• International Journal of Extreme Manufacturing
  • Vol. 3, Issue 1, 12002 (2021)
Wilhelm Pflegin*
Author Affiliations
  • Institute for Applied Materials - Applied Materials Physics, Karlsruhe Institute of Technology, P.O. Box 3640, Karlsruhe 76021, Germany
  • show less
    DOI: 10.1088/2631-7990/abca84 Cite this Article
    Wilhelm Pflegin. Recent progress in laser texturing of battery materials: a review of tuning electrochemical performances, related material development, and prospects for large-scale manufacturing[J]. International Journal of Extreme Manufacturing, 2021, 3(1): 12002 Copy Citation Text show less
    References

    [1] Kwade A, Haselrieder W, Leithoff R, Modlinger A, Dietrich F and Droeder K 2018 Nat. Energy 3 290

    [2] Luetke M, Franke V, Techel A, Himmer T, Klotzbach U, Wetzig A and Beyer E 2011 Phys. Procedia 12 286

    [3] Helm J, Schulz A, Olowinsky A, Dohrn A and Poprawe R 2020 Weld. World 64 611

    [4] Schmidt P A, Schmitz P and Zaeh M F 2016 J. Laser Appl. 28 022423

    [5] Brand M J, Schmidt P A, Zaeh M F and Jossen A 2015 J. Energy Storage 1 7

    [6] De Bono P and Blackburn J 2015 Laser welding of copper and aluminium battery interconnections Industrial Laser Applications Symp. (Ilas 2015) (International Society for Optics and Photonics) vol 9657 p 96570M

    [7] Pfleging W 2018 Nanophotonics 7 549

    [8] Habedank J B, Endres J, Schmitz P, Zaeh M F and Huber H P 2018 J. Laser Appl. 30 032205

    [9] Tsuda T et al 2018 Electrochim. Acta 291 267

    [10] Park J, Hyeon S, Jeong S and Kim H-J 2019 J. Ind. Eng. Chem. 70 178

    [11] Smyrek P, Prll J, Seifert H J and Pfleging W 2016 J. Electrochem. Soc. 163 A19

    [12] Vedder C, Hawelka D, Wolter M, Leiva D, Stollenwerk J and Wissenbach K 2016 Laser-based drying of battery electrode layers Int. Congress on Applications of Lasers & Electro-Optics (Laser Institute of America) vol 2016 p N501

    [13] Broadhead J and Kuo H C 2001 Electrochemical principles and reactions Handbook of Batteries 3rd edn, ed D Linden (New York: McGraw-Hill) pp 2.1–37

    [14] Wang W, Wei X, Choi D, Lu X, Yang G and Sun C 2015 Electrochemical cells for medium-and large-scale energy storage: fundamentals Advances in Batteries for Medium and Large-scale Energy Storage (Amsterdam: Elsevier) pp 3–28

    [15] Ebner M and Wood V 2015 J. Electrochem. Soc. 162 A3064

    [16] Pfleging W and Prll J 2014 J. Mater. Chem. A 2 14918

    [17] Gao J, Shi S-Q and Li H 2015 Chin. Phys. B 25 018210

    [18] Wu Z, Xie Z, Yoshida A, Wang Z, Hao X, Abudula A and Guan G 2019 Renewable Sustainable Energy Rev. 109 367

    [19] Zhang Y, Marschilok A C, Takeuchi K J, Kercher A K, Takeuchi E S and Dudney N J 2019 Chem. Mater. 31 6135

    [20] Long J W, Dunn B, Rolison D R and White H S 2004 Chem. Rev. 104 4463

    [21] Ferrari S, Loveridge M, Beattie S D, Jahn M, Dashwood R J and Bhagat R 2015 J. Power Sources 286 25

    [22] Serra P and Piqu′e A 2019 Adv. Mater. Technol. 4 1800099

    [23] Zhang M, Mei H, Chang P and Cheng L 2020 J. Mater. Chem. A 8 10670

    [24] Prll J, Kim H, Pique A, Seifert H J and Pfleging W 2014 J. Power Sources 255 116

    [25] Ma L, Nie M, Xia J and Dahn J 2016 J. Power Sources 327 145

    [26] Noh H J, Youn S, Yoon C S and Sun Y K 2013 J. Power Sources 233 121

    [27] Bak S-M, Hu E, Zhou Y, Yu X, Senanayake S D, Cho S-J, Kim K-B, Chung K Y, Yang X-Q and Nam K-W 2014 ACS Appl. Mater. Interfaces 6 22594

