1 | YANG H, LOMBARDO L, LUO W, et al. Hydrogen storage properties of various carbon supported NaBH4 prepared via metathesis[J]. International Journal of Hydrogen Energy, 2018, 43(14): 7108-7116. | 2 | 王培灿, 雷青, 刘帅, 等. 电解水制氢MoS2催化剂研究与氢能技术展望[J]. 化工进展, 2019, 38(1): 278-290. | 2 | WANG Peican, LEI Qin, LIU Shuai, et al. A new material of magnesium complexes——magnesium based metal organic frameworks[J]. Chemical Industry and Engineering Progress, 2019, 38(1): 278-290. | 3 | SHI Y, YANG A F, CAO C S, et al. Applications of MOFs: recent advances in photocatalytic hydrogen production from water[J]. Coordination Chemistry Reviews, 2019, 390: 50-75. | 4 | LIU H, YANG F L, YANG B C, et al. Rapid hydrogen generation through aluminum-water reaction in alkali solution[J]. Catalysis Today, 2018, 318: 52-58. | 5 | TAN Z H, OUYANG L Z, HUANG J M, et al. Hydrogen generation via hydrolysis of Mg2Si[J]. Journal of Alloys and Compounds, 2019, 770: 108-115. | 6 | 赵华博, 李民, 罗刚. 镍基乙醇水汽重整催化剂:机理、失活与构效关系[J]. 化工进展, 2018, 37(2): 419-428. | 6 | ZHAO Huabo, LI Min, LUO Gang. Nickel based ethanol steam reforming catalysts: mechanism, deactivation and structure-activity relationship[J]. Chemical Industry and Engineering Progress, 2018, 37(2): 419-428. | 7 | KIM Y W, KIM D H. Understanding the effect of Pd size on formic acid dehydrogenation via size-controlled Pd/C catalysts prepared by NaBH4 treatment[J]. Applied Catalysis B: Environmental, 2019, 244: 684-693. | 8 | LIANG X, NG S P, DING N, et al. Strain-induced switch for hydrogen storage in cobalt-decorated nitrogen-doped graphene[J]. Applied Surface Science, 2019, 473: 174-181. | 9 | KAUR M, PAL K. Review on hydrogen storage materials and methods from an electrochemical viewpoint[J]. Journal of Energy Storage, 2019, 23: 234-249. | 10 | 韩森建, 王海增. 一类新型镁材料——镁基金属有机骨架材料[J]. 化工进展, 2018, 37(9): 3437-3445. | 10 | HAN Senjian, WANG Haizeng. A new material of magnesium complexes——magnesium based metal organic frameworks[J]. Chemical Industry and Engineering Progress, 2018, 37(9): 3437-3445. | 11 | MOLKOV V, DADASHZADEH M, MAKAROV D. Physical model of on board hydrogen storage tank thermal behaviour during fuelling[J]. International Journal of Hydrogen Energy, 2019, 44(8): 4374-4384. | 12 | WIJAYANTA A T, ODA T, PURNOMO C W, et al. Liquid hydrogen, methylcyclohexane, and ammonia as potential hydrogen storage: comparison review[J]. International Journal of Hydrogen Energy, 2019, 44(29): 15026-15044. | 13 | SHEN X C, WANG Q, WU Q Q, et al. CoB supported on Ag-activated TiO2 as a highly active catalyst for hydrolysis of alkaline NaBH4 solution[J]. Energy, 2015, 90: 464-474. | 14 | 魏磊, 马麦霞, 付君宇, 等. Raney Ni催化碱性硼氢化钠溶液水解制氢[J]. 化工进展, 2017, 36(12): 4462-4467. | 14 | WEI Lei, MA Maixia, FU Junyu, et al. Hydrogen production from hydrolysis of alkaline sodium borohydride solution using Raney nickel catalyst[J]. Chemical Industry and Engineering Progress, 2017, 36(12): 4462-4467. | 15 | KOJIMA Y, SUZUKI K, KAWAI Y. Hydrogen generation from lithium borohydride solution over nano-sized platinum dispersed on LiCoO2[J]. Journal of Power Sources, 2006, 155(2): 325-328. | 16 | AMENDOLA S C, SHARP-GOLDMAN S L, JANJUA M S, et al. A safe, portable, hydrogen gas generator using aqueous borohydride solution and Ru catalyst[J]. International Journal of Hydrogen Energy, 2000, 25(10): 969-975. | 17 | BOZKURT G, ?ZER A, YURTCAN A B. Development of effective catalysts for hydrogen generation from sodium borohydride: Ru, Pt, Pd nanoparticles supported on Co3O4[J]. Energy, 2019, 180: 702-713. | 18 | WANG L N, LI Z, ZHANG Y, et al. Hydrogen generation from alkaline NaBH4 solution using electroless-deposited Co-Ni-W-P/γ-Al2O3 as catalysts[J]. Journal of Alloys and Compounds, 2017, 702: 649-658. | 19 | WU C, BAI Y, WU F. Fast hydrogen generation from NaBH4 solution accelerated by ferric catalysts[J]. Materials Letters, 2008, 62(27): 4242-4244. | 20 | SINGH P K, DAS T. Generation of hydrogen from NaBH4 solution using metal-boride (CoB, FeB, NiB) catalysts[J]. International Journal of Hydrogen Energy, 2017, 42(49): 29360-29369. | 21 | GUO S Q, WU Q Q, SUN J, et al. Highly stable and controllable CoB/Ni-foam catalysts for hydrogen generation from alkaline NaBH4 solution[J]. International Journal of Hydrogen Energy, 2017, 42(33): 21063-21072. | 22 | LI F, LI Q M, KIM H. CoB/open-CNTs catalysts for hydrogen generation from alkaline NaBH4 solution[J]. Chemical Engineering Journal, 2012, 210: 316-324. | 23 | LIANG Z, LI Q, LI F, et al. Hydrogen generation from hydrolysis of NaBH4 based on high stable NiB/NiFe2O4 catalyst[J]. International Journal of Hydrogen Energy, 2017, 42(7): 3971-3980. | 24 | LEE J, SHIN H, CHOI K S, et al. Carbon layer supported nickel catalyst for sodium borohydride (NaBH4) dehydrogenation[J]. International Journal of Hydrogen Energy, 2019, 44(5): 2943-2950. | 25 | LU Y C, CHEN M S, CHEN Y W. Hydrogen generation by sodium borohydride hydrolysis on nanosized CoB catalysts supported on TiO2, Al2O3 and CeO2[J]. International Journal of Hydrogen Energy, 2012, 37(5): 4254-4258. | 26 | LI B, ZHANG B H, GUAN Q, et al. Activity of Ni/CeO2 catalyst for gasification of phenol in supercritical water[J]. International Journal of Hydrogen Energy, 2018, 43(41): 19010-19018. |
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