International Journal of Extreme Manufacturing, Volume. 6, Issue 6, 63001(2024)

Multi-material 3D nanoprinting for structures to functional micro/nanosystems

Duan Yongqing... Xie Wenshuo, Yin Zhouping and Huang YongAn |Show fewer author(s)
References(64)

[1] [1] Gu D D, Shi X Y, Poprawe R, Bourell D L, Setchi R and Zhu J H 2021 Material-structure-performance integrated laser-metal additive manufacturing Science372 eabg1487

[2] [2] Mao M, Meng Z J, Huang X X, Zhu H, Wang L, Tian X Y, He J K, Li D C and Lu B H 2024 3D printing in space: from mechanical structures to living tissues Int. J. Extrem. Manuf.6 023001

[3] [3] Park Y G, Yun I, Chung W G, Park W, Lee D H and Park J U 2022 High-resolution 3D printing for electronics Adv. Sci.9 2104623

[4] [4] Li J H and Pumera M 2021 3D printing of functional microrobots Chem. Soc. Rev.50 2794–838

[5] [5] Jiao J, Guo Y, Tong Q Q, Liu S K, Qiu P F, Mei T and Wang D X 2022 Stiffness-tunable and shape-locking soft actuators based on 3D-printed hybrid multi-materials Soft Sci.2 20

[6] [6] Chen L, Duan G H, Zhang C, Cheng P and Wang Z L 2022 3D printed hydrogel for soft thermo-responsive smart window Int. J. Extrem. Manuf.4 025302

[7] [7] Huang Z Y, Shao G B, Zhou D K, Deng X H, Qiao J and Li L Q 2023 3D printing of high-precision and ferromagnetic functional devices Int. J. Extrem. Manuf.5 035501

[8] [8] Chen X L, Liu X H, Ouyang M Z, Chen J Y, Taiwo O, Xia Y H, Childs P R N, Brandon N P and Wu B 2019 Multi-metal 4D printing with a desktop electrochemical 3D printer Sci. Rep.9 3973

[9] [9] Gao Z Q, Yin J, Liu P, Li Q, Zhang R N, Yang H Y and Zhou H Z 2023 Simultaneous multi-material embedded printing for 3D heterogeneous structures Int. J. Extrem. Manuf.5 035001

[10] [10] Shuai C J, Li D S, Yao X, Li X and Gao C D 2023 Additive manufacturing of promising heterostructure for biomedical applications Int. J. Extrem. Manuf.5 032012

[11] [11] Liu S F, Hou Z W, Lin L H, Li F, Zhao Y, Li X Z, Zhang H, Fang H H, Li Z C and Sun H B 2022 3D nanoprinting of semiconductor quantum dots by photoexcitation-induced chemical bonding Science377 1112–6

[12] [12] Yang L et al 2023 Laser printed microelectronics Nat. Commun.14 1103

[13] [13] Reiser A, Lindn M, Rohner P, Marchand A, Galinski H, Sologubenko A S, Wheeler J M, Zenobi R, Poulikakos D and Spolenak R 2019 Multi-metal electrohydrodynamic redox 3D printing at the submicron scale Nat. Commun.10 1853

[14] [14] Duan Y Q, Yu R, Zhang H Y, Yang W L, Xie W S, Huang Y A and Yin Z P 2024 Programmable, high-resolution printing of spatially graded perovskites for multispectral photodetectors Adv. Mater.36 2313946

[15] [15] Jung W et al 2021 Three-dimensional nanoprinting via charged aerosol jets Nature592 54–59

[16] [16] Liu S F, Hou Z W, Lin L H, Li Z C and Sun H B 2023 3D laser nanoprinting of functional materials Adv. Funct. Mater.33 2211280

[17] [17] Zhu C, Gemeda H B, Duoss E B and Spadaccini C M 2024 Toward multiscale, multimaterial 3D printing Adv. Mater. 2314204

[18] [18] An J and Leong K F 2023 Multi-material and multi-dimensional 3D printing for biomedical materials and devices Biomed. Mater. Devices1 38–48

[19] [19] Xu X, Tan Y H, Ding J and Guan C 2022 3D printing of next-generation electrochemical energy storage devices: from multiscale to multimaterial Energy Environ. Mater.5 427–38

[20] [20] Ge Q, Li Z Q, Wang Z L, Kowsari K, Zhang W, He X N, Zhou J L and Fang N X 2020 Projection micro stereolithography based 3D printing and its applications Int. J. Extrem. Manuf.2 022004

[21] [21] Chen M J et al 2023 3D Printing of arbitrary perovskite nanowire heterostructures Adv. Funct. Mater.33 2212146

[22] [22] Zhu M H et al 2019 Electrohydrodynamically printed high-resolution full-color hybrid perovskites Adv. Funct. Mater.29 1903294

