon-Based Hybrid Foams for Shape-Stabilization of Phase Change Materials, Thermal Energy Storage, and Electromagnetic Interference Shielding Functions. Micro, 2(3), 390-409.
https://doi.org/10.3390/micro2030026