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261“…Here we investigated whether humans could reproduce the original color of bleached fabrics. We treated 12 different fabric samples with a commercial bleaching product. …”
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262“…This review provides a summary of the fabrication, properties, and applications of MR elastomers made of various elastomeric materials.…”
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263por Kostajnšek, Klara, Dimitrovski, Krste, Kadoğlu, Hüseyin, Çelik, Pinar, Başal Bayraktar, Güldemet, Bedez Üte, Tuba, Duran, Deniz, Ertekin, Mustafa, Demšar, Andrej, Bizjak, Matejka“…The aim of this work is to give a comprehensive overview of the use of PBT yarns in woven structure, with the aim of improving the elastic properties of cotton-like fabrics. The experimental part was divided into three main sequences to investigate the fabric properties (physical, elastic, UPF, comfort) influenced by (1) PBT-containing yarn structure, (2) weave and fabric structure (basic weaves and complex weaves) with PBT in weft direction, and (3) processing sequence—thermal treatment of PBT yarns or fabrics after weaving. …”
Publicado 2021
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264“…Replications approaches require fabrication of mould or master and we describe different methods of mould manufacture, including mechanical (micro-cutting; ultrasonic machining), energy-assisted methods (electrodischarge machining, micro-electrochemical machining, laser ablation, electron beam machining, focused ion beam (FIB) machining), traditional micro-electromechanical systems (MEMS) processes, as well as mould fabrication approaches for curved surfaces. …”
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265“…In this study, two major techniques were developed to fabricate silver-deposited conductive fibers. First, a droplet-coating method was adopted to coat a nylon fiber with silver nanoparticles (AgNPs) and silver nanowires (AgNWs). …”
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266“…Finally, in addition to protein framework fabrication, sclx(8) enables de novo structure determination.…”
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268por Demina, Tatiana S., Kilyashova, Liubov A., Popyrina, Tatiana N., Svidchenko, Eugenia A., Bhuniya, Sankarprasad, Akopova, Tatiana A., Grandfils, Christian“…Biodegradable polymeric microparticles are widely used in drug delivery systems with prolonged-release profiles and/or cell microcarriers. Their fabrication via the oil/water emulsion solvent evaporation technique has normally required emulsifiers in the aqueous phase. …”
Publicado 2021
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270“…Polyester (PET) and polyamide (PA) are two of the most important synthetic fibres, accounting for about 60% of the total world fibre production. Synthetic fabrics are now widely used for clothing, carpets, and a variety of other products. …”
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271“…Herein we highlight non-covalent interaction to fabricate nanoparticular subunit vaccines.…”
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272por Liu, Wei, Liu, Kun, Du, Haishun, Zheng, Ting, Zhang, Ning, Xu, Ting, Pang, Bo, Zhang, Xinyu, Si, Chuanling, Zhang, Kai“…Herein, recent progress on the fabrication and applications of cellulose nanopaper is summarized and discussed based on the analyses of the latest studies. …”
Publicado 2022
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273
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274“…Sensors designed and developed using a wide range of fabrication techniques have been integrated with communication modules for transceiving signals. …”
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275por Bashir, Taseer, Sapri, Ahmed Mohammed Saaduddin, Tiwari, Aanshika, Basaqr, Abdulrahman A., Almoqiteef, Fahd Mohammad Nasser, Zainab, A., Ahmad, Naeem, Kamal, DeemaEnlace del recurso
Publicado 2022
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276por Brun, Pierre-Thomas“…We discuss how the universality, robustness, and ultimate regularity of these out-of-equilibrium processes could serve as a basis for new fabrication paradigms, where instabilities are directed to generate target architected solids obtained without each element laid in place by direct mechanized intervention.…”
Publicado 2022
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277por Zhang, Yufan, Zhou, Jiahui, Zhang, Yue, Zhang, Desuo, Yong, Ken Tye, Xiong, Jiaqing“…This review summarizes and highlights the latest breakthroughs of elastic fibers/fabrics for wearables and bioelectronics, aiming to offer insights into elasticity mechanisms, production methods, and electrical components integration strategies with fibers/fabrics, presenting a profile of elastic fibers/fabrics for energy management, sensors, e‐skins, thermal management, personal protection, wound healing, biosensing, and drug delivery. …”
Publicado 2022
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278“…Our findings validate a straightforward route to fabricate mechanically adaptive devices for a variety of (biomedical) uses, notably optogenetic implants whose overall shape, mechanical contrast, and optical channels can all be defined by photolithography.…”
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279por Barring, Olof, Barroso Lopez, Maite, Cancio, German, Chapeland, Sylvain, Cons, Lionel, Poznanski, Piotr, Defert, Philippe, Iven, Jan, Kleinwort, Thorsten, Panzer-Steindel, Bernd, Polok, Jaroslaw, Rafflin, Catherine, Silverman, Alan, Smith, Tim, Van Eldik, Jan, Biasotto, Massimo, Aiftimiei, Cristine, Ferro, Enrico, Maron, Gaetano, Chierici, Andrea, Dell'agnello, Luca, Serra, Marco, Michelotti, Michele, Roblitz, Thomas, Schintke, Florian, Hess, Lord, Lindenstruth, Volker, Pister, Frank, Steinbeck, Timm Morten, Groep, David, Steenbakkers, Martijn, Anderson, Paul, Colles, Tim, Holt, Alexander, Scobie, Alastair, George, Michael, Garcia Leiva, Rafael A.“…This article describes the architecture behind the designed fabric management system and the status of the different developments. …”
Publicado 2003
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280por Zhou, Mengmeng, Liu, Xiaohui, Xu, Fengjiao, Pei, Yongbing, Wu, Lianbin, Tang, Long-Cheng“…In this work, a durable superhydrophobic fabric was fabricated by using a facile UV-induced surface covalent modification strategy. 2-isocyanatoethylmethacrylate (IEM) containing isocyanate groups can react with the pre-treated hydroxylated fabric, producing IEM molecules covalently grafted onto the fabric’s surface, and the double bonds of IEM and dodecafluoroheptyl methacrylate (DFMA) underwent a photo-initiated coupling reaction under UV light radiation, resulting in the DFMA molecules further grafting onto the fabric’s surface. …”
Publicado 2023
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