Page 27 - Read Online
P. 27
Wang et al. Energy Mater 2024;4:400031 https://dx.doi.org/10.20517/energymater.2023.103 Page 11 of 11
2019;60:257-66. DOI
35. Wang L, Zhu X, Guan Y, et al. ZnO/carbon framework derived from metal-organic frameworks as a stable host for lithium metal
anodes. Energy Stor Mater 2018;11:191-6. DOI
36. Le T, Yang C, Liang Q, Huang X, Kang F, Yang Y. A fishing-net-like 3D host for robust and ultrahigh-rate lithium metal anodes.
Small 2021;17:e2007231. DOI
37. Chen XR, Li BQ, Zhu C, et al. A coaxial-interweaved hybrid lithium metal anode for long-lifespan lithium metal batteries. Adv Energy
Mater 2019;9:1901932. DOI
38. Deng W, Zhu W, Zhou X, Peng X, Liu Z. Highly reversible Li plating confined in three-dimensional interconnected microchannels
toward high-rate and stable metallic lithium anodes. ACS Appl Mater Interfaces 2018;10:20387-95. DOI
39. Cao J, Xie Y, Li W, et al. Rationally optimized carbon fiber cloth as lithiophilic host for highly stable Li metal anodes. Mater Today
Energy 2021;20:100663. DOI
40. Gong YJ, Pyo S, Kim H, et al. Advanced Li metal anode by fluorinated metathesis on conjugated carbon networks. Energy Environ Sci
2021;14:940-54. DOI
41. Wang X, Pan Z, Wu Y, et al. Infiltrating lithium into carbon cloth decorated with zinc oxide arrays for dendrite-free lithium metal
anode. Nano Res 2019;12:525-9. DOI
42. Zhang P, Peng C, Liu X, et al. 3D lithiophilic “Hairy” Si nanowire arrays @ carbon scaffold favor a flexible and stable lithium
composite anode. ACS Appl Mater Interfaces 2019;11:44325-32. DOI
43. Zhang YJ, Liu SF, Wang XL, et al. Composite Li metal anode with vertical graphene host for high performance Li-S batteries. J
Power Sources 2018;374:205-10. DOI
44. Liu T, Hu J, Li C, Wang Y. Unusual conformal Li plating on alloyable nanofiber frameworks to enable dendrite suppression of Li
metal anode. ACS Appl Energy Mater 2019;2:4379-88. DOI
45. Zhang R, Chen X, Shen X, et al. Coralloid carbon fiber-based composite lithium anode for robust lithium metal batteries. Joule
2018;2:764-77. DOI
46. Go W, Kim MH, Park J, et al. Nanocrevasse-rich carbon fibers for stable lithium and sodium metal anodes. Nano Lett 2019;19:1504-
11. DOI
47. Feng YQ, Zheng ZJ, Wang CY, et al. A super-lithiophilic nanocrystallization strategy for stable lithium metal anodes. Nano Energy
2020;73:104731. DOI
48. Fang Y, Zhang Y, Zhu K, et al. Lithiophilic three-dimensional porous Ti C T -rGO membrane as a stable scaffold for safe alkali metal
3
2 x
(Li or Na) anodes. ACS Nano 2019;13:14319-28. DOI
49. Liu S, Xia X, Zhong Y, et al. 3D TiC/C core/shell nanowire skeleton for dendrite-free and long-life lithium metal anode. Adv Energy
Mater 2018;8:1702322. DOI
50. Kwon H, Lee JH, Roh Y, et al. An electron-deficient carbon current collector for anode-free Li-metal batteries. Nat Commun
2021;12:5537. DOI PubMed PMC
51. Patrike A, Suresh K, Wahid M, Chaturvedi V, Shelke MV. Ice-colloidal templated carbon host for highly efficient, dendrite free Li
metal anode. Carbon 2021;179:256-65. DOI
52. Pathak R, Chen K, Wu F, et al. Advanced strategies for the development of porous carbon as a Li host/current collector for lithium
metal batteries. Energy Stor Mater 2021;41:448-65. DOI
53. Wang C, Xie H, Zhang L, et al. Universal soldering of lithium and sodium alloys on various substrates for batteries. Adv Energy Mater
2018;8:1701963. DOI
54. Yang C, Xie H, Ping W, et al. An electron/ion dual-conductive alloy framework for high-rate and high-capacity solid-state lithium-
metal batteries. Adv Mater 2019;31:e1804815. DOI
55. Jia W, Wang Z, Li J, et al. A dual-phase Li-Ca alloy with a patternable and lithiophilic 3D framework for improving lithium anode
performance. J Mater Chem A 2019;7:22377-84. DOI
56. Jia W, Chen J, Wang Z, Zhou A, Hu YS, Li J. Dendrite-free dual-phase Li-Ba alloy anode enabled by ordered array of built-in mixed
conducting microchannels. Small 2023;20:2308279. DOI PubMed
57. Wang Z, Liu Y, Xing J, et al. Li-Ca Alloy composite anode with ant-nest-like lithiophilic channels in carbon cloth enabling high-
performance Li metal batteries. Research 2022;2022:9843093. DOI