International Journal of Extreme Manufacturing, Volume. 7, Issue 3, 35001(2025)
Micropattern of core-shell Ag@MCS/PEGDA nanoparticles fabricated by femtosecond laser maskless optical projection lithography
[1] [1] Chaudhuri R G and Paria S 2012 Core/shell nanoparticles: classes, properties, synthesis mechanisms, characterization, and applicationsChem. Rev.1122373–433
[2] [2] Hassan S, Prakash G, Bal Ozturk A, Saghazadeh S, Sohail M F, Seo J, Dokmeci M R, Zhang Y S and Khademhosseini A 2017 Evolution and clinical translation of drug delivery nanomaterialsNano Today1591–106
[3] [3] Zeng Q K, Qi X L, Shi G Y, Zhang M and Haick H 2022 Wound dressing: from nanomaterials to diagnostic dressings and healing evaluationsACS Nano161708–33
[4] [4] Comberlato A, Koga M M, Nssing S, Parish I A and Bastings M M C 2022 Spatially controlled activation of toll-like receptor 9 with DNA-based nanomaterialsNano Lett.222506–13
[5] [5] Wang J F, Suo J, Song Z X, Li W J and Wang Z B 2023 Nanomaterial-based flexible sensors for metaverse and virtual reality applicationsInt. J. Extrem. Manuf.5032013
[6] [6] Zheng C L, Jin F, Zhao Y Y, Zheng M L, Liu J, Dong X Z, Xiong Z, Xia Y Z and Duan X M 2020 Light-driven micron-scale 3D hydrogel actuator produced by two-photon polymerization microfabricationSens. ActuatorsB304127345
[7] [7] Li J-F, Zhang Y-J, Ding S-Y, Panneerselvam R and Tian Z-Q 2017 Core–shell nanoparticle-enhanced raman spectroscopyChem. Rev.1175002–69
[8] [8] Galogahi F M, Zhu Y, An H J and Nguyen N T 2020 Core-shell microparticles: generation approaches and applicationsJ. Sci. Adv. Mater. Dev.5417–35
[9] [9] Gao Y Y and Wu Y L 2022 Recent advances of chitosan-based nanoparticles for biomedical and biotechnological applicationsInt. J. Biol. Macromol.203379–88
[10] [10] Meng Q Y, Zhong S L, Wang J, Gao Y and Cui X J 2023 Advances in chitosan-based microcapsules and their applicationsCarbohydrate Polym.300120265
[11] [11] Li Tet al2023 Synthesis of biocompatible BSA-GMA and two-photon polymerization of 3D hydrogels with free radical type I photoinitiatorInt. J. Bioprinting9752
[12] [12] Wang S F, Tan Y M, Zhao D M and Liu G D 2008 Amperometric tyrosinase biosensor based on Fe3O4 nanoparticles–chitosan nanocompositeBiosens. Bioelectron.231781–7
[13] [13] Lim Set al2019 Dual-modal imaging-guided precise tracking of bioorthogonally labeled mesenchymal stem cells in mouse brain strokeACS Nano1310991–1007
[14] [14] Wang K, Zhuang J L, Liu Y B, Xu M S, Zhuang J Y, Chen Z G, Wei Y and Zhang Y Q 2018 PEGylated chitosan nanoparticles with embedded bismuth sulfide for dual-wavelength fluorescent imaging and photothermal therapyCarbohydrate Polym.184445–52
[15] [15] Li S Y, Zhang H, Chen K W, Jin M F, Vu S H, Jung S, He N N, Zheng Z and Lee M-S 2022 Application of chitosan/alginate nanoparticle in oral drug delivery systems: prospects and challengesDrug Deliv.291142–9
[16] [16] Loo H L, Goh B H, Lee L-H and Chuah L H 2022 Application of chitosan-based nanoparticles in skin wound healingAsian J. Pharm. Sci.17299–332
[17] [17] Rashki Set al2021 Chitosan-based nanoparticles against bacterial infectionsCarbohydrate Polym.251117108
[18] [18] Jayakumar R, Menon D, Manzoor K, Nair S V and Tamura H 2010 Biomedical applications of chitin and chitosan based nanomaterials—a short reviewCarbohydrate Polym.82227–32