[23] [23] Han D, Yang C, Fang N X and Lee H 2019 Rapid multi-material 3D printing with projection micro-stereolithography using dynamic fluidic control Addit. Manuf.27 606–15

[24] [24] Hippler M et al 2020 Mechanical stimulation of single cells by reversible host-guest interactions in 3D microscaffolds Sci. Adv.6 eabc2648

[25] [25] Ma Z C, Zhang Y L, Han B, Hu X Y, Li C H, Chen Q D and Sun H B 2020 Femtosecond laser programmed artificial musculoskeletal systems Nat. Commun.11 4536

[26] [26] Liu B Y, Liu S R, Devaraj V, Yin Y X, Zhang Y Q, Ai J G, Han Y C and Feng J C 2023 Metal 3D nanoprinting with coupled fields Nat. Commun.14 4920

[27] [27] Tan D F, Li Y, Qi F J, Yang H, Gong Q H, Dong X Z and Duan X M 2007 Reduction in feature size of two-photon polymerization using SCR500 Appl. Phys. Lett.90 071106

[28] [28] Issa A, Izquierdo I, Merheb M, Ge D D, Broussier A, Ghabri N, Marguet S, Couteau C, Bachelot R and Jradi S 2021 One strategy for nanoparticle assembly onto 1D, 2D, and 3D polymer micro and nanostructures ACS Appl. Mater. Interfaces13 41846–56

[29] [29] Xia X X, Afshar A, Yang H, Portela C M, Kochmann D M, Di Leo C V and Greer J R 2019 Electrochemically reconfigurable architected materials Nature573 205–13

[30] [30] Liu J W, Liu Y C, Deng C S, Yu K W, Fan X H, Zhang W G, Tao Y F, Hu H C, Deng L M and Xiong W 2022 3D printing nano-architected semiconductors based on versatile and customizable metal-bound composite photoresins Adv. Mater. Technol.7 2101230

[31] [31] Wen X W et al 2021 3D-printed silica with nanoscale resolution Nat. Mater.20 1506–11

[32] [32] Mayer F, Richter S, Westhauser J, Blasco E, Barner-Kowollik C and Wegener M 2019 Multimaterial 3D laser microprinting using an integrated microfluidic system Sci. Adv.5 eaau9160

[33] [33] Batchelor R, Messer T, Hippler M, Wegener M, Barner-Kowollik C and Blasco E 2019 Two in one: light as a tool for 3D printing and erasing at the microscale Adv. Mater.31 1904085

[34] [34] Schwartz J J and Boydston A J 2019 Multimaterial actinic spatial control 3D and 4D printing Nat. Commun.10 791

[35] [35] Yin Z P, Wang D Z, Guo Y L, Zhao Z Y, Li L Q, Chen W and Duan Y Q 2024 Electrohydrodynamic printing for high resolution patterning of flexible electronics toward industrial applications InfoMat6 e12505

[36] [36] Jiang Y et al 2024 Transient charge-driven 3D conformal printing via pulsed-plasma impingement Proc. Natl Acad. Sci. USA121 e2402135121

[37] [37] Galliker P, Schneider J, Eghlidi H, Kress S, Sandoghdar V and Poulikakos D 2012 Direct printing of nanostructures by electrostatic autofocussing of ink nanodroplets Nat. Commun.3 890

[38] [38] Chen M J et al 2021 Three-dimensional perovskite nanopixels for ultrahigh-resolution color displays and multilevel anticounterfeiting Nano Lett.21 5186–94

[39] [39] Bae J, Lee S, Ahn J, Kim J H, Wajahat M, Chang W S, Yoon S Y, Kim J T, Seol S K and Pyo J 2020 3D-printed quantum dot nanopixels ACS Nano14 10993–1001

[40] [40] Kotz F, Quick A S, Risch P, Martin T, Hoose T, Thiel M, Helmer D and Rapp B E 2021 Two-photon polymerization of nanocomposites for the fabrication of transparent fused silica glass microstructures Adv. Mater.33 2006341

[41] [41] Gissibl T, Thiele S, Herkommer A and Giessen H 2016 Two-photon direct laser writing of ultracompact multi-lens objectives Nat. Photon.10 554–60

[42] [42] Suryavanshi A P and Yu M F 2006 Probe-based electrochemical fabrication of freestanding Cu nanowire array Appl. Phys. Lett.88 083103

[43] [43] McKelvey K, O'Connell M A and Unwin P R 2013 Meniscus confined fabrication of multidimensional conducting polymer nanostructures with scanning electrochemical cellmicroscopy (SECCM) Chem. Commun.49 2986–8

