The Next Frontier in Melt Electrospinning: Taming the Jet

被引:216
作者
Robinson, Thomas M. [1 ,2 ]
Hutmacher, Dietmar W. [3 ]
Dalton, Paul D. [1 ,2 ]
机构
[1] Univ Clin Wurzburg, Dept Funct Mat Med & Dent, Pleicherwall 2, D-97070 Wurzburg, Germany
[2] Univ Clin Wurzburg, Bavarian Polymer Inst, Pleicherwall 2, D-97070 Wurzburg, Germany
[3] Queensland Univ Technol, Inst Hlth & Biomed Innovat, 60 Musk Ave, Kelvin Grove 4059, Australia
关键词
3D printing; additive manufacturing; electrohydrodynamic; melt electrospinning writing; POLY(ETHER ETHER KETONE); EPSILON-CAPROLACTONE; RATIONAL DESIGN; FABRICATION; SCAFFOLDS; POLYMER; FIBERS; NANOFIBERS; BONE; MORPHOLOGY;
D O I
10.1002/adfm.201904664
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
There is a specialized niche for the electrohydrodynamic jetting of melts, from biomedical products to filtration and soft matter applications. The next frontier includes optics, microfluidics, flexible electronic devices, and soft network composites in biomaterial science and soft robotics. The recent emphasis on reproducibly direct-writing continual molten jets has enabled a spectrum of contemporary microscale 3D objects to be fabricated. One strong suit of melt processing is the capacity for the jet to solidify rapidly into a fiber, thus fixing a particular structure into position. The ability to direct-write complex and multiscaled architectures and structures has greatly contributed to a large number of recent studies, explicitly, toward fiber-hydrogel composites and fugitive inks, and has expanded into several biomedical applications such as cartilage, skin, periosteum, and cardiovascular tissue engineering. Following the footsteps of a publication that summarized melt electrowriting literature up to 2015, the most recent literature from then until now is reviewed to provide a continuous and comprehensive timeline that demonstrates the latest advances as well as new perspectives for this emerging technology.
引用
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页数:28
相关论文
共 204 条
[1]   Effects of Gradient and Offset Architectures on the Mechanical and Biological Properties of 3-D Melt Electrowritten (MEW) Scaffolds [J].
Abbasi, Naghmeh ;
Abdal-hay, Abdalla ;
Hamlet, Stephen ;
Graham, Elizabeth ;
Ivanovski, Saso .
ACS BIOMATERIALS SCIENCE & ENGINEERING, 2019, 5 (07) :3448-3461
[2]   Novel polycaprolactone/hydroxyapatite nanocomposite fibrous scaffolds by direct melt-electrospinning writing [J].
Abdal-hay, Abdalla ;
Abbasi, Naghmeh ;
Gwiazda, Marcin ;
Hamlet, Stephen ;
Ivanovski, Saso .
EUROPEAN POLYMER JOURNAL, 2018, 105 :257-264
[3]   On the way to clean and safe electrospinning-green electrospinning: emulsion and suspension electrospinning [J].
Agarwal, Seema ;
Greiner, Andreas .
POLYMERS FOR ADVANCED TECHNOLOGIES, 2011, 22 (03) :372-378
[4]   Melt-electrospinning of Polyphenylene Sulfide [J].
An, Ying ;
Yu, Shaoyang ;
Li, Shoumeng ;
Wang, Xun ;
Yang, Weimin ;
Yousefzadeh, Maryam ;
Bubakir, Mahmoud M. ;
Li, Haoyi .
FIBERS AND POLYMERS, 2018, 19 (12) :2507-2513
[5]  
[Anonymous], SMALL
[6]   Effect of melt and solution electrospinning on the formation and structure of poly(vinylidene fluoride) fibres [J].
Asai, Hanako ;
Kikuchi, Marina ;
Shimada, Naoki ;
Nakane, Koji .
RSC ADVANCES, 2017, 7 (29) :17593-17598
[7]   Periosteum tissue engineering in an orthotopic in vivo platform [J].
Baldwin, J. G. ;
Wagner, F. ;
Martine, L. C. ;
Holzapfel, B. M. ;
Theodoropoulos, C. ;
Bas, O. ;
Savi, F. M. ;
Werner, C. ;
De-Juan-Pardo, E. M. ;
Hutmacher, D. W. .
BIOMATERIALS, 2017, 121 :193-204
[8]   Degradation mechanisms of polycaprolactone in the context of chemistry, geometry and environment [J].
Bartnikowski, Michal ;
Dargaville, Tim R. ;
Ivanovski, Saso ;
Hutmacher, Dietmar W. .
PROGRESS IN POLYMER SCIENCE, 2019, 96 :1-20
[9]   Rational design and fabrication of multiphasic soft network composites for tissue engineering articular cartilage: A numerical model-based approach [J].
Bas, Onur ;
Lucarotti, Sara ;
Angella, Davide D. ;
Castro, Nathan J. ;
Meinert, Christoph ;
Wunner, Felix M. ;
Rank, Ernst ;
Vozzi, Giovanni ;
Klein, Travis J. ;
Catelas, Isabelle ;
De-Juan-Pardo, Elena M. ;
Hutmacher, Dietmar W. .
CHEMICAL ENGINEERING JOURNAL, 2018, 340 :15-23
[10]   An Integrated Design, Material, and Fabrication Platform for Engineering Biomechanically and Biologically Functional Soft Tissues [J].
Bas, Onur ;
D'Angella, Davide ;
Baldwin, Jeremy G. ;
Castro, Nathan J. ;
Wunner, Felix M. ;
Saidy, Navid T. ;
Kollmannsberger, Stefan ;
Reali, Alessandro ;
Rank, Ernst ;
De-Juan-Pardo, Elena M. ;
Hutmacher, Dietmar W. .
ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (35) :29430-29437