B. Binay Et Al. , "Highly stable and reusable immobilized formate dehydrogenases: Promising biocatalysts for in situ regeneration of NADH," BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY , vol.12, pp.271-277, 2016
Binay, B. Et Al. 2016. Highly stable and reusable immobilized formate dehydrogenases: Promising biocatalysts for in situ regeneration of NADH. BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY , vol.12 , 271-277.
Binay, B., ALAGÖZ, D., YILDIRIM, D., Celik, A., & TÜKEL, S. S., (2016). Highly stable and reusable immobilized formate dehydrogenases: Promising biocatalysts for in situ regeneration of NADH. BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY , vol.12, 271-277.
Binay, Baris Et Al. "Highly stable and reusable immobilized formate dehydrogenases: Promising biocatalysts for in situ regeneration of NADH," BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY , vol.12, 271-277, 2016
Binay, Baris Et Al. "Highly stable and reusable immobilized formate dehydrogenases: Promising biocatalysts for in situ regeneration of NADH." BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY , vol.12, pp.271-277, 2016
Binay, B. Et Al. (2016) . "Highly stable and reusable immobilized formate dehydrogenases: Promising biocatalysts for in situ regeneration of NADH." BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY , vol.12, pp.271-277.
@article{article, author={Baris Binay Et Al. }, title={Highly stable and reusable immobilized formate dehydrogenases: Promising biocatalysts for in situ regeneration of NADH}, journal={BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY}, year=2016, pages={271-277} }