[44] [44] Bae J, Kim S, Ahn J, Sim H H, Wajahat M, Kim J H, Yoon S Y, Kim J T, Seol S K and Pyo J 2021 Nanoscale 3D printing of quantum dots on paper Adv. Eng. Mater.23 2100339

[45] [45] Hu S Q, Huan X, Liu Y, Cao S X, Wang Z R and Kim J T 2023 Recent advances in meniscus-on-demand three-dimensional micro- and nano-printing for electronics and photonics Int. J. Extrem. Manuf.5 032009

[46] [46] Fan X H, Deng C S, Gao H, Jiao B Z, Liu Y C, Chen F Y, Deng L M and Xiong W 2022 3D printing of nanowrinkled architectures via laser direct assembly Sci. Adv.8 eabn9942

[47] [47] Kundrata I et al 2022 Additive manufacturing in atomic layer processing mode Small Methods6 2101546

[48] [48] Luo J C J, Ruta V, Kwon I S, Albertazzi J, Allasia N, Nevskyi O, Busini V, Moscatelli D and Vil G 2024 Fabricating a structured single-atom catalyst via high-resolution photopolymerization 3D printing Adv. Funct. Mater. 2404794

[49] [49] Sola A, Trinchi A and Hill A J 2023 Self-assembly meets additive manufacturing: bridging the gap between nanoscale arrangement of matter and macroscale fabrication Smart Mater. Manuf.1 100013

[50] [50] Luo H, Zhang Y Y, Yu J W, Dong X R and Zhou T F 2023 Additive, subtractive and formative manufacturing of glass-based functional micro/nanostructures: a comprehensive review Mater. Des.233 112285

[51] [51] Zhang Y, Lin Y P, Zhang X Y, Zhang Y F and Guo J J 2021 Self-regulated parallel process 3-D array microfabrication with metal direct-write Appl. Mater. Today24 101085

[52] [52] Yang W L, Duan Y Q, Gao J X and Yin Z P 2023 Crosstalk elimination for large-scale, high-density electrohydrodynamic printing via optimization of nozzle material and structure Addit. Manuf.77 103815

[53] [53] Ouyang W Q, Xu X Y, Lu W P, Zhao N, Han F and Chen S C 2023 Ultrafast 3D nanofabrication via digital holography Nat. Commun.14 1716

[54] [54] Liu T Q et al 2024 Ultrahigh-printing-speed photoresists for additive manufacturing Nat. Nanotechnol.19 51–57

[55] [55] Tumbleston J R et al 2015 Continuous liquid interface production of 3D objects Science347 1349–52

[56] [56] Hsiao K et al 2022 Single-digit-micrometer-resolution continuous liquid interface production Sci. Adv.8 eabq2846

[57] [57] Kronenfeld J M, Rother L, Saccone M A, Dulay M T and DeSimone J M 2024 Roll-to-roll, high-resolution 3D printing of shape-specific particles Nature627 306–12

[58] [58] Huang Y A et al 2021 Programmable robotized ‘transfer-and-jet’ printing for large, 3D curved electronics on complex surfaces Int. J. Extrem. Manuf.3 045101

[59] [59] Su R Y, Chen J Y, Zhang X Q, Wang W Q, Li Y, He R J and Fang D N 2023 3D-printed micro/nano-scaled mechanical metamaterials: fundamentals, technologies, progress, applications, and challenges Small19 2206391

[60] [60] Kokkinis D, Bouville F and Studart A R 2018 3D printing of materials with tunable failure via bioinspired mechanical gradients Adv. Mater.30 1705808

[61] [61] Ahn S J, Lee H and Cho K J 2024 3D printing with a 3D printed digital material filament for programming functional gradients Nat. Commun.15 3605

[62] [62] Wei C, Gu H, Gu Y C, Liu L C, Huang Y H, Cheng D X, Li Z Q and Li L 2022 Abnormal interfacial bonding mechanisms of multi-material additive-manufactured tungsten–stainless steel sandwich structure Int. J. Extrem. Manuf.4 025002

[63] [63] Zheng B J D et al 2024 Programmed multimaterial assembly by synergized 3D printing and freeform laser induction Nat. Commun.15 4541

[64] [64] MacDonald E and Wicker R 2016 Multiprocess 3D printing for increasing component functionality Science353 aaf2093

Tools

Get Citation

Copy Citation Text

Duan Yongqing, Xie Wenshuo, Yin Zhouping, Huang YongAn. Multi-material 3D nanoprinting for structures to functional micro/nanosystems[J]. International Journal of Extreme Manufacturing, 2024, 6(6): 63001

Download Citation

EndNote(RIS)BibTexPlain Text
Save article for my favorites
Paper Information

Category:

Received: --

Accepted: Feb. 13, 2025

Published Online: Feb. 13, 2025

The Author Email:

DOI:10.1088/2631-7990/ad671f

Topics