Electrospun Carbon Nanofibers from Biomass and Biomass Blends

PDF Publication Title:

Electrospun Carbon Nanofibers from Biomass and Biomass Blends ( electrospun-carbon-nanofibers-from-biomass-and-biomass-blend )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 015

Polymers 2021, 13, 1071 15 of 20 35. Liu, H.; Li, Y.; Yuan, M.; Sun, G.; Liao, Q.; Zhang, Y. Solid and macroporous Fe3C/N-C nanofibers with enhanced electromagnetic wave absorbability. Sci. Rep. 2018, 8, 16832. [CrossRef] 36. Lekota, M.W.; Mpupa, A.; Dimpe, K.M.; Nomngongo, P.N. Preparation of ferric oxide-aluminium oxide carbon nanofiber nanocomposites for ultrasound-assisted dispersive magnetic solid phase extraction of 17-beta estradiol in wastewater. Emerg. Contam. 2020, 6, 162–171. [CrossRef] 37. Ponnamma, D.; Aljarod, O.; Parangusan, H.; Ali Al-Maadeed, M. Al Electrospun nanofibers of PVDF-HFP composites containing magnetic nickel ferrite for energy harvesting application. Mater. Chem. Phys. 2020, 239, 122257. [CrossRef] 38. Amini, F.; Blachowicz, T.; Ehrmann, A. Systematic study of magnetization reversal in beaded fibers from different magnetic materials. J. Magn. Magn. Mater. 2021, 529, 167855. [CrossRef] 39. Kerker, E.; Steinhäußer, D.; Mamun, A.; Trabelsi, M.; Fiedler, J.; Sabantina, L.; Juhász Junger, I.; Schiek, M.; Ehrmann, A.; Kaschuba, R. Spectroscopic investigation of highly-scattering nanofiber mats during drying and film formation. Optik 2020, 208, 164081. [CrossRef] 40. Garg, C.; Yang, S.H.; Phung, T.; Pushp, A.; Parkin, S.S.P. Dramatic influence of curvature of nanowire on chiral domain wall velocity. Sci. Adv. 2017, 3, e1602804. [CrossRef] 41. Blachowicz, T.; Ehrmann, A. Magnetization reversal in bent nanofibers of different cross sections. J. Appl. Phys. 2018, 124, 152112. [CrossRef] 42. Döpke, C.; Grothe, T.; Steblinski, P.; Klöcker, M.; Sabantina, L.; Kosmalska, D.; Blachowicz, T.; Ehrmann, A. Magnetic nanofiber mats for data storage and transfer. Nanomaterials 2019, 9, 92. [CrossRef] [PubMed] 43. Asmatulu, R.; Khan, W.S. Chapter 7—Electrospun nanofibers for filtration applications. In Synthesis and Applications of Electrospun Nanofibers; Asmatulu, R., Khan, W.S., Eds.; Micro and Nano Technologies; Elsevier: Amsterdam, The Netherlands, 2019; pp. 135–152; ISBN 978-0-12-813914-1. 44. Xiong, J.; Zhou, M.; Zhang, H.; Quan, Z.; Wang, R.; Qin, X. Sandwich-structured fibrous membranes with low filtration resistance for effective PM 2.5 capture via one-step needleless electrospinning. Mater. Res. Express 2018, 6, 035027. [CrossRef] 45. Yalcinkaya, F. A review on advanced nanofiber technology for membrane distillation. J. Eng. Fiber. Fabr. 2019, 14, 1558925018824901. [CrossRef] 46. Mohammed, H.A.; Yaacob, M.H. Chapter 20—Polyaniline-graphite nanocomposite based modified cladding optical fiber gas sensors. In Handbook of Polymer Nanocomposites for Industrial Applications; Hussain, C.M., Ed.; Micro and Nano Technologies; Elsevier: Amsterdam, The Netherlands, 2021; pp. 545–570; ISBN 978-0-12-821497-8. 47. Chi, Q.; Zhou, Y.; Feng, Y.; Cui, Y.; Zhang, Y.; Zhang, T.; Chen, Q. Excellent energy storage performance of polyetherimide filled by oriented nanofibers with optimized diameters. Mater. Today Energy 2020, 18, 100516. [CrossRef] 48. Behera, A.; Mallick, P. Chapter 20—Application of nanofibers in aerospace industry. In Fiber-Reinforced Nanocomposites: Fundamen- tals and Applications; Han, B., Sharma, S., Nguyen, T.A., Longbiao, L., Bhat, K.S., Eds.; Micro and Nano Technologies; Elsevier: Amsterdam, The Netherlands, 2020; pp. 449–457; ISBN 978-0-12-819904-6. 