Cargando…

Design of blueberry anthocyanin/TiO(2) composite layer-based photoanode and N-doped porous blueberry-derived carbon-loaded Ni nanoparticle-based counter electrode for dye-sensitized solar cells

P25/PBP (TiO(2), anthocyanins) prepared by combining PBP (blueberry peels) with P25, and N-doped porous carbon-supported Ni nanoparticles (Ni@NPC-X) prepared using blueberry-derived carbon were used for the application as photoanode and the counter electrode, respectively, in dye-sensitized solar ce...

Descripción completa

Detalles Bibliográficos
Autores principales: Qin, Xiang, Liu, Jingjing, Teng, Genhui, Liu, Baorui, Xie, Yanhui, Ma, Lin, Hu, Dongying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9987179/
https://www.ncbi.nlm.nih.gov/pubmed/36891495
http://dx.doi.org/10.1039/d3ra00545c
_version_ 1784901326976581632
author Qin, Xiang
Liu, Jingjing
Teng, Genhui
Liu, Baorui
Xie, Yanhui
Ma, Lin
Hu, Dongying
author_facet Qin, Xiang
Liu, Jingjing
Teng, Genhui
Liu, Baorui
Xie, Yanhui
Ma, Lin
Hu, Dongying
author_sort Qin, Xiang
collection PubMed
description P25/PBP (TiO(2), anthocyanins) prepared by combining PBP (blueberry peels) with P25, and N-doped porous carbon-supported Ni nanoparticles (Ni@NPC-X) prepared using blueberry-derived carbon were used for the application as photoanode and the counter electrode, respectively, in dye-sensitized solar cells (DSSCs) to create a new perspective for blueberry-based photo-powered energy systems. PBP was introduced into the P25 photoanode and carbonized to form a C-like structure after annealing that improved its adsorption capacity for N719 dye, contributing a 17.3% higher power conversion efficiency (PCE) of P25/PBP-Pt (5.82%) than that of P25-Pt (4.96%). The structure of the porous carbon changes from a flat surface to a petal-like structure due to the N doping by melamine, and the specific surface area increases. N-doped three-dimensional porous carbon supported the loading and reduced the agglomeration of Ni nanoparticles, reducing the charge transfer resistance, and providing a fast electron transfer path. The doping of Ni and N on the porous carbon worked synergistically to enhance the electrocatalytic activity of the Ni@NPC-X electrode. The PCE of the DSSCs assembled by Ni@NPC-1.5 and P25/PBP was 4.86%. Also, the Ni@NPC-1.5 electrode exhibited 116.12 F g(−1) and a capacitance retention rate of 98.2% (10 000 cycles), further confirming good electrocatalysis and cycle stability.
format Online
Article
Text
id pubmed-9987179
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-99871792023-03-07 Design of blueberry anthocyanin/TiO(2) composite layer-based photoanode and N-doped porous blueberry-derived carbon-loaded Ni nanoparticle-based counter electrode for dye-sensitized solar cells Qin, Xiang Liu, Jingjing Teng, Genhui Liu, Baorui Xie, Yanhui Ma, Lin Hu, Dongying RSC Adv Chemistry P25/PBP (TiO(2), anthocyanins) prepared by combining PBP (blueberry peels) with P25, and N-doped porous carbon-supported Ni nanoparticles (Ni@NPC-X) prepared using blueberry-derived carbon were used for the application as photoanode and the counter electrode, respectively, in dye-sensitized solar cells (DSSCs) to create a new perspective for blueberry-based photo-powered energy systems. PBP was introduced into the P25 photoanode and carbonized to form a C-like structure after annealing that improved its adsorption capacity for N719 dye, contributing a 17.3% higher power conversion efficiency (PCE) of P25/PBP-Pt (5.82%) than that of P25-Pt (4.96%). The structure of the porous carbon changes from a flat surface to a petal-like structure due to the N doping by melamine, and the specific surface