    [28] Obrovac M and Christensen L 2004 Electrochem. Solid-State Lett. 7 A93

    [29] Liang B, Liu Y and Xu Y 2014 J. Power Sources 267 469

    [30] Steen M, Lebedeva N, Di Persio F and Boon-Brett L 2017 JRC Science for Policy Report (available at: https:// publications.jrc.ec.europa.eu/repository/bitstream/ JRC108043/kjna28837enn.pdf)

    [31] Roberts M et al 2011 J. Mater. Chem. 21 9876

    [32] Li J, Daniel C and Wood D 2011 J. Power Sources 196 2452

    [33] Kim H, Auyeung R C Y and Piqu′e A 2007 J. Power Sources 165 413

    [34] Wollersheim O and Pfleging W 2012 ATZ Elektron. 7 52

    [35] Wood D L, Li J L and Daniel C 2015 J. Power Sources 275 234

    [36] Jaiser S, Muller M, Baunach M, Bauer W, Scharfer P and Schabel W 2016 J. Power Sources 318 210

    [37] Muller M, Pfaffmann L, Jaiser S, Baunach M, Trouillet V, Scheiba F, Scharfer P, Schabel W and Bauer W 2017 J. Power Sources 340 1

    [38] Yue Y and Liang H 2018 Small Methods 2 1800056

    [39] Yamada M, Watanabe T, Gunji T, Wu J and Matsumoto F 2020 Electrochem 1 124

    [40] Miao Y, Hynan P, von Jouanne A and Yokochi A 2019 Energies 12 1074

    [41] Pagliaro M and Meneguzzo F 2019 Heliyon 5 e01866

    [42] Ramoni M O, Zhang Y, Zhang H-C and Ghebrab T 2017 Int. J. Adv. Manuf. Technol. 88 3067

    [43] Neuenschwander B, Jaeggi B, Schmid M and Hennig G 2014 Phys. Procedia 56 1047

    [44] Bolsinger M, Weller M, Ruck S, Kaya P, Riegel H and Knoblauch V 2020 Electrochim. Acta 330 135163

    [45] Zhu P, Seifert H J and Pfleging W 2019 Appl. Sci. 9 4067

    [46] Smyrek P, Bergfeldt T, Seifert H J and Pfleging W 2019 J. Mater. Chem. A 7 5656

    [47] Ni J and Li L 2020 Adv. Mater. 32 2000288

    [48] Prll J, Kohler R, Torge M, Ulrich S, Ziebert C, Bruns M, Seifert H J and Pfleging W 2011 Appl. Surf. Sci. 257 9968

    [49] Tsuda T, Ando N, Utaka T, Kojima K, Nakamura S, Hayashi N, Soma N, Gunji T, Tanabe T and Ohsaka T 2019 Electrochim. Acta 298 827

    [50] Tsuda T, Ishihara Y, Watanabe T, Ando N, Gunji T, Soma N, Nakamura S, Hayashi N, Ohsaka T and Matsumoto F 2019 Electrochemistry 87 370

    [51] Pfleging W and Gotcu P 2019 Appl. Sci. 9 3588

    [52] Schweidler S, de Biasi L, Schiele A, Hartmann P, Brezesinski T and Janek J 2018 J. Phys. Chem. C 122 8829

    [53] Dühnen S, Betz J, Kolek M, Schmuch R, Winter M and Placke T 2020 Small Methods 4 2000039

    [54] Graetz J, Ahn C C, Yazami R and Fultz B 2003 Electrochem. Solid-State Lett. 6 A194

    [55] Kim J S, Pfleging W, Kohler R, Seifert H J, Kim T Y, Byun D, Jung H G, Choi W C and Lee J K 2015 J. Power Sources 279 13

    [56] Kraft L, Habedank J B, Frank A, Rheinfeld A and Jossen A 2020 J. Electrochem. Soc. 167 013506

    [57] Habedank J B, Kriegler J and Zaeh M F 2019 J. Electrochem. Soc. 166 A3940

    [58] Zheng Y, Seifert H J, Shi H, Zhang Y, Kübel C and Pfleging W 2019 Electrochim. Acta 317 502

    [59] Shi H, Liu X, Wu R, Zheng Y, Li Y, Cheng X, Pfleging W and Zhang Y 2019 Appl. Sci. 9 956

    [60] Park K-Y, Park J-W, Seong W M, Yoon K, Hwang T-H, Ko K-H, Han J-H, Jaedong Y and Kang K 2020 J. Power Sources 468 228369