49. Wang, Y.; Wei, Y.; Wang, B.; Jing, P.; Zhang, Y.; Zhang, Y.; Wang, Q.; Wu, H. Bio-assisted engineering of hierarchical porous carbon nanofiber host in-situ embedded with iron carbide nanocatalysts toward high-performance Li–S batteries. Carbon N. Y. 2021, 177, 60–70. [CrossRef] 50. Serbezeanu, D.; Popa, A.M.; Stelzig, T.; Sava, I.; Rossi, R.M.; Fortunato, G. Preparation and characterization of thermally stable polyimide membranes by electrospinning for protective clothing applications. Text. Res. J. 2015, 85, 1763–1775. [CrossRef] 51. Mathew, J.; Joy, J.; George, S.C. Potential applications of nanotechnology in transportation: A review. J. King Saud Univ. Sci. 2019, 31, 586–594. [CrossRef] 52. Kalalinia, F.; Taherzadeh, Z.; Jirofti, N.; Amiri, N.; Foroghinia, N.; Beheshti, M.; Bazzaz, B.S.F.; Hashemi, M.; Shahroodi, A.; Pishavar, E.; et al. Evaluation of wound healing efficiency of vancomycin-loaded electrospun chitosan/poly ethylene oxide nanofibers in full thickness wound model of rat. Int. J. Biol. Macromol. 2021, 177, 100–110. [CrossRef] 53. Luu, Y.K.; Kim, K.; Hsiao, B.S.; Chu, B.; Hadjiargyrou, M. Development of a nanostructured DNA delivery scaffold via electrospinning of PLGA and PLA–PEG block copolymers. J. Control. Release 2003, 89, 341–353. [CrossRef] 54. Subbiah, T.; Bhat, G.S.; Tock, R.W.; Parameswaran, S.; Ramkumar, S.S. Electrospinning of nanofibers. J. Appl. Polym. Sci. 2005, 96, 557–569. [CrossRef] 55. Ramakrishna, S.; Fujihara, K.; Teo, W.-E.; Yong, T.; Ma, Z.; Ramaseshan, R. Electrospun nanofibers: Solving global issues. Mater. Today 2006, 9, 40–50. [CrossRef] 56. Pant, B.; Park, M.; Park, S.-J. Drug Delivery Applications of Core-Sheath Nanofibers Prepared by Coaxial Electrospinning: A Review. Pharmaceutics 2019, 11, 305. [CrossRef] 57. Barnes, C.P.; Sell, S.A.; Knapp, D.C.; Walpoth, B.H.; Brand, D.D.; Bowlin, G.L. Preliminary Investigation of Electrospun Collagen and Polydioxanone for Vascular Tissue Engineering Applications. Int. J. Electrospun Nanofibers Appl. 2007, 1, 73–87. 58. Welle, A.; Kröger, M.; Döring, M.; Niederer, K.; Pindel, E.; Chronakis, I.S. Electrospun aliphatic polycarbonates as tailored tissue scaffold materials. Biomaterials 2007, 28, 2211–2219. [CrossRef] [PubMed] 59. Wang, L.; Ali, J.; Zhang, C.; Mailhot, G.; Pan, G. Simultaneously enhanced photocatalytic and antibacterial activities of TiO2/Ag composite nanofibers for wastewater purification. J. Environ. Chem. Eng. 2020, 8, 102104. [CrossRef]

PDF Image | Electrospun Carbon Nanofibers from Biomass and Biomass Blends

PDF Search Title:

Electrospun Carbon Nanofibers from Biomass and Biomass Blends

Original File Name Searched:

88145ac687f0c36c7096f236fabe2cba856c.pdf

DIY PDF Search: Google It | Yahoo | Bing

Sulfur Deposition on Carbon Nanofibers using Supercritical CO2 Sulfur Deposition on Carbon Nanofibers using Supercritical CO2. Gamma sulfur also known as mother of pearl sulfur and nacreous sulfur... More Info

CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com (Standard Web Page)