area increases. N-doped three-dimensional porous carbon supported the loading and reduced the agglomeration of Ni nanoparticles, reducing the charge transfer resistance, and providing a fast electron transfer path. The doping of Ni and N on the porous carbon worked synergistically to enhance the electrocatalytic activity of the Ni@NPC-X electrode. The PCE of the DSSCs assembled by Ni@NPC-1.5 and P25/PBP was 4.86%. Also, the Ni@NPC-1.5 electrode exhibited 116.12 F g(−1) and a capacitance retention rate of 98.2% (10 000 cycles), further confirming good electrocatalysis and cycle stability. The Royal Society of Chemistry 2023-03-06 /pmc/articles/PMC9987179/ /pubmed/36891495 http://dx.doi.org/10.1039/d3ra00545c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Qin, Xiang
Liu, Jingjing
Teng, Genhui
Liu, Baorui
Xie, Yanhui
Ma, Lin
Hu, Dongying
Design of blueberry anthocyanin/TiO(2) composite layer-based photoanode and N-doped porous blueberry-derived carbon-loaded Ni nanoparticle-based counter electrode for dye-sensitized solar cells
title Design of blueberry anthocyanin/TiO(2) composite layer-based photoanode and N-doped porous blueberry-derived carbon-loaded Ni nanoparticle-based counter electrode for dye-sensitized solar cells
title_full Design of blueberry anthocyanin/TiO(2) composite layer-based photoanode and N-doped porous blueberry-derived carbon-loaded Ni nanoparticle-based counter electrode for dye-sensitized solar cells
title_fullStr Design of blueberry anthocyanin/TiO(2) composite layer-based photoanode and N-doped porous blueberry-derived carbon-loaded Ni nanoparticle-based counter electrode for dye-sensitized solar cells
title_full_unstemmed Design of blueberry anthocyanin/TiO(2) composite layer-based photoanode and N-doped porous blueberry-derived carbon-loaded Ni nanoparticle-based counter electrode for dye-sensitized solar cells
title_short Design of blueberry anthocyanin/TiO(2) composite layer-based photoanode and N-doped porous blueberry-derived carbon-loaded Ni nanoparticle-based counter electrode for dye-sensitized solar cells
title_sort design of blueberry anthocyanin/tio(2) composite layer-based photoanode and n-doped porous blueberry-derived carbon-loaded ni nanoparticle-based counter electrode for dye-sensitized solar cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9987179/
https://www.ncbi.nlm.nih.gov/pubmed/36891495
http://dx.doi.org/10.1039/d3ra00545c
work_keys_str_mv AT qinxiang designofblueberryanthocyanintio2compositelayerbasedphotoanodeandndopedporousblueberryderivedcarbonloadedninanoparticlebasedcounterelectrodefordyesensitizedsolarcells
AT liujingjing designofblueberryanthocyanintio2compositelayerbasedphotoanodeandndopedporousblueberryderivedcarbonloadedninanoparticlebasedcounterelectrodefordyesensitizedsolarcells
AT tenggenhui designofblueberryanthocyanintio2compositelayerbasedphotoanodeandndopedporousblueberryderivedcarbonloadedninanoparticlebasedcounterelectrodefordyesensitizedsolarcells
AT liubaorui designofblueberryanthocyanintio2compositelayerbasedphotoanodeandndopedporousblueberryderivedcarbonloadedninanoparticlebasedcounterelectrodefordyesensitizedsolarcells
AT xieyanhui designofblueberryanthocyanintio2compositelayerbasedphotoanodeandndopedporousblueberryderivedcarbonloadedninanoparticlebasedcounterelectrodefordyesensitizedsolarcells
AT malin designofblueberryanthocyanintio2compositelayerbasedphotoanodeandndopedporousblueberryderivedcarbonloadedninanoparticlebasedcounterelectrodefordyesensitizedsolarcells
AT hudongying designofblueberryanthocyanintio2compositelayerbasedphotoanodeandndopedporousblueberryderivedcarbonloadedninanoparticlebasedcounterelectrodefordyesensitizedsolarcells