REFERENCES

1. Hayner CM, Zhao X, Kung HH. Materials for rechargeable lithium-ion batteries. Annu Rev Chem Biomol Eng 2012;3:445-71.

2. Wu F, Maier J, Yu Y. Guidelines and trends for next-generation rechargeable lithium and lithium-ion batteries. Chem Soc Rev 2020;49:1569-614.

3. Qian S, Xing C, Zheng M, et al. CuCl2-modified lithium metal anode via dynamic protection mechanisms for dendrite-free long-life charging/discharge processes. Adv Energy Mater 2022;12:2103480.

4. Zhang J, Tan T, Zhao Y, Liu N. Preparation of ZnO nanorods/graphene composite anodes for high-performance lithium-ion batteries. Nanomaterials 2018;8:966.

5. Kreissl JJA, Petit J, Oppermann R, et al. Electrochemical lithiation/delithiation of Zno in 3D-structured electrodes: elucidating the mechanism and the solid electrolyte interphase formation. ACS Appl Mater Interfaces 2021;13:35625-38.

6. Lai W, Li X, Li B, et al. MOF-derived ZnO/ZnFe2O4@RGO nanocomposites with high lithium storage performance. J Solid State Electrochem 2021;25:1175-81.

7. Thauer E, Zakharova GS, Andreikov EI, et al. Novel synthesis and electrochemical investigations of ZnO/C composites for lithium-ion batteries. J Mater Sci 2021;56:13227-42.

8. Bui VKH, Pham TN, Hur J, Lee YC. Review of ZnO binary and ternary composite anodes for lithium-ion batteries. Nanomaterials (Basel) 2021;11:2001.

9. Köse H, Dombaycıoğlu Ş, Aydın AO. Graphene-based architectures of tin and zinc oxide nanocomposites for free-standing binder-free Li-ion anodes. Int J Energy Res 2018;42:4710-8.

10. Wang L, Zhang G, Liu Q, Duan H. Recent progress in Zn-based anodes for advanced lithium ion batteries. Mater Chem Front 2018;2:1414-35.

11. Wang K, Ye W, Yin W, Chai W, Rui Y, Tang B. Several carbon-coated Ga2O3 anodes: efficient coating of reduced graphene oxide enhanced the electrochemical performance of lithium ion batteries. Dalton Trans 2021;50:3660-70.

12. Zou Y, Guo Z, Ye L, et al. Co/La-Doped NiO hollow nanocubes wrapped with reduced graphene oxide for lithium storage. ACS Appl Nano Mater 2021;4:2910-20.

13. Kim C, Kim JW, Kim H, et al. Graphene oxide assisted synthesis of self-assembled zinc oxide for lithium-ion battery anode. Chem Mater 2016;28:8498-503.

14. Noman MT, Petru M, Amor N, Louda P. Thermophysiological comfort of zinc oxide nanoparticles coated woven fabrics. Sci Rep 2020;10:21080.

15. Vaitsis C, Sourkouni G, Argirusis C. Metal organic frameworks (MOFs) and ultrasound: a review. Ultrason Sonochem 2019;52:106-19.

16. Zhao J, Zhou H, Jin M, Chen P, Chen S, Liu X. ZnO/TiO2/C nanofibers by electrospinning for high-performance lithium storage. J Mater Sci 2021;56:2497-505.

17. Yan X, Xu S, Wang Q, Fan X. Activated carbon fibers “thickly overgrown” by ag nanohair through self-assembly and rapid thermal annealing. Nanoscale Res Lett 2017;12:590.

18. Guo C, Wang Q, He J, et al. Rational design of unique ZnO/ZnS@N-C heterostructures for high-performance lithium-ion batteries. J Phys Chem Lett 2020;11:905-12.

19. Fu H, Liu Y, Chen L, et al. Designed formation of NiCo2O4 with different morphologies self-assembled from nanoparticles for asymmetric supercapacitors and electrocatalysts for oxygen evolution reaction. Electrochimica Acta 2019;296:719-29.

20. Han Y, Qi P, Li S, et al. A novel anode material derived from organic-coated ZIF-8 nanocomposites with high performance in lithium ion batteries. Chem Commun (Camb) 2014;50:8057-60.

21. Song Y, Chen Y, Wu J, et al. Hollow metal organic frameworks-derived porous ZnO/C nanocages as anode materials for lithium-ion batteries. J Alloys Comp 2017;694:1246-53.

22. Mueller F, Geiger D, Kaiser U, Passerini S, Bresser D. Elucidating the impact of cobalt doping on the lithium storage mechanism in conversion/alloying-type zinc oxide anodes. ChemElectroChem 2016;3:1311-9.

23. Xiao L, Mei D, Cao M, Qu D, Deng B. Effects of structural patterns and degree of crystallinity on the performance of nanostructured ZnO as anode material for lithium-ion batteries. J Alloys Comp 2015;627:455-62.

24. Lu X, Xie A, Jiang C, et al. Synthesis of well-dispersed ZnO-Co-C composite hollow microspheres as advanced anode materials for lithium ion batteries. RSC Adv 2017;7:4269-77.

