a.State Key Laboratory of Applied Organic Chemistry, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, China
b.State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Lanzhou 730000, China
c.Lanzhou Traditional Chinese Medicine Hospital of Orthopedics and Traumatology, Lanzhou 730000, China
d.Shandong Laboratory of Advanced Materials and Green Manufacturing at Yantai, Yantai Zhongke Research Institute of Advanced Materials and Green Chemical Engineering, Yantai 264006, China
guoyuxiong@licp.cas.cn (Y.X.G.)
puqs@lzu.edu.cn (Q.S.P.)
纸质出版日期:2024-6-1,
网络出版日期:2024-3-29,
收稿日期:2023-11-30,
修回日期:2024-2-18,
录用日期:2024-2-28
Scan for full text
Li, Y. X.; Wu, L. Y.; Yang, Y.; Lu, Y. Z.; Ji, Z. Y.; Guo, Y. X.; Wang, X. L.; Pu, Q. S. A dielectric ink combining acrylate and cyanate moieties for inkjet 3D printing with good thermal stability. Chinese J. Polym. Sci. 2024, 42, 766–774
Yi-Xuan Li, Liang-Ying Wu, Yan Yang, et al. A Dielectric Ink Combining Acrylate and Cyanate Moieties for Inkjet 3D Printing with Good Thermal Stability[J]. Chinese Journal of Polymer Science, 2024,42(6):766-774.
Li, Y. X.; Wu, L. Y.; Yang, Y.; Lu, Y. Z.; Ji, Z. Y.; Guo, Y. X.; Wang, X. L.; Pu, Q. S. A dielectric ink combining acrylate and cyanate moieties for inkjet 3D printing with good thermal stability. Chinese J. Polym. Sci. 2024, 42, 766–774 DOI: 10.1007/s10118-024-3114-8.
Yi-Xuan Li, Liang-Ying Wu, Yan Yang, et al. A Dielectric Ink Combining Acrylate and Cyanate Moieties for Inkjet 3D Printing with Good Thermal Stability[J]. Chinese Journal of Polymer Science, 2024,42(6):766-774. DOI: 10.1007/s10118-024-3114-8.
A dielectric ink with favorable properties for inkjet 3D printing was formulated. An internal dual three-dimensional cross-linked network structure resin was prepared by a combination of photocuring and thermal curing. These can be applied to the 3D printing of printed circuit boards and other electronic devices that require dielectric properties.
Inkjet 3D printing has potential in the additive manufacturing of electronic circuits and devices. However
inks that can be used for printing layers with
T
5%
>
300 °C or hardness
>
200 MPa have been rarely reported. Cyanate ester (CE) polymers have excellent thermal stability
high strength
and low shrinkage compared to other common dielectric inks for inkjet 3D printing
but cannot be quickly shaped by ultraviolet (UV) irradiation or thermal treatment. Combining CEs with UV-curable monomers may be a possible way to accelerate crosslinking
but there are challenges from the adverse effects of the dilution of both monomers. In this study
dielectric inks with acrylate and cyanate moieties were developed. The low viscosity and su
rface tension of the CE precursor (Bisphenol E cyanate ester) were combined with photocurable acrylate diluent monomers and cross-linker to realize an ink suitable for inkjet 3D printing. An internal dual three-dimensional cross-linked network structure resin was prepared by a combination of photocuring and thermal curing with
T
5%
up to 326.69 °C
hardness up to 431.84 MPa
dielectric constant of 2.70 at 8 GHz
and shrinkage of 1.64%. The developed dielectric inks can be applied to the 3D printing of printed circuit boards and other electronic devices that require dielectric properties.
Inkjet printingCyanate ester resin3D doubly cross-linked networkGood thermal stability
Karunakaran, S. K.; Arumugam, G. M.; Yang, W.; Ge, S.; Khan, S. N.; Lin, X.; Yang, G. Recent progress in inkjet-printed solar cells.J. Mater. Chem. A2019,7, 13873−13902..
