Fungal Nanotechnology
Fungal Nanotechnologies (FN) 1 and 2 provide updated and comprehensive information that deals with the green and sustainable production of metal- and organic-based nanostructures by various fungal species. Additionally, intracellular and extracellular mechanisms will be investigated, as well as fung...
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Year of Publication: | 2021 |
Language: | English |
Physical Description: | 1 electronic resource (364 p.) |
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035 | |a (EXLCZ)995400000000043470 | ||
041 | 0 | |a eng | |
100 | 1 | |a Abd-Elsalam, Kamel A. |4 edt | |
245 | 1 | 0 | |a Fungal Nanotechnology |
260 | |a Basel, Switzerland |b MDPI - Multidisciplinary Digital Publishing Institute |c 2021 | ||
300 | |a 1 electronic resource (364 p.) | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
520 | |a Fungal Nanotechnologies (FN) 1 and 2 provide updated and comprehensive information that deals with the green and sustainable production of metal- and organic-based nanostructures by various fungal species. Additionally, intracellular and extracellular mechanisms will be investigated, as well as fungal nanotechnology applications in the biomedical, environmental, and agri-food sectors. FN is still in its infant stage; therefore, many studies should be focused on this area. Plants, animal and humans will benefit greatly from this, and efficient and ecologically friendly approaches should be created. | ||
546 | |a English | ||
650 | 7 | |a Technology: general issues |2 bicssc | |
653 | |a aflatoxins | ||
653 | |a Aspergillus section Flavi | ||
653 | |a chitosan | ||
653 | |a nanocomposites | ||
653 | |a fungal nanotechnology | ||
653 | |a Trichoderma spp. | ||
653 | |a ZnO nanoparticles | ||
653 | |a antibacterial activity Xanthomonas oryzae pv. oryzae | ||
653 | |a co-cultivation | ||
653 | |a secondary metabolites | ||
653 | |a biotransformation | ||
653 | |a biomineralization | ||
653 | |a metal oxide nanoparticles | ||
653 | |a nanoparticle dissolution | ||
653 | |a nanoparticle mobility | ||
653 | |a fungal leaching | ||
653 | |a ecotoxicity | ||
653 | |a nanomaterial | ||
653 | |a nanosensors | ||
653 | |a phytopathogens | ||
653 | |a zinc | ||
653 | |a endophytic bacteria | ||
653 | |a silver nanoparticles | ||
653 | |a Magnaporthe oryzae | ||
653 | |a antifungal activity | ||
653 | |a oyster mushroom | ||
653 | |a application | ||
653 | |a antibacterial | ||
653 | |a anticancer | ||
653 | |a antioxidant | ||
653 | |a nanohybrids | ||
653 | |a polymer-metal composites | ||
653 | |a antifungal | ||
653 | |a postharvest | ||
653 | |a Fusarium | ||
653 | |a synthesis | ||
653 | |a nanoparticles | ||
653 | |a mechanism | ||
653 | |a medicine | ||
653 | |a agriculture | ||
653 | |a nanofactory | ||
653 | |a toxicity | ||
653 | |a copper (I) iodide | ||
653 | |a composites | ||
653 | |a atomic force microscopy | ||
653 | |a Vicia faba | ||
653 | |a plant disease | ||
653 | |a root rot | ||
653 | |a R. solani | ||
653 | |a Se-NPs | ||
653 | |a nano-biosynthesis | ||
653 | |a plant promotion | ||
653 | |a metal oxides | ||
653 | |a nano-fungicides | ||
653 | |a pathogenic fungi | ||
653 | |a protein profiling | ||
653 | |a radical scavenging activity | ||
653 | |a resistance | ||
653 | |a homeostasis | ||
653 | |a fungal-metal interaction | ||
653 | |a lichen | ||
653 | |a green synthesis | ||
653 | |a eco-friendly | ||
653 | |a antimicrobial | ||
653 | |a MgO-NPs | ||
653 | |a optimization | ||
653 | |a mosquitocidal and repellence activity | ||
653 | |a tannery effluents | ||
653 | |a chromium ion | ||
653 | |a nanoantifungal | ||
653 | |a mycotoxin degradation | ||
653 | |a theragnostic | ||
653 | |a veterinary | ||
653 | |a bamboo | ||
653 | |a Ag/TiO2 | ||
653 | |a visible light photoactivity | ||
653 | |a energy storage | ||
776 | |z 3-0365-1744-8 | ||
776 | |z 3-0365-1743-X | ||
700 | 1 | |a Abd-Elsalam, Kamel A. |4 oth | |
906 | |a BOOK | ||
ADM | |b 2023-12-15 05:52:06 Europe/Vienna |f system |c marc21 |a 2022-04-04 09:22:53 Europe/Vienna |g false | ||
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