1 |
Rapid Hydrogen Peroxide Decomposition Using a Microreactor Sun B, Zhu HW, Jin Y, Qiao K, Xu W, Jiang J Chemical Engineering & Technology, 42(1), 252, 2019 |
2 |
Non-woven fabric supported manganese dioxide microparticles as a low-cost, easily recoverable catalyst for hydrogen peroxide decomposition Baldikova E, Pospiskova K, Safarikova M, Safarik I Materials Chemistry and Physics, 203, 280, 2018 |
3 |
Siloxane-based metal-organic frameworks with remarkable catalytic activity in mild environmental photodegradation of azo dyes Racles C, Zaltariov MF, Iacob M, Silion M, Avadanei M, Bargan A Applied Catalysis B: Environmental, 205, 78, 2017 |
4 |
Interfacial contributions of H2O2 decomposition-induced reaction current on mesoporous Pt/TiO2 systems Ray NJ, Styrov VV, Karpov EG Chemical Physics Letters, 689, 111, 2017 |
5 |
Porous MnO2/CNT catalysts with a large specific surface area for the decomposition of hydrogen peroxide Kim MJ, Lee KB, Seo MG, Lee KY Korean Journal of Chemical Engineering, 34(8), 2147, 2017 |
6 |
Composites based on polyethylene terephthalate track-etched membranes and silver as hydrogen peroxide decomposition catalysts Mashentseva AA, Zdorovets MV Petroleum Chemistry, 57(11), 954, 2017 |
7 |
Thermal safety assessment for catalytic decomposition of hydrogen peroxide by dynamic analysis Garcia MAG, Dobrosz-Gomez I, Toro JCO Process Safety and Environmental Protection, 109, 46, 2017 |
8 |
Factors affecting catalytic destruction of H2O2 by hydrogenation and decomposition over Pd catalysts supported on activated carbon cloth (ACC) Gudarzi D, Ratchananusorn W, Turunen I, Heinonen M, Salmi T Catalysis Today, 248, 69, 2015 |
9 |
Catalytic performance of carbon nanotubes in H2O2 decomposition: Experimental and quantum chemical study Voitko K, Toth A, Demianenko E, Dobos G, Berke B, Bakalinska O, Grebenyuk A, Tombacz E, Kuts V, Tarasenko Y, Kartel M, Laszlo K Journal of Colloid and Interface Science, 437, 283, 2015 |
10 |
Disulfonated copolyimide-boehmite nanocomposite fuel cell membranes with improved chemical resistance Park CH, Lee CH Macromolecular Research, 23(1), 45, 2015 |