N. CANER Et Al. , "Sulfonic Acid Functionalized MIL-101 Metal Organic Framework Confined Palladium(0) Nanoparticles Catalyst for the Methanolysis of Ammonia-Borane under Mild Conditions," 6th Catalysis Conference , Bursa, Turkey, pp.141, 2016
CANER, N. Et Al. 2016. Sulfonic Acid Functionalized MIL-101 Metal Organic Framework Confined Palladium(0) Nanoparticles Catalyst for the Methanolysis of Ammonia-Borane under Mild Conditions. 6th Catalysis Conference , (Bursa, Turkey), 141.
CANER, N., BULUT, A., YURDERI, M., & Zahmakıran, M., (2016). Sulfonic Acid Functionalized MIL-101 Metal Organic Framework Confined Palladium(0) Nanoparticles Catalyst for the Methanolysis of Ammonia-Borane under Mild Conditions . 6th Catalysis Conference (pp.141). Bursa, Turkey
CANER, NURDAN Et Al. "Sulfonic Acid Functionalized MIL-101 Metal Organic Framework Confined Palladium(0) Nanoparticles Catalyst for the Methanolysis of Ammonia-Borane under Mild Conditions," 6th Catalysis Conference, Bursa, Turkey, 2016
CANER, NURDAN Et Al. "Sulfonic Acid Functionalized MIL-101 Metal Organic Framework Confined Palladium(0) Nanoparticles Catalyst for the Methanolysis of Ammonia-Borane under Mild Conditions." 6th Catalysis Conference , Bursa, Turkey, pp.141, 2016
CANER, N. Et Al. (2016) . "Sulfonic Acid Functionalized MIL-101 Metal Organic Framework Confined Palladium(0) Nanoparticles Catalyst for the Methanolysis of Ammonia-Borane under Mild Conditions." 6th Catalysis Conference , Bursa, Turkey, p.141.
@conferencepaper{conferencepaper, author={NURDAN CANER Et Al. }, title={Sulfonic Acid Functionalized MIL-101 Metal Organic Framework Confined Palladium(0) Nanoparticles Catalyst for the Methanolysis of Ammonia-Borane under Mild Conditions}, congress name={6th Catalysis Conference}, city={Bursa}, country={Turkey}, year={2016}, pages={141} }