Liang, Z.; Wang, X.; Feng, L.; Wu, X. Synthesis of UV and thermal dual curing oligomer for solder resist ink using ink-jet printing.J. Appl. Polym. Sci.2018,136, 47428..
Yang, W.; Dong, Z.; Guo, Z.; Sun, H. Copper particle-free ink with enhanced performance for inkjet-printed flexible UWB antennas.J. Mater. Chem. C 2023 ,11, 14429..
Du, Z.; Xing, R.; Cao, X.; Yu, X.; Han, Y. Symmetric and uniform coalescence of ink-jetting printed polyfluorene ink drops by controlling the droplet spacing distance and ink surface tension/viscosity ratio.Polymer2017,115, 45−51..
Yuan, S. J.; Meng, W. H. ; Du, A. H.; Cao, X. Y.; Zhao, Y.; Wang, J. X.; Jiang, L. Direct-writing structure color patterns on the electrospun colloidal fibers toward wearable materials.Chinese J. Polym. Sci.2019,37, 729−736..
Beedasy, V.; Smith, P. J. Printed electronics as prepared by inkjet printing.Materials2020,13, 704..
Jun, S.; Sanz-Izquierdo, B.; Heirons, J.; Mao, C. X.; Gao, S.; Bird, D.; McClelland, A. Circular polarised antenna fabricated with low-cost 3D and inkjet printing equipment.Electron. Lett.2017,53, 370−371..
Lemarchand, J.; Bridonneau, N.; Battaglini, N.; Carn, F.; Mattana, G.; Piro, B.; Zrig, S.; Noël, V. Challenges, prospects, and emerging applications of inkjet-printed electronics: a chemist’s point of view.Angew. Chem. Int. Ed.2022,61, e202200166..
Miskiewicz, P.; Koch, M.; Walker, D.; Meyer, F.; Wieder, S.; Haley, J.; Dutta, V. Inkjet printing as alternative approach to conventional spin-on material coatings. IEEE 21stEPTC, 2019 ..
Albrecht, A.; Rivadeneyra, A.; Abdellah, A.; Lugli, P.; Salmero´n, J. F. Inkjet printing and photonic sintering of silver and copper oxide nanoparticles for ultra-low-cost conductive patterns.J. Mater. Chem. C2016,4, 3546−3554..
Yang, W.; Cheng, X.; Guo, Z.; Sun, Q.; Wanga, J.; Wang, C. Design, fabrication and applications of flexible RFID antennas based on printed electronic materials and technologies.J. Mater. Chem. C2023,11, 406−425..
Sajedi-Moghaddam, A.; Rahmanian, E.; Naseri, N. Inkjet-printing technology for supercapacitor application: current state and perspectives.ACS Appl. Mater. Interfaces2020,12, 34487−34504..
Singh, M.; Haverinen, H. M.; Dhagat, P.; Jabbour, G. E. Inkjet printing—process and its applications.Adv. Mater.2010,22, 673−685..
Magazine, R.; Bochove, B. V.; Borandeh, S.; Seppala, J. 3D inkjet-printing of photo-crosslinkable resins for microlens fabrication.Addit. Manuf. 2022 ,50, 102534..
Chen, X. Z.; Luo, Q.; Ma, C. Q. Inkjet-printed organic solar cells and perovskite solar cells: progress, challenges, and prospect.Chinese J. Polym. Sci.2023,41, 1169−1197..
Kaçar, R.; Serin, R. B.; Uçar, E.; Ülkü, A. A review of high-end display technologies focusing on inkjet printed manufacturing.Mater. Today Commun.2023,35, 105534..
Hang, J.; Cheng, Y.; Li, J.; Shi, L.; Zhang, M. Inkjet printing of UV curable character ink and control of the dried droplets size.Adv. Mater. Res. 2012 ,463−464, 1368−1372..
Robin, M.; Kuai, W.; Amela-Cortes, M.; Cordier, S.; Molard, Y.; Mohammed-Brahim, T.; Jacques, E.; Harnois, M. Epoxy based ink as versatile material for inkjet-printed devices.ACS Appl. Mater. Interfaces2015,7, 21975−21984..
