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- Q92457878 description "artículu científicu espublizáu en mayu de 2019" @default.
- Q92457878 description "scientific article published on 24 May 2019" @default.
- Q92457878 description "wetenschappelijk artikel" @default.
- Q92457878 description "наукова стаття, опублікована 24 травня 2019" @default.
- Q92457878 name "Ex situ synthesis and characterization of a polymer-carbon nanotube-based hybrid nanocatalyst with one of the highest catalytic activities and stabilities for the hydrolytic dehydrogenation of hydrazine-borane at room temperature conditions" @default.
- Q92457878 name "Ex situ synthesis and characterization of a polymer-carbon nanotube-based hybrid nanocatalyst with one of the highest catalytic activities and stabilities for the hydrolytic dehydrogenation of hydrazine-borane at room temperature conditions" @default.
- Q92457878 type Item @default.
- Q92457878 label "Ex situ synthesis and characterization of a polymer-carbon nanotube-based hybrid nanocatalyst with one of the highest catalytic activities and stabilities for the hydrolytic dehydrogenation of hydrazine-borane at room temperature conditions" @default.
- Q92457878 label "Ex situ synthesis and characterization of a polymer-carbon nanotube-based hybrid nanocatalyst with one of the highest catalytic activities and stabilities for the hydrolytic dehydrogenation of hydrazine-borane at room temperature conditions" @default.
- Q92457878 prefLabel "Ex situ synthesis and characterization of a polymer-carbon nanotube-based hybrid nanocatalyst with one of the highest catalytic activities and stabilities for the hydrolytic dehydrogenation of hydrazine-borane at room temperature conditions" @default.
- Q92457878 prefLabel "Ex situ synthesis and characterization of a polymer-carbon nanotube-based hybrid nanocatalyst with one of the highest catalytic activities and stabilities for the hydrolytic dehydrogenation of hydrazine-borane at room temperature conditions" @default.
- Q92457878 P1433 Q92457878-1514CFF7-01E9-42E0-83C8-59C9B7E21866 @default.
- Q92457878 P1476 Q92457878-0B28A48C-B831-4BC8-AF98-2B33E2C28A79 @default.
- Q92457878 P2093 Q92457878-4B767414-8776-4A46-AB72-CD75E3D174F9 @default.
- Q92457878 P2093 Q92457878-98CBBFBC-2C50-4AED-9440-B256793208FD @default.
- Q92457878 P2093 Q92457878-BCB76546-A61F-47F7-AA2F-FE9F68CDC137 @default.
- Q92457878 P304 Q92457878-B9437C0B-F6B8-49BB-9A06-16BFF47A4AE3 @default.
- Q92457878 P31 Q92457878-728AD96E-2B81-46FE-997E-FEE139F0C4D8 @default.
- Q92457878 P356 Q92457878-79F6B529-37FE-4A40-B68E-EAC88166C10B @default.
- Q92457878 P478 Q92457878-74A9BA53-12CC-403B-AEA3-990B52C889D0 @default.
- Q92457878 P50 Q92457878-5F887A61-4A75-4BE3-8229-99E9071BF415 @default.
- Q92457878 P50 Q92457878-8C14449C-F92A-4E10-8292-2B6426F259DA @default.
- Q92457878 P577 Q92457878-B17044BC-7D55-4CB4-B444-6784ED2287F7 @default.
- Q92457878 P698 Q92457878-5878A564-A63A-49BE-B4E6-984F64C5D3C1 @default.
- Q92457878 P921 Q92457878-0A4CF05F-EC8B-48B4-9472-629ABE3045AE @default.
- Q92457878 P356 J.JCIS.2019.05.075 @default.
- Q92457878 P698 31152963 @default.
- Q92457878 P1433 Q3902043 @default.
- Q92457878 P1476 "Ex situ synthesis and characterization of a polymer-carbon nanotube-based hybrid nanocatalyst with one of the highest catalytic activities and stabilities for the hydrolytic dehydrogenation of hydrazine-borane at room temperature conditions" @default.
- Q92457878 P2093 "Buse Demirkan" @default.
- Q92457878 P2093 "Esra Kuyuldar" @default.
- Q92457878 P2093 "Yaşar Karataş" @default.
- Q92457878 P304 "432-438" @default.
- Q92457878 P31 Q13442814 @default.
- Q92457878 P356 "10.1016/J.JCIS.2019.05.075" @default.
- Q92457878 P478 "552" @default.
- Q92457878 P50 Q85295608 @default.
- Q92457878 P50 Q89791340 @default.
- Q92457878 P577 "2019-05-24T00:00:00Z" @default.
- Q92457878 P698 "31152963" @default.
- Q92457878 P921 Q1778729 @default.