• Chinese Physics B
  • Vol. 29, Issue 8, (2020)
Linling Luo1, Xiaoqiu Ye1, Guanghui Zhang2, Huaqin Kou2, Renjin Xiong2, Ge Sang2、†, Ronghai Yu3, and Dongliang Zhao4
Author Affiliations
  • 1Science and Technology on Surface Physics and Chemistry Laboratory, Mianyang 62907, China
  • 2Institute of Materials, China Academy of Engineering Physics, Mianyang 61900, China
  • 3School of Materials Science and Engineering, Beihang University, Beijing 100191, China
  • 4Department of Functional Material Research, Central Iron and Steel Research Institute, Beijing 100081, China
  • show less
    DOI: 10.1088/1674-1056/ab9289 Cite this Article
    Linling Luo, Xiaoqiu Ye, Guanghui Zhang, Huaqin Kou, Renjin Xiong, Ge Sang, Ronghai Yu, Dongliang Zhao. Enhancement of hydrogenation kinetics and thermodynamic properties of ZrCo1−xCrx (x = 0−0.1) alloys for hydrogen storage[J]. Chinese Physics B, 2020, 29(8): Copy Citation Text show less
    References

    [1] W T Shmayda, A G Heics, N P Kherani. J. Less-common Metal, 162, 117(1990).

    [2] G Li, H Zhou, T Gao. J. Nucl. Mater, 424, 220(2012).

    [3] T Nagasaki, S Konishi, H Katsuta, Y Naruse. J. Fusion Technol, 9, 506(1986).

    [4] S Konishi, T Nagasaki, N Yokokara, Y Naruse. Fusion Eng. Des, 10, 355(1989).

    [5] M Devillers, M Sirch, S Bredendiek-Kaemper, R D Penzhorn. J. Chem. Mater, 2, 255(1990).

    [6] K J Maynard, W T Shmayda, A G Heics. J. Fusion Technol, 28, 1391(1995).

    [7] D Chattaraj, S C Parida, S Dash, C Majumder. Int. J. Hydrogen Energy, 37(2012).

    [8] L X Peng, C L Jiang, Q Y Xu, X C Wu. Fusion Eng. Des, 88, 299(2013).

    [9] M Devillers, M Sirch, R D Penzhorn. Chem. Mater, 4, 631(1992).

    [10] S Konishi, T Nagasaki, K Okuno. J. Nucl. Mater, 233, 294(1995).

    [11] H Q Kou, W H Luo, T Tang, Z Y Huang, G Sang, H Wang, C A Chen, G H Zhang, J C Bao, Y Xue. Int. J. Hydrogen Energy, 43(2018).

    [12] H Q Kou, H He, W H Luo, T Tang, Z Y Huang, G Sang, G H Zhang, H Wang, Y Shi, C A Chen. Int. J. Hydrogen Energy, 43, 322(2018).

    [13] C Zlotea, M A Sow, E Gustav, J Couzinie, L Perriere, I Guillot, J Bourgon, K T Moller, T R Jensen, E Akiba, M Sahlberg. J. Alloys Compd, 775, 667(2019).

    [14] K Ishikawa, K Yonehara. J. Alloys Compd, 749, 634(2018).

    [15] G H Zhang, G Sang, R J Xiong, H Q Kou, K Z Liu, W H Luo. Int. J. Hydrogen Energy, 40, 6582(2015).

    [16] Y M Zhao, R F Li, R H Tang, B Y Li, R H Yu, W Liu, H Q Kou, J B Meng. J. Energy Chem, 23, 9(2014).

    [17] R A Jat, S C Parida, R Agarwal, S G Kulkarni. Int. J. Hydrogen Energy, 38, 1490(2013).

    [18] C C Weng, X Z Xiao, X Huang, F L Jiang, Z D Yao, S Q Li, H W Ge, L X Chen. Int. J. Hydrogen Energy, 42(2017).

    [19] Z D Yao, X Z Xiao, Z Liang, H Q Kou, W H Luo, C A Chen, L J Jiang, L X Chen. J. Alloys Compd, 784, 1062(2019).

    [20] R A Jat, R Singh, S C Parida, A Das, R Agarwal, S Mukerjee, K L Ramakumar. Int. J. Hydrogen Energy, 40, 5135(2015).

    [21] S Konishi, T Nagasaki, T Hayashi, K Okuno. J. Nucl. Mater, 223, 300(1995).

    [22] R A Jat, R Singh, S Pati, PU Sastry, A Das, R Agarwal, S C Padida. Int. J. Hydrogen Energy, 42, 8089(2017).

    [23] L L Luo, X Q Ye, C Zhao, G H Zhang, H Q Kou, R J Xiong, G Sang, T Han. Int. J. Hydrogen Energy, 45, 2989(2020).