25. Yu M, Wang A, Wang Y, Li C, Shi G. An alumina stabilized ZnO-graphene anode for lithium ion batteries via atomic layer deposition. Nanoscale 2014;6:11419-24.

26. Zhou Z, Zhang K, Liu J, Peng H, Li G. Comparison study of electrochemical properties of porous zinc oxide/N-doped carbon and pristine zinc oxide polyhedrons. J Power Sources 2015;285:406-12.

27. Guo R, Huang X, Wu J, Zhong W, Lin Y, Cao Y. ZnO/C nanocomposite microspheres with capsule structure for anode materials of lithium ion batteries. Ceramics Int 2020;46:19966-72.

28. Ao L, Wu C, Xu Y, et al. A novel Sn particles coated composite of SnO/ZnO and N-doped carbon nanofibers as high-capacity and cycle-stable anode for lithium-ion batteries. J Alloys Comp 2020;819:153036.

29. Song H, Su J, Wang C. In situ subangstrom-thick organic engineering enables mono-scale, ultrasmall Zno nanocrystals for a high initial coulombic efficiency, fully reversible conversion, and cycle-stable li-ion storage. Adv Energy Mater 2019;9:1900426.

30. Ren P, Chen C, Yang X. Nanostrucutured MnO2-TiN nanotube arrays for advanced supercapacitor electrode material. Sci Rep 2022;12:2088.

31. Theerthagiri J, Salla S, Senthil RA, et al. A review on ZnO nanostructured materials: energy, environmental and biological applications. Nanotechnology 2019;30:392001.

32. Tao H, Zhou M, Wang K, Cheng S, Jiang K. Glycol derived carbon-TiO2 as low cost and high performance anode material for sodium-ion batteries. Sci Rep 2017;7:43895.

33. Chen L, Jiang X, Wang N, Yue J, Qian Y, Yang J. Surface-amorphous and oxygen-deficient Li3VO4-. δ ;2:1500090.

34. Song Y, Cao Y, Wang J, et al. Bottom-up approach design, band structure, and lithium storage properties of atomically thin γ-FeOOH nanosheets. ACS Appl Mater Interfaces 2016;8:21334-42.

35. Shi Y, Fu J, Hui K, et al. Promoting the electrochemical properties of yolk-shell-structured CeO2 composites for lithium-ion batteries. Microstructures 2021;1:2021005.

36. Wu L, Liu YG, Zhao H, et al. MOF-derived long spindle-like carbon-coated ternary transition-metal-oxide composite for lithium storage. ACS Omega 2022;7:16837-46.

37. Liu J, Zhou Y, Xie Z, et al. Conjugated copper-catecholate framework electrodes for efficient energy storage. Angew Chem Int Ed Engl 2020;59:1081-6.

38. Song Y, Chen Z, Li Y, et al. Pseudocapacitance-tuned high-rate and long-term cyclability of NiCo 2 S 4 hexagonal nanosheets prepared by vapor transformation for lithium storage. J Mater Chem A 2017;5:9022-31.

39. Yuan D, Adekoya D, Dou Y, et al. Cation-vacancy induced Li+ intercalation pseudocapacitance at atomically thin heterointerface for high capacity and high power lithium-ion batteries. J Energy Chem 2021;62:281-8.

40. Li Y, Xu Y, Yang W, Shen W, Xue H, Pang H. MOF-Derived metal oxide composites for advanced electrochemical energy storage. Small 2018;14:e1704435.

41. Xu G, Nie P, Dou H, Ding B, Li L, Zhang X. Exploring metal organic frameworks for energy storage in batteries and supercapacitors. Mater Today 2017;20:191-209.

42. Muraliganth T, Vadivel Murugan A, Manthiram A. Facile synthesis of carbon-decorated single-crystalline Fe3O4 nanowires and their application as high performance anode in lithium ion batteries. Chem Commun (Camb) 2009:7360-2.

43. Yang C, Qing Y, An K, et al. ZnO nanoparticles anchored on nitrogen and sulfur co-doped graphene sheets for lithium-ion batteries applications. Ionics 2018;24:3781-91.

44. Li D, Gong Y, Zhang Y, et al. Facile synthesis of carbon nanosphere/NiCo2O4 core-shell sub-microspheres for high performance supercapacitor. Sci Rep 2015;5:12903.

45. Zhang Q, Chen H, Han X, et al. Graphene-Encapsulated nanosheet-assembled zinc-nickel-cobalt oxide microspheres for enhanced lithium storage. ChemSusChem 2016;9:186-96.

46. Zhang Q, Wang J, Dong J, et al. Facile general strategy toward hierarchical mesoporous transition metal oxides arrays on three-dimensional macroporous foam with superior lithium storage properties. Nano Energy 2015;13:77-91.

47. Li S, Wang K, Zhang G, et al. Fast charging anode materials for lithium-ion batteries: current status and perspectives. Adv Funct Materials 2022;32:2200796.

48. Joy R, Balakrishnan NTM, Das A, et al. Graphene: chemistry and applications for lithium-ion batteries. Electrochem 2022;3:143-83.

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