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Development and application of photoconversion fluoropolymer films for greenhouses located at high or polar latitudes.
Gudkov, Sergey V; Simakin, Alexander V; Bunkin, Nikolay F; Shafeev, Georgy A; Astashev, Maxim E; Glinushkin, Alexey P; Grinberg, Marina A; Vodeneev, Vladimir A.
Afiliación
  • Gudkov SV; Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilova St, Moscow 119991, Russia. Electronic address: S_makariy@rambler.ru.
  • Simakin AV; Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilova St, Moscow 119991, Russia.
  • Bunkin NF; Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilova St, Moscow 119991, Russia; Bauman Moscow State Technical University, 2-nd Baumanskaya str. 5, Moscow 105005, Russia.
  • Shafeev GA; Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilova St, Moscow 119991, Russia.
  • Astashev ME; Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilova St, Moscow 119991, Russia; Institute of Cell Biophysics of the Russian Academy of Sciences, 3 Institutskaya St., Pushchino, Moscow 119991, Russia.
  • Glinushkin AP; All-Russian Research Institute of Phytopatology, ul. Institut 5, Bolshie Vyazemy, Moscow 143050, Russia.
  • Grinberg MA; Institute of Biology and Biomedicine, Lobachevsky State University of Nizhny Novgorod, 23 Gagarin Ave, Nizhny Novgorod 603950, Russia.
  • Vodeneev VA; Institute of Biology and Biomedicine, Lobachevsky State University of Nizhny Novgorod, 23 Gagarin Ave, Nizhny Novgorod 603950, Russia.
J Photochem Photobiol B ; 213: 112056, 2020 Dec.
Article en En | MEDLINE | ID: mdl-33142218
ABSTRACT
To convert and store energy in the process of photosynthesis, plants primarily use quanta of the red and blue parts of the spectrum. At high latitudes, the average daily intensity of red and blue parts of the spectrum is not very high; for many crops cultivated under greenhouse conditions, it reaches the sufficient level only on clear summer days. The problem of insufficient illumination in greenhouses is usually solved with artificial light sources. This article describes a technology for the manufacture of photoconversion fluoropolymer films for greenhouses. The fluoropolymer films described in the paper make use of original gold nanoparticles and nanoparticles with fluorescence in the blue or red region of the spectrum. In the polymer film, nanoparticles aggregate in the form of "beads", which enhances the field of the optical wave. The film photoconverts UV and violet light into blue and red light. Gold nanoparticles also partially convert energy in the green region of the spectrum (not used by plants) into heat, which is also important for agriculture at high latitudes. In addition, impregnation of gold nanoparticles into fluoropolymer significantly increases the lifetime of the film. The films described in the paper can significantly increase the productivity of greenhouses located at high latitudes. Plants cultivated under the films have more chlorophyll and a higher intensity of photosynthesis - although their system of distance stress signals is, to a certain degree, suppressed.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Fotosíntesis / Polímeros / Productos Agrícolas / Puntos Cuánticos / Nanopartículas del Metal / Colorantes Fluorescentes / Oro Idioma: En Revista: J Photochem Photobiol B Asunto de la revista: BIOLOGIA Año: 2020 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Fotosíntesis / Polímeros / Productos Agrícolas / Puntos Cuánticos / Nanopartículas del Metal / Colorantes Fluorescentes / Oro Idioma: En Revista: J Photochem Photobiol B Asunto de la revista: BIOLOGIA Año: 2020 Tipo del documento: Article