    [24] Z Q Liang, X Z Xiao, Z D Yao, H Q Kou, W H Luo, C A Chen, L X Chen. Int. J. Hydrogen Energy, 44(2019).

    [25] S F Xu, F Wang, W K Tang, Y B Wang, R H Yu. Int. J. Hydrogen Energy, 43, 839(2018).

    [26] G H Zhang. Study on preparation and mechanism of ZrCo-based tritium storage alloys of anti-hydrogen induced disproportionation(2015).

    [27] K Zhang, F Wang, X G Zeng, B J Zhang, H Q Kou. Int. J. Hydrogen Energy, 45, 9877(2020).

    [28] Y W You, J Y Yu, H Yuan, Y C Xu, X B Wu, J J Sun, J H Wang, Q F Fang, C S Liu. Int. J. Hydrogen Energy, 45(2020).

    [29] L S Wang, J Ding, X Huang, K Song, B Liu, X G Zeng. Int. J. Hydrogen Energy, 43(2018).

    [30] F Wang, R F Li, C P Ding, W K Tang, Y B Wang, S M Xu, R H Yu, Z M Wang. Int. J. Hydrogen Energy, 42(2017).

    [31] H Yoo, J Ko, S Yun, M Chang, H Kang, W Kim, H Ju. Int. J. Hydrogen Energy, 38, 6226(2012).

    [32] F Wang, R F Li, C P Ding, J Wan, R H Yu, Z M Wang. Int. J. Hydrogen Energy, 41(2016).

    [33] H Q Kou, H He, W H Luo, T Tang, Z Y Huang, H Wang, J C Bao, Y Xue, S H Pei, W D Liu. Fusion Eng. Des, 138, 68(2019).

    [34] H Q Kou, W H Luo, Z Y Huang, G Sang, C W Hu, C A Chen, G H Zhang, D L Luo, M Liu, S T Zheng. Int. J. Hydrogen Energy, 41(2016).

    [35] Q Q Wang, X G Kong, H B Han, G Sang, G H Zhang, T Gao. Appl. Surf. Sci, 483, 383(2019).

    [36] L J Lv. Study on improving properties of LaNi4.25Al0.75 and ZrCo alloys for absorption and storage of tritium in Thorium-based Molten Salt Reactor(2016).

    [37] Z D Yao, X X Xiao, L X Chen, Z Q Liang. Chinese Patent(2018).

    [38] . Plus updates Binary alloy phase diagrams(1990).

    [39] . Alloy Phase Diagrams, Volume 3, ASM Handbook(1992).

    [40] I Jacob, M Polak. J. Mater. Res. Bull, 16, 1311(1981).

    [41] L Schlapbach. J. Alloys Compd, 89, 37(1982).

    [42] K Edalati, M Matsuo, H Emami, S Itano, A Alhamidi, A T Staykov, D J Smith, S Orimo, E Akiba, Z Horita. Scr. Mater, 124, 108(2016).

    [43] D Zander, E Talgutelmacher, L Jastrow, U Koster, D Eliezer. J. Alloys Compd, 356, 654(2003).

    [44] R A Jat, S C Parida, J Nuwad, R Agarwal, S G Kulkarni. J. Therm. Anal. Calorim, 112, 37(2013).

    [45] Y T Li, L X Zhang, Q G Zhang, F Fang, D L Sun, K Z Li, H Wang, L Z Ouyang, M Zhu. J. Phys. Chem. C, 118(2014).

    [46] T Liu, Y R Cao, C G Qin, W S Chou, X G Li. J. Power Sources, 246, 277(2014).

    [47] Y Qi, X Ju, C B Wan, J Qiu, Y Xin, S M Wang, X P Liu, L J Jiang. Int. J. Hydrogen Energy, 35, 2931(2010).

    [48] M Shim, H Chung, S Paek, M Lee, K Kim, S Yim, D Ahn, C Kim, H Yoshida. J. Korean Phys. Soc, 49, S369(2006).

    [49] M Hara, T Okabe, K Mori, K Watanabe. J. Fusion Eng. Des, 49, 831(2000).

    [50] Y Zhang, Q F Tian, J Zhang, S S Liu, L X Sun. J. Phys. Chem. C, 113(2009).

    [51] Y F Liu, K Zhong, K Luo, X M Gao, H G Pan, Q D Wang. J. Am. Chem. Soc, 131, 1862(2009).

    [52] J Shao. Study on the modification and corresponding mechanisms of lithium borohvdride-based materials for hydrogen storage(2015).

    Linling Luo, Xiaoqiu Ye, Guanghui Zhang, Huaqin Kou, Renjin Xiong, Ge Sang, Ronghai Yu, Dongliang Zhao. Enhancement of hydrogenation kinetics and thermodynamic properties of ZrCo1−xCrx (x = 0−0.1) alloys for hydrogen storage[J]. Chinese Physics B, 2020, 29(8):
    Download Citation