Derby, B. Inkjet printing of functional and structural materials: fluid property requirements, feature stability and resolution.Annu. Rev. Mater. Res.2010,40, 395−414..
Alamán, J.; López-Valdeolivas, M. a.; Alicante, R.; Medel, F. J.; Silva-Treviño, J.; Peña, J. I.; Sánchez-Somolinos, C. Photoacid catalyzed organic-inorganic hybrid inks for the manufacturing of inkjet-printed photonic devices.J. Mater. Chem. C2018,6, 3882−3894..
Iervolino, F.; Suriano, R.; Scolari, M.;Gelmi, I.; Castoldi, L.; Levi, M. Inkjet printing of a benzocyclobutene-based polymer as a low-kmaterial for electronic applications.ACS Omega2021,6, 15892−15902..
Zhang, F.; Tuck, C.; Hague, R.; He, Y.; Saleh, E.; Li, Y.; Sturgess, C.; Wildman, R. Inkjet printing of polyimide insulators for the 3D printing of dielectric materials for microelectronic applications.J. Appl. Polym. Sci.2016,133, 43361..
Du, Z.; Lin, Y.; Xing, R.; Cao, X.; Yu, X.; Han, Y. Controlling the polymer ink's rheological properties and viscoelasticity to suppress satellite droplets.Polymer2018,138, 75−82..
Beijing BroadTeko Intelligent Technology Co., L., Electronic ink, http://www.broadteko.com/).
Zhang, F.; Saleh, E.; Vaithilingam, J.; Li, Y.; Tuck, C. J.; Hague, R. J. M.; Wildman, R. D.; He, Y. Reactive material jetting of polyimide insulators for complex circuit board design.Addit. Manuf.2019,25, 477−484..
Wagner, A.; Mühlberger, M.; Paulik, C. Photoinitiator-free photopolymerization of acrylate-bismaleimide mixtures and their application for inkjet printing.J. Appl. Polym. Sci.2019,136, 47789..
Chang, C. J.; Tsai, H. Y.; Hsieh, C. C.; Chiu, W. Y. Improved chemical resistance of ink-jet printed micropatterns on glass by using dual-functional compositions.J. Appl. Polym. Sci.2013,130, 2046−2055..
Chandrasekaran, S.; Duoss, E. B.; Worsley, M. A.; Lewicki, J. P. 3D printing of high performance cyanate ester thermoset polymers.J. Mater. Chem. A 2018 ,6, 853-858..
Li, S.; Zhu, Y.; Wang, Y.; Wang, B.; Huang, Y.; Yu, T. Cyanate ester resin based composites with high toughness and low outgassing performances.Compos. Commun.2021,23, 100574..
Wang, M. W.; Jeng, R. J.; Lin, C. H. Origin of the rapid trimerization of cyanate ester in a benzoxazine/cyanate ester blend.Macromolecules2015,48, 2417−2421..
Gu, J.; Yang, X.; Li, C.; Kou, K. Synthesis of cyanate ester microcapsulesviasolvent evaporation technique and its application in epoxy resins as a healing agent.Ind. Eng. Chem. Res.2016,55, 10941−10946..
Liu, C.; He, Y.; Sun, M.; Zhang, X.; Zhang, B.; Bai, X. Influence of epoxy resin species on the curing behavior and adhesive properties of cyanate ester/poly(aryl ether nitrile) blends.Polymer2023,288, 126450−112659..
Le, X. T.; Tong, I. F.; Xu, M. Z.; You, Y.; Liu, X. B. PEN/BADCy interlayer dielectric films with tunable microstructuresviaan assist of temperature for enhanced frequency stability.Chinese J. Polym. Sci.2020,38, 1258−1266..
Liu, Z.; Fan, X.; Zhang, J.; Chen, L.; Tang, Y.; Kong, J.; Gu, J. PBO fibers/fluorine-containing liquid crystal compound modified cyanate ester wave-transparent laminated composites with excellent mechanical and flame retardance properties.J. Mater. Sci. Technol.2023,152, 16−29..
