The History of Electrospinning: Past, Present, and Future Developments

Author:

Keirouz Antonios123ORCID,Wang Zhe1,Reddy Vundrala Sumedha4,Nagy Zsombor Kristóf5ORCID,Vass Panna5ORCID,Buzgo Matej6ORCID,Ramakrishna Seeram4ORCID,Radacsi Norbert1ORCID

Affiliation:

1. School of Engineering Institute for Materials and Processes The University of Edinburgh King's Buildings Edinburgh EH9 3FB UK

2. Empa Swiss Federal Laboratories for Materials Science and Technology Biomimetic Membranes and Textiles St. Gallen CH‐9014 Switzerland

3. Centre for Bioengineering and Biomedical Technologies (CBio) Department of Chemical Engineering University of Bath Bath BA2 7AY UK

4. Centre for Nanotechnology and Sustainability Department of Mechanical Engineering National University of Singapore Singapore 119260 Singapore

5. Department of Organic Chemistry and Technology Budapest University of Technology and Economics (BME) Műegyetem rakpart 3 Budapest H‐1111 Hungary

6. Biofabics R. Alfredo Allen 455 Porto 4200‐135 Portugal

Abstract

AbstractElectrospinning has rapidly progressed over the past few decades as an easy and versatile way to fabricate fibers with diameters ranging from micrometers to tens of nanometers that present unique and intricate morphologies. This has led to the conception of new technologies and diverse methods that exploit the basic electrohydrodynamic phenomena of the electrospinning process, which has in turn led to the invention of novel apparatuses that have reshaped the field. Research on revamping conventional electrospinning has principally focused on achieving three key objectives: upscaling the process while retaining consistent morphological traits, developing 3D nanofibrous macrostructures, and formulating novel fiber configurations. This review introduces an extensive group of diverse electrospinning techniques and presents a comperative study based on the apparatus type and output. Then, each process's advantages and limitations are critically assessed to identify the bona fide practicability and relevance of each technological breakthrough. Finally, the outlook on future developments of advanced electrospinning technologies is outlined, with an emphasis on upscaling, translational research, sustainable manufacturing and prospective solutions to current shortcomings.

Publisher

Wiley

Subject

Industrial and Manufacturing Engineering,Mechanics of Materials,General Materials Science

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