G. Günal Et Al. , "Comparative DNA isolation behaviours of silica and polymer based sorbents in batch fashion: monodisperse silica microspheres with bimodal pore size distribution as a new sorbent for DNA isolation," Artificial Cells, Nanomedicine and Biotechnology , vol.46, no.1, pp.178-184, 2018
Günal, G. Et Al. 2018. Comparative DNA isolation behaviours of silica and polymer based sorbents in batch fashion: monodisperse silica microspheres with bimodal pore size distribution as a new sorbent for DNA isolation. Artificial Cells, Nanomedicine and Biotechnology , vol.46, no.1 , 178-184.
Günal, G., Kip, Ç., Eda Öğüt, S., İlhan, H., Kibar, G., & Tuncel, A., (2018). Comparative DNA isolation behaviours of silica and polymer based sorbents in batch fashion: monodisperse silica microspheres with bimodal pore size distribution as a new sorbent for DNA isolation. Artificial Cells, Nanomedicine and Biotechnology , vol.46, no.1, 178-184.
Günal, GÜLÇİN Et Al. "Comparative DNA isolation behaviours of silica and polymer based sorbents in batch fashion: monodisperse silica microspheres with bimodal pore size distribution as a new sorbent for DNA isolation," Artificial Cells, Nanomedicine and Biotechnology , vol.46, no.1, 178-184, 2018
Günal, GÜLÇİN G. Et Al. "Comparative DNA isolation behaviours of silica and polymer based sorbents in batch fashion: monodisperse silica microspheres with bimodal pore size distribution as a new sorbent for DNA isolation." Artificial Cells, Nanomedicine and Biotechnology , vol.46, no.1, pp.178-184, 2018
Günal, G. Et Al. (2018) . "Comparative DNA isolation behaviours of silica and polymer based sorbents in batch fashion: monodisperse silica microspheres with bimodal pore size distribution as a new sorbent for DNA isolation." Artificial Cells, Nanomedicine and Biotechnology , vol.46, no.1, pp.178-184.
@article{article, author={GÜLÇİN GÜNAL KARATAŞ Et Al. }, title={Comparative DNA isolation behaviours of silica and polymer based sorbents in batch fashion: monodisperse silica microspheres with bimodal pore size distribution as a new sorbent for DNA isolation}, journal={Artificial Cells, Nanomedicine and Biotechnology}, year=2018, pages={178-184} }