Tang, Y.; Dong, W.; Tang, L.; Zhang, Y.; Konga, J.; Gu, J. Fabrication and investigations on the polydopamine/KH-560 functionalized PBO fibers/cyanate ester wave-transparent composites.Compos. Commun.2018,8, 36−41..
Tang, Z.; Gong, J.; Cao, P.; Tao, L.; Pei, X.; Wang, T.; Zhang, Y.; Wang, Q.; Zhang, J. 3D printing of a versatile applicability shape memory polymer with high strength and high transition temperature.Chem. Eng. J. 2022 ,431, 134211..
Izu, K.; Tokoro, Y.; Oyama, T. Simultaneous improvement of mechanical properties and curing temperature of cyanate ester resin by in situ generated modifier polymer having phenolic OH group.Polymer2020,202, 122611−122618..
Zhang, J.; Wang, C.; Feng, W.; Tang, Y. Cyanate ester resins with superior dielectric, mechanical, and flame retardance properties obtained by introducing a fluorinated hyperbranched polyaryletherketone.Polym. Chem.2022,13, 2484−2494..
Tang, L.; Zhang, J.; Tang, Y.; Zhou, Y.; Lin, Y.; Liu, Z.; Kong, J.; Liu, T.; Gu, J. Fluorine/adamantane modified cyanate resins with wonderful interfacial bonding strength with PBO fibers.Compos. B Eng.2020,186, 107827..
Zhou, Z.; Li, Y.; Zhong, J.; Luo, Z.; Gong, C.; Zheng, Y.; Peng, S.; Yu, L.; Wu, L.; Xu, Y. High-performance cyanate ester resins with interpenetration networks for 3D printing.ACS Appl. Mater. Interfaces2020,12, 38682−38689..
Elder, B.; Neupane, R.; Tokita, E.; Ghosh, U.; Hales, S.; Kong, Y. L. Nanomaterial patterning in 3D printing.Adv. Mater.2020,32, 1907142..
Ghosh, U.; Ning, S.; Wang, Y.; Kong, Y. L. Addressing unmet clinical needs with 3D printing technologies.Adv. Healthc. Mater.2018,7, 1800147..
Pandiyan, S.; El-Kharouf, A.; Steinberger-Wilckens, R. Formulation of spinel based inkjet inks for protective layer coatings in SOFC interconnects.J. Colloid Interface Sci.2020,579, 82−95..
Seipel, S.; JunchunYu; Nierstrasz, V. Effect of physical parameters and temperature on the piezo-electric jetting behaviour of UV-curable photochromic inks.Sci. Rep.2020,10, 18841..
Zhou, F.; Liang, D.; Liu, S.; Guo, Z.; Wang, M.; Zhou, G. Water-based additive-free chromic inks for printing of flexible photochromics and electrochromics.ACS Appl. Mater. Interfaces2023,15, 49418−49426..
Liu, Z.; Fan, X.; Han, M.; Li, H.; Zhang, J.; Chen, L.; Zhu, Q.; Gu, J. Branched fluorine/adamantane interfacial compatibilizer for PBO fibers/cyanate ester wave-transparent laminated composites.Chin. J. Chem.2023,41, 939−950..
Fu, F.; Zhou, X.; Shen, M.; Wang, D.; Xu, X.; Shang, S.; Song, Z.; Song, J. Preparation of hydrophobic low-k epoxy resins with high adhesion using a benzocyclobutene-rosin modifier.ACS Sustainable Chem. Eng.2023,11, 5973−5985..
Wu, M.; Liu, X.; Zhou, Y.; Fu, L.; Pan, J.; Cao, B.; Liu, S.; Zhao, J.; Xie, W. Fluorinated anhydride-terminated imide oligomers toward high-performance epoxy thermosets enabled by hydroxyl elimination and low dielectric polarizability strategy.Chem. Eng. J.2022,437, 135435..
0
浏览量
70
Downloads
0
CSCD
关联资源
相关文章
相关作者
相关机构