1 |
WU J Y, YUAN L X, ZHANG W X, et al. Reducing the thickness of solid-state electrolyte membranes for high-energy lithium batteries[J]. Energy & Environmental Science, 2021, 14(1): 12-36.
|
2 |
赵金保. 改变我们生活和社会建设基础的锂电池——诺奖背后波澜壮阔的研发竞争[J]. 电化学, 2019, 25(5): 616-620.
|
3 |
PARK K H, BAI Q, KIM D H, et al. Design strategies, practical considerations, and new solution processes of sulfide solid electrolytes for all-solid-state batteries[J]. Advanced Energy Materials, 2018, 8(18): doi: 10.1002/aenm. 201800035.
|
4 |
WU J H, LIU S F, HAN F D, et al. Lithium/sulfide all-solid-state batteries using sulfide electrolytes[J]. Advanced Materials, 2021, 33(6): doi: 10.1002/adma. 202000751.
|
5 |
PAN Q W, SMITH D M, QI H, et al. Hybrid electrolytes with controlled network structures for lithium metal batteries[J]. Advanced Materials, 2015, 27(39): 5995-6001.
|
6 |
FU C K, MA Y L, ZUO P J, et al. In-situ thermal polymerization boosts succinonitrile-based composite solid-state electrolyte for high performance Li-metal battery[J]. Journal of Power Sources, 2021, 496: doi: 10.1016/j. jpowsour. 2021. 229861.
|
7 |
WEI Z Y, ZHANG Z H, CHEN S J, et al. UV-cured polymer electrolyte for LiNi0.85Co0.05Al0.1O2|| Li solid state battery working at ambient temperature[J]. Energy Storage Materials, 2019, 22: 337-345.
|
8 |
WEI Z Y, CHEN S J, WANG J Y, et al. Superior lithium ion conduction of polymer electrolyte with comb-like structure via solvent-free copolymerization for bipolar all-solid-state lithium battery[J]. Journal of Materials Chemistry A, 2018, 6(27): 13438-13447.
|
9 |
WEI Z Y, CHEN S J, WANG J Y, et al. A large-size, bipolar-stacked and high-safety solid-state lithium battery with integrated electrolyte and cathode[J]. Journal of Power Sources, 2018, 394: 57-66.
|
10 |
刘玉铭等译. 辐射化学的应用[M]. 上海: 上海人民出版社, 1980.
|
11 |
DING Y, SHEN X, ZENG J, et al. Pre-irradiation grafted single lithium-ion conducting polymer electrolyte based on poly(vinylidene fluoride)[J]. Solid State Ionics, 2018, 323: 16-24.
|
12 |
LI H, SHEN X, HUA H M, et al. A novel single-ion conductor gel polymer electrolyte prepared by co-irradiation grafting and electrospinning process[J]. Solid State Ionics, 2020, 347: doi: 10.1016/j. ssi. 2020. 115246.
|
13 |
MA H S, LIU J X, HUA H M, et al. Facile fabrication of functionalized separators for lithium-ion batteries with ionic conduction path modifications via the γ-ray co-irradiation grafting process[J]. ACS Applied Materials & Interfaces, 2021, 13(23): 27663-27673.
|
14 |
HATZELL K B, CHEN X C, COBB C L, et al. Challenges in lithium metal anodes for solid-state batteries[J]. ACS Energy Letters, 2020, 5(3): 922-934.
|