[19] [19] Mittnacht U, Hartmann H, Hein S, Oliveira H, Dong M D, P P A, Kjems J, Howard K A and Schlosshauer B 2010 Chitosan/siRNA nanoparticles biofunctionalize nerve implants and enable neurite outgrowthNano Lett.103933–9
[20] [20] Liang J, Wang J, Li S J, Xu L, Wang R, Chen R P and Sun Y F 2019 The size-controllable preparation of chitosan/silver nanoparticle composite microsphere and its antimicrobial performanceCarbohydrate Polym.22022–29
[21] [21] Marta B, Potara M, Iliut M, Jakab E, Radu T, Imre-Lucaci F, Katona G, Popescu O and Astilean S 2015 Designing chitosan–silver nanoparticles–graphene oxide nanohybrids with enhanced antibacterial activity againstStaphylococcus aureus Colloids Surf.A487113–20
[22] [22] Rajivgandhi G, Maruthupandy M, Veeramani T, Quero F and Li W-J 2019 Anti-ESBL investigation of chitosan/silver nanocomposites against carbapenem resistantPseudomonas aeruginosa Int. J. Biol. Macromol.1321221–34
[23] [23] Shao J L, Wang B, Li J M, Jansen J A, Walboomers X F and Yang F 2019 Antibacterial effect and wound healing ability of silver nanoparticles incorporation into chitosan-based nanofibrous membranesMater. Sci. Eng.C981053–63
[24] [24] Shao J L, Yu N, Kolwijck E, Wang B, Tan K W, Jansen J A, Walboomers X F and Yang F 2017 Biological evaluation of silver nanoparticles incorporated into chitosan-based membranesNanomedicine122771–85
[25] [25] Sugioka K 2019 Hybrid femtosecond laser three-dimensional micro- and nanoprocessing: a reviewInt. J. Extrem. Manuf.1012003
[26] [26] Wang R-R, Zheng M-L, Zhang W-C, Liu J, Li T, Dong X-Z and Jin F 2022 Micropattern of silver/polyaniline core–shell nanocomposite achieved by maskless optical projection lithographyNano Lett.229823–30
[27] [27] Liu Y-H, Zhao Y-Y, Jin F, Dong X-Z, Zheng M-L, Zhao Z-S and Duan X-M 2021 /12 super resolution achieved in maskless optical projection nanolithography for efficient cross-scale patterningNano Lett.213915–21
[28] [28] Zhang A P, Qu X, Soman P, Hribar K C, Lee J W, Chen S C and He S L 2012 Rapid fabrication of complex 3D extracellular microenvironments by dynamic optical projection stereolithographyAdv. Mater.244266–70
[29] [29] Guo M, Li T, Zhang W-C, Duan Q, Dong X-Z, Liu J, Jin F and Zheng M-L 2023 Wetting of cell aggregates on microdisk topography structures achieved by maskless optical projection lithographySmall192300311
[30] [30] Bozuyuk U, Yasa O, Yasa I C, Ceylan H, Kizilel S and Sitti M 2018 Light-triggered drug release from 3D-printed magnetic chitosan microswimmersACS Nano129617–25
[31] [31] Zeng Z, Liu Y Y and Wei J J 2016 Recent advances in surface-enhanced raman spectroscopy (SERS): finite-difference time-domain (FDTD) method for SERS and sensing applicationsTrAC Trends Anal. Chem.75162–73
[32] [32] Bin F-C, Guo M, Li T, Zheng Y-C, Dong X-Z, Liu J, Jin F and Zheng M-L 2023 Carbazole-based anion ionic water-soluble two-photon initiator for achieving 3D hydrogel structuresAdv. Funct. Mater.332300293
[33] [33] Yu L M Y, Kazazian K and Shoichet M S 2007 Peptide surface modification of methacrylamide chitosan for neural tissue engineering applicationsJ. Biomed. Mater. Res.82A243–55
[34] [34] Xu Y, Deng Z C, Chen Y, Wu F F, Huang C and Hu Y 2023 Preparation and characterization of mussel-inspired hydrogels based on methacrylated catechol-chitosan and dopamine methacrylamideInt. J. Biol. Macromol.229443–51
