E. YILMAZ And G. SARP, "Graphene-like MoS2-modified magnetic C-dot nanoflowers: An efficient magnetic solid-phase extraction adsorbent for monitoring of trace amounts of ibuprofen," Analytical Methods , vol.12, no.12, pp.1570-1578, 2020
YILMAZ, E. And SARP, G. 2020. Graphene-like MoS2-modified magnetic C-dot nanoflowers: An efficient magnetic solid-phase extraction adsorbent for monitoring of trace amounts of ibuprofen. Analytical Methods , vol.12, no.12 , 1570-1578.
YILMAZ, E., & SARP, G., (2020). Graphene-like MoS2-modified magnetic C-dot nanoflowers: An efficient magnetic solid-phase extraction adsorbent for monitoring of trace amounts of ibuprofen. Analytical Methods , vol.12, no.12, 1570-1578.
YILMAZ, ERKAN, And GÖKHAN SARP. "Graphene-like MoS2-modified magnetic C-dot nanoflowers: An efficient magnetic solid-phase extraction adsorbent for monitoring of trace amounts of ibuprofen," Analytical Methods , vol.12, no.12, 1570-1578, 2020
YILMAZ, ERKAN And SARP, GÖKHAN. "Graphene-like MoS2-modified magnetic C-dot nanoflowers: An efficient magnetic solid-phase extraction adsorbent for monitoring of trace amounts of ibuprofen." Analytical Methods , vol.12, no.12, pp.1570-1578, 2020
YILMAZ, E. And SARP, G. (2020) . "Graphene-like MoS2-modified magnetic C-dot nanoflowers: An efficient magnetic solid-phase extraction adsorbent for monitoring of trace amounts of ibuprofen." Analytical Methods , vol.12, no.12, pp.1570-1578.
@article{article, author={ERKAN YILMAZ And author={GÖKHAN SARP}, title={Graphene-like MoS2-modified magnetic C-dot nanoflowers: An efficient magnetic solid-phase extraction adsorbent for monitoring of trace amounts of ibuprofen}, journal={Analytical Methods}, year=2020, pages={1570-1578} }