Architected Electrochemical Systems: A Chemical Engineering Perspective on Structural Design in Energy Storage

Tiantian Li , Xiao Sun , Sri Vaishnavi Thummalapalli , Kenan Song

Engineering ›› : 202608004

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Engineering ›› :202608004 DOI: 10.1016/j.eng.2026.08.004
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Architected Electrochemical Systems: A Chemical Engineering Perspective on Structural Design in Energy Storage
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Tiantian Li, Xiao Sun, Sri Vaishnavi Thummalapalli, Kenan Song. Architected Electrochemical Systems: A Chemical Engineering Perspective on Structural Design in Energy Storage. Engineering 202608004 DOI:10.1016/j.eng.2026.08.004

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References

[1]

Qian H, Ren H, Zhang Y, He X, Li W, Wang J, et al. Surface doping vs. bulk doping of cathode materials for lithium—ion batteries: a review. Electrochem Energy Rev 2022; 5(4):2.

[2]

Jaugstetter M, Blanc N, Kratz M, Tschulik K . Electrochemistry under confinement. Chem Soc Rev 2022; 51(7):2491-543.

[3]

Qiu J, Duan Y, Li S, Zhao H, Ma W, Shi W, et al. Insights into nano— and micro—structured scaffolds for advanced electrochemical energy storage. Nano—Micro Lett 2024; 16(1):130.

[4]

Zhang X, Ju Z, Zhu Y, Takeuchi KJ, Takeuchi ES, Marschilok AC, et al. Multiscale understanding and architecture design of high energy/power lithium—ion battery electrodes. Adv Energy Mater 2021; 11(2):2000808.

[5]

Zheng X, Luo J, Lv W, Wang DW, Yang QH . Two—dimensional porous carbon: synthesis and ion—transport properties. Adv Mater 2015; 27(36):5388-95.

[6]

Zhou Y, Jiao H, Lu X, Sun D, Li S, Song J, et al. Formation mechanisms and regulation strategies for metal electrodeposition morphology under multiple coupling effects. Adv Funct Mater 2026; 36(31):e27876.

[7]

Mei Y, Hu X, Wang H, Huang Y, Li L, Wu F, et al. Structural designs toward performance—balanced multifunctional batteries. Matter 2025; 8(11):102469.

[8]

Zhang X, Zhou L, Cai X, Zheng X, Liu W, Wang G, et al. Heterogeneous structures and morphological transitions of composite materials and its applications. Adv Compos Hybrid Mater 2024; 7(6):251.

[9]

Zheng J, Garcia—Mendez R, Archer LA . Engineering multiscale coupled electron/ion transport in battery electrodes. ACS Nano 2021; 15(12):19014-25.

[10]

Lei YJ, Zhao L, Lai WH, Huang Z, Sun B, Jaumaux P, et al. Electrochemical coupling in subnanometer pores/channels for rechargeable batteries. Chem Soc Rev 2024; 53(8):3829-95.

[11]

Li D, Shen C, Zheng Y, Xu J . Electrochemo—mechanical degradation and failure of active particles in high energy density batteries: a review. Small 2025; 21(8):2407740.

[12]

Wang Q, Lyu L, Pan H, Wang Z, Lee D, Liu J, et al. From geometry to activity: understanding surface curvature effects in energy electrocatalysis. ACS Mater Lett 2025; 7(12):4005—28.

[13]

Kim JY, Chae OB, Kim G, Peterson AA, Wu M, Jung HT . Long—range uniform deposition of Ag nanoseed on cu current collector for high—performance lithium metal batteries. Small 2024; 20(24):2307200.

[14]

Li Y, Fu ZY, Su BL . Hierarchically structured porous materials for energy conversion and storage. Adv Funct Mater 2012;22(22):4634—67.

[15]

Zhong Y, Wu P, Ge S, Wu Y, Shi B, Shao G, et al. An egg holders—inspired structure design for large—volume—change anodes with long cycle life. J Alloys Compd 2020; 816:152497.

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