Promoting hydrogen industry with high-capacity Mg-based solid-state hydrogen storage materials and systems
Li REN, Yinghui LI, Xi LIN, Wenjiang DING, Jianxin ZOU
Promoting hydrogen industry with high-capacity Mg-based solid-state hydrogen storage materials and systems
[1] |
van der Spek M, Banet C, Bauer C.
CrossRef
Google scholar
|
[2] |
Ren L, Li Y, Zhang N.
CrossRef
Google scholar
|
[3] |
Shin C H, Lee H Y, Gyan-Barimah C.
CrossRef
Google scholar
|
[4] |
Li Z, Sun Y, Zhang C.
CrossRef
Google scholar
|
[5] |
Mac Dowell N, Sunny N, Brandon N.
CrossRef
Google scholar
|
[6] |
Zhang Y, Wu S, Wang L.
CrossRef
Google scholar
|
[7] |
KimYDongXChaeS,
|
[8] |
Mastronardo E, Bonaccorsi L, Kato Y.
CrossRef
Google scholar
|
[9] |
Zhou P, Navid I A, Ma Y.
CrossRef
Google scholar
|
[10] |
Nishiyama H, Yamada T, Nakabayashi M.
CrossRef
Google scholar
|
[11] |
Shangguan W F, Kudo A, Jiang Z.
CrossRef
Google scholar
|
[12] |
Xiao F, Wang Y C, Wu Z P.
CrossRef
Google scholar
|
[13] |
Olabi A G, Abdelkareem M A, Al-Murisi M.
CrossRef
Google scholar
|
[14] |
Singh S K, Verma S K, Kumar R. Thermal performance and behavior analysis of SiO2, Al2O3 and MgO based nano-enhanced phase-changing materials, latent heat thermal energy storage system. Journal of Energy Storage, 2022, 48: 103977
CrossRef
Google scholar
|
/
〈 | 〉 |