    [61] Mangang M, Seifert H J and Pfleging W 2016 J. Power Sources 304 24

    [62] Zheng Y, Pfffl L, Seifert H J and Pfleging W 2019 Appl. Sci. 9 4218

    [63] Lai W and Ciucci F 2011 Electrochim. Acta 56 4369

    [64] Mottay E, Liu X B, Zhang H B, Mazur E, Sanatinia R and Pfleging W 2016 MRS Bull. 41 984

    [65] Habedank J B, Schwab D, Kiesbauer B and Zaeh M F 2020 J. Laser Appl. 32 022053

    [66] Jansen T, Kandula M W, Blass D, Hartwig S, Haselrieder W and Dilger K 2020 Energy Technol. 8 1900519

    [67] Lutey A H, Fortunato A, Ascari A, Carmignato S and Leone C 2015 Opt. Laser Technol. 65 164

    [68] Zhang Y, Li J, Yang R, Liu T and Yan Y 2019 Opt. Lasers Eng. 118 14

    [69] Du K 2008 Concepts, features, and developments of slab laser oscillators and amplifiers Solid State Lasers XVII: Technology and Devices (International Society for Optics and Photonics) vol 6871 p 68710O

    [70] Li D and Du K 2011 Picosecond laser with 400W average power and 1mJ pulse energy Solid State Lasers XX: Technology and Devices (International Society for Optics and Photonics) vol 7912 p 79120N

    [71] Schille J, Schneider L, Streek A, Kloetzer S and Loeschner U 2016 High-throughput machining using high average power ultrashort pulse lasers and ultrafast polygon scanner Laser-based Micro-and Nanoprocessing X (International Society for Optics and Photonics) vol 9736 p 97360R

    [72] Keming Du et al 2020 PX-SERIES (Available at: http://www. edge-wave.de/web/en/produkte/ultra-short-pulse-systeme/ px-serie/)

    [73] Pfleging W, Kohler R, Scholz S, Ziebert C and Proell J 2011 Spring 2011 Materials Research Society Meeting - Symposium TT: Laser-Material Interactions at Micro/Nanoscales April 2011 San Francisco 1365 mrss11–1365

    [74] Mangang M, Prll J, Tarde C, Seifert H J and Pfleging W 2014 Proc. SPIE 8968 0M1

    [75] Prll J, Kim H, Mangang M, Seifert H J, Piqu′e A and Pfleging W 2014 Proc. SPIE 8968 051

    [76] Mangang M, Gotcu-Freis P, Seifert H J and Pfleging W 2015 Proc. SPIE 9351 0K1

    [77] Prll J, Schmitz B, Niemeller A, Robertz B, Schfer M, Torge M, Smyrek P, Seifert H J and Pfleging W 2015 Proc. SPIE 9351 1F1

    [78] Smyrek P, Kim H, Zheng Y, Seifert H J, Piqu′e A and Pfleging W 2016 Proc. SPIE 9738 973806

    [79] Smyrek P, Zheng Y, Seifert H J and Pfleging W 2016 Proc. SPIE 9736 1C1

    [80] Pfleging W, Kohler R and Prll J 2014 Patent (issued) EP 2 697 850 B1, US9337462B2, WO 2012/139553 1

    [81] Sutter D et al 2020 Next generation of high-power industrial ultrafast lasers based on InnoSlab technology (Conference Presentation) SPIE LASE (SPIE) https://doi.org/ 10.1117/12.2544720

    [82] Sutter D H, Dietz T, Bauer D, Scelle R, Budnicki A, Killi A, Jenne M, Kleiner J, Flamm D and Sailer M 2019 High power and high energy ultrafast disk lasers for industrial applications CLEO: Science and Innovations (Optical Society of America) p JM3E. 2

    [83] Schütz V, Horn A and Stute U 2012 Proc. SPIE 8244 82440X1

    [84] Durand J-M, Duarte M J and Clerens P 2017 European energy storage technology development roadmap towards 2030 Int Energy Storage Policy Regul Work vol 108 (Available at: https://ease-storage.eu/wp-content/uploads/2015/10/EASEEERA- recommendations-Roadmap-LR.pdf)

    [85] Habedank J B, Günter F J, Billot N, Gilles R, Neuwirth T, Reinhart G and Zaeh M F 2019 Int. J. Adv. Manuf. Technol. 102 2769

    Wilhelm Pflegin. Recent progress in laser texturing of battery materials: a review of tuning electrochemical performances, related material development, and prospects for large-scale manufacturing[J]. International Journal of Extreme Manufacturing, 2021, 3(1): 12002
    Download Citation