화학공학소재연구정보센터
검색결과 : 23건
No. Article
1 Catalytic production of hexamethylenediamine from renewable feedstocks
Lee JH, Lee YH, Kim SS, Kwon EE, Lin KYA
Korean Journal of Chemical Engineering, 38(6), 1079, 2021
2 Metal oxide sub-nanoclusters decorated Ni catalyst for selective hydrogenation of adiponitrile to hexamethylenediamine
Zhang CX, Luo JJ, Zhou YA, Jiang Q, Liang CH
Journal of Catalysis, 381, 14, 2020
3 The role of impurities in the La2O3 catalysed carboxylation of crude glycerol
Razali NA, Conte M, McGregor J
Catalysis Letters, 149(5), 1403, 2019
4 Functionalized multi-walled carbon nanotubes supported Ni-based catalysts for adiponitrile selective hydrogenation to 6-aminohexanenitrile and 1,6-hexanediamine: Switching selectivity with [Bmim]OH
Lv Y, Cui HS, Liu PL, Hao F, Xiong W, Luo HA
Journal of Catalysis, 372, 330, 2019
5 Multi-walled carbon nanotubes supported nickel nanoparticles doped with magnesia and copper for adiponitrile hydrogenation with high activity and chemoselectivity under mild conditions
Lv Y, Li J, Feng S, Liu PL, Hao F, Xiong W, Luo HA
Chemical Engineering Journal, 346, 203, 2018
6 Robust and sulfur-containing ingredient surface film to improve the electrochemical performance of LiDFOB-based high-voltage electrolyte
Zhao DN, Wang P, Cui XL, Mao LP, Li CL, Li SY
Electrochimica Acta, 260, 536, 2018
7 Towards high-voltage Li-ion batteries: Reversible cycling of graphite anodes and Li-ion batteries in adiponitrile-based electrolytes
Farhat D, Maibach J, Eriksson H, Edstrom K, Lemordant D, Ghamouss F
Electrochimica Acta, 281, 299, 2018
8 The effects of the functional electrolyte additive on the cathode material Na0.76Ni0.3Fe0.4Mn0.3O2 for sodium-ion batteries
Song XN, Meng T, Deng YM, Gao AM, Nan JM, Shu D, Yi FY
Electrochimica Acta, 281, 370, 2018
9 Adiponitrile-based electrolytes for high voltage, graphite-based Li-ion battery
Ehteshami N, Eguia-Barrio A, de Meatza I, Porcher W, Paillard E
Journal of Power Sources, 397, 52, 2018
10 Electrochemical effect and mechanism of adiponitrile additive for high-voltage electrolyte
Li SY, Zhao DN, Wang P, Cui XL, Tang FJ
Electrochimica Acta, 222, 668, 2016