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Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode

The molecule 2′-O-apiosyl-6′-O-crotonic acid-betanin (called Achkiy) was obtained after an ecofriendly and low-cost purification process of the extract from the ayrampo seed cuticle. Results from EDS give us an idea of the organic elements present in the ayrampo cuticle layer composed of carbon, oxy...

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Autores principales: Rivera Tito, Harry Anderson, Hernández-Sosa, Gerardo, Romero-Nieto, Carlos, Regulska, Elzbieta, Jürgensen, Nils, Zimmermann, Johannes, Salazar-Salinas, Karim, Quintana Caceda, María Esther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057036/
https://www.ncbi.nlm.nih.gov/pubmed/35517963
http://dx.doi.org/10.1039/d0ra05543c
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author Rivera Tito, Harry Anderson
Hernández-Sosa, Gerardo
Romero-Nieto, Carlos
Regulska, Elzbieta
Jürgensen, Nils
Zimmermann, Johannes
Salazar-Salinas, Karim
Quintana Caceda, María Esther
author_facet Rivera Tito, Harry Anderson
Hernández-Sosa, Gerardo
Romero-Nieto, Carlos
Regulska, Elzbieta
Jürgensen, Nils
Zimmermann, Johannes
Salazar-Salinas, Karim
Quintana Caceda, María Esther
author_sort Rivera Tito, Harry Anderson
collection PubMed
description The molecule 2′-O-apiosyl-6′-O-crotonic acid-betanin (called Achkiy) was obtained after an ecofriendly and low-cost purification process of the extract from the ayrampo seed cuticle. Results from EDS give us an idea of the organic elements present in the ayrampo cuticle layer composed of carbon, oxygen and nitrogen. Further characterization analysis of ayrampo extract by Fourier Transform Infrared Spectrophotometry (FTIR) corroborated the presence of characteristic functional groups corresponding to carboxyl, carbonyls, hydroxyls and secondary amines. On the other hand, we have confirmed by absortion peak the glucose, apiosyl, crotonic acid and betanin at 227 nm, 276 nm, 291 nm and 534 nm bands respectively. Mass Spectrometry (MS) characterization was used finally to identify the electroactive Achkiy molecule. This molecule was tested in an Organic Light Emitting Diode (OLED) achieving a luminance of 4.8 Cd m(−2) when bias voltage of 16.5 V and a current of 34.1 mA was applied. In addition, the irradiance generated by the Achkiy layer reaches a value of ≈ 113.3 μW m(−2) emitting light with a λ ≈ 390.10 nm. These preliminary results report an interesting molecule extracted from a natural pigment wich emits light in the blue region.
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spelling pubmed-90570362022-05-04 Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode Rivera Tito, Harry Anderson Hernández-Sosa, Gerardo Romero-Nieto, Carlos Regulska, Elzbieta Jürgensen, Nils Zimmermann, Johannes Salazar-Salinas, Karim Quintana Caceda, María Esther RSC Adv Chemistry The molecule 2′-O-apiosyl-6′-O-crotonic acid-betanin (called Achkiy) was obtained after an ecofriendly and low-cost purification process of the extract from the ayrampo seed cuticle. Results from EDS give us an idea of the organic elements present in the ayrampo cuticle layer composed of carbon, oxygen and nitrogen. Further characterization analysis of ayrampo extract by Fourier Transform Infrared Spectrophotometry (FTIR) corroborated the presence of characteristic functional groups corresponding to carboxyl, carbonyls, hydroxyls and secondary amines. On the other hand, we have confirmed by absortion peak the glucose, apiosyl, crotonic acid and betanin at 227 nm, 276 nm, 291 nm and 534 nm bands respectively. Mass Spectrometry (MS) characterization was used finally to identify the electroactive Achkiy molecule. This molecule was tested in an Organic Light Emitting Diode (OLED) achieving a luminance of 4.8 Cd m(−2) when bias voltage of 16.5 V and a current of 34.1 mA was applied. In addition, the irradiance generated by the Achkiy layer reaches a value of ≈ 113.3 μW m(−2) emitting light with a λ ≈ 390.10 nm. These preliminary results report an interesting molecule extracted from a natural pigment wich emits light in the blue region. The Royal Society of Chemistry 2020-10-06 /pmc/articles/PMC9057036/ /pubmed/35517963 http://dx.doi.org/10.1039/d0ra05543c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Rivera Tito, Harry Anderson
Hernández-Sosa, Gerardo
Romero-Nieto, Carlos
Regulska, Elzbieta
Jürgensen, Nils
Zimmermann, Johannes
Salazar-Salinas, Karim
Quintana Caceda, María Esther
Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode
title Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode
title_full Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode
title_fullStr Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode
title_full_unstemmed Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode
title_short Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode
title_sort extraction of 2′-o-apiosyl-6′-o-crotonic acid-betanin from the ayrampo seed (opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057036/
https://www.ncbi.nlm.nih.gov/pubmed/35517963
http://dx.doi.org/10.1039/d0ra05543c
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