[35] [35] Wu Y, Zheng Y L, Yang W L, Wang C C, Hu J H and Fu S K 2005 Synthesis and characterization of a novel amphiphilic chitosan–polylactide graft copolymerCarbohydrate Polym.59165–71
[36] [36] Ma G P, Zhang X D, Han J, Song G Q and Nie J 2009 Photo-polymeriable chitosan derivative prepared by Michael reaction of chitosan and polyethylene glycol diacrylate (PEGDA)Int. J. Biol. Macromol.45499–503
[37] [37] Armelao L, Bertoncello R and De Dominicis M 1997 Silver nanocluster formation in silica coatings by the sol-gel routeAdv. Mater.9736–41
[38] [38] Zajc A, Hanuza J, Wandas M and Dymiska L 2015 Determination of n-acetylation degree in chitosan using raman spectroscopySpectrochim. ActaA134114–20
[39] [39] Cloutis E, Szymanski P, Applin D and Goltz D 2016 Identification and discrimination of polycyclic aromatic hydrocarbons using Raman spectroscopyIcarus274211–30
[40] [40] De Gussem K, Vandenabeele P, Verbeken A and Moens L 2005 Raman spectroscopic study ofLactariusspores (Russulales, Fungi)Spectrochim. ActaA612896–908
[41] [41] Xie Y L, Yang S K, Mao Z M, Li P, Zhao C L, Cohick Z, Huang P-H and Huang T J 2014In situfabrication of 3D Ag@ZnO nanostructures for micro fluidic surface-enhanced raman scattering systemsACS Nano812175–84
[42] [42] Jun Y-S, Zhu Y G, Wang Y, Ghim D, Wu X H, Kim D and Jung H 2022 Classical and nonclassical nucleation and growth mechanisms for nanoparticle formationAnnu. Rev. Phys. Chem.73453–77
[43] [43] Masui K, Shoji S, Asaba K, Rodgers T C, Jin F, Duan X-M and Kawata S 2011 Laser fabrication of Au nanorod aggregates microstructures assisted by two-photon polymerizationOpt. Express1922786–96
[44] [44] De Yoreo J J and Vekilov P G 2003 Principles of crystal nucleation and growthRev. Mineral. Geochem.5457–93
[45] [45] Jin L and Bai R B 2002 Mechanisms of lead adsorption on chitosan/PVA hydrogel beadsLangmuir189765–70
[46] [46] Mehrabanian M, Fragouli D, Morselli D, Scarpellini A, Anyfantis G C and Athanassiou A 2015 Laser-induced localized formation of silver nanoparticles on chitosan if lms: study on particles size and density variationMater. Res. Express2105014
[47] [47] Li R R, Gui B, Mao H Y, Yang Y D, Chen D P and Xiong J J 2020 Self-concentrated surface-enhanced raman scattering-active droplet sensor with three-dimensional hot spots for highly sensitive molecular detection in complex liquid environmentsACS Sens.53420–31
[48] [48] Szekeres G P and Kneipp J 2019 SERS probing of proteins in gold nanoparticle agglomeratesFront. Chem.730
[49] [49] Feng S L, Hu Y X, Chen L and Lu X N 2022 Molecularly imprinted core-shell Au nanoparticles for 2,4-dichlorophenoxyacetic acid detection in milk using surface-enhanced Raman spectroscopyAnal. Chim. Acta1227340333
[50] [50] Lavado-Garca J, Prez-Rubio P, Cervera L and Gdia F 2022 The cell density effect in animal cell-based bioprocessing: questions, insights and perspectivesBiotechnol. Adv.60108017
Get Citation
Copy Citation Text
Bin Fan-Chun, Wu Xin-Yi, Liu Jie, Dong Xian-Zi, Li Teng, Duan Qi, Zhang Jian-Miao, Fujita Katsumasa, Zheng Mei-Ling. Micropattern of core-shell Ag@MCS/PEGDA nanoparticles fabricated by femtosecond laser maskless optical projection lithography[J]. International Journal of Extreme Manufacturing, 2025, 7(3): 35001
Category:
Received: Jul. 24, 2024
Accepted: Sep. 29, 2025
Published Online: Sep. 29, 2025
The Author Email: