O. Gencel Et Al. , "Biocomposite foams consisting of microencapsulated phase change materials for enhanced climatic regulation with reduced carbon dioxide emissions in buildings," Construction and Building Materials , vol.448, 2024
Gencel, O. Et Al. 2024. Biocomposite foams consisting of microencapsulated phase change materials for enhanced climatic regulation with reduced carbon dioxide emissions in buildings. Construction and Building Materials , vol.448 .
Gencel, O., Aydoğmuş, E., Güler, O., Ustaoğlu, A., Sarı, A., Hekimoğlu, G., ... Subaşı, S.(2024). Biocomposite foams consisting of microencapsulated phase change materials for enhanced climatic regulation with reduced carbon dioxide emissions in buildings. Construction and Building Materials , vol.448.
Gencel, Osman Et Al. "Biocomposite foams consisting of microencapsulated phase change materials for enhanced climatic regulation with reduced carbon dioxide emissions in buildings," Construction and Building Materials , vol.448, 2024
Gencel, Osman Et Al. "Biocomposite foams consisting of microencapsulated phase change materials for enhanced climatic regulation with reduced carbon dioxide emissions in buildings." Construction and Building Materials , vol.448, 2024
Gencel, O. Et Al. (2024) . "Biocomposite foams consisting of microencapsulated phase change materials for enhanced climatic regulation with reduced carbon dioxide emissions in buildings." Construction and Building Materials , vol.448.
@article{article, author={Osman Gencel Et Al. }, title={Biocomposite foams consisting of microencapsulated phase change materials for enhanced climatic regulation with reduced carbon dioxide emissions in buildings}, journal={Construction and Building Materials}, year=2024}