Cargando…

A tube-like Pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic H(2) production in a wide pH range and seawater

Coordination polymers (CPs) have emerged as promising candidates for photocatalytic H(2) production owing to their structural tailorability and functional diversity. However, the development of CPs with high energy transfer efficiency for highly efficient photocatalytic H(2) production in a wide pH...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Jieling, Sun, Shihao, Gao, Ningshuang, Li, Hua, Liang, Kun, Hai, Jun, He, Suisui, Mu, Xijiao, Wang, Baodui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10295160/
https://www.ncbi.nlm.nih.gov/pubmed/37383071
http://dx.doi.org/10.1039/d3na00252g
_version_ 1785063354226704384
author Li, Jieling
Sun, Shihao
Gao, Ningshuang
Li, Hua
Liang, Kun
Hai, Jun
He, Suisui
Mu, Xijiao
Wang, Baodui
author_facet Li, Jieling
Sun, Shihao
Gao, Ningshuang
Li, Hua
Liang, Kun
Hai, Jun
He, Suisui
Mu, Xijiao
Wang, Baodui
author_sort Li, Jieling
collection PubMed
description Coordination polymers (CPs) have emerged as promising candidates for photocatalytic H(2) production owing to their structural tailorability and functional diversity. However, the development of CPs with high energy transfer efficiency for highly efficient photocatalytic H(2) production in a wide pH range still faces many challenges. Here we constructed a novel tube-like Pd(ii) coordination polymer with well-distributed Pd nanoparticles (denoted as Pd/Pd(ii)CPs) based on the coordination assembly of rhodamine 6G and Pd(ii) ions and further photo-reduction under visible light irradiation. Both the Br(−) ion and double solvent play a key role in forming the hollow superstructures. The resulting tube-like Pd/Pd(ii)CPs exhibit high stability in aqueous solution with the pH range from 3 to 14 due to the high Gibbs free energies of protonation and deprotonation, which provides the feasibility of photocatalytic hydrogen generation in a wide pH range. Electromagnetic field calculations showed that the tube-like Pd/Pd(ii)CPs have a good confinement effect on light. Therefore, the H(2) evolution rate could reach 112.3 mmol h(−1) g(−1) at pH 13 under visible light irradiation, which is far superior to those of reported coordination polymer-based photocatalysts. Moreover, such Pd/Pd(ii)CPs could also reach a H(2) production rate of 37.8 mmol h(−1) g(−1) in seawater under visible light with low optical density (40 mW cm(−2)) close to morning or cloudy sunlight. The above unique characteristics make the Pd/Pd(ii)CPs possess great potential for practical applications.
format Online
Article
Text
id pubmed-10295160
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher RSC
record_format MEDLINE/PubMed
spelling pubmed-102951602023-06-28 A tube-like Pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic H(2) production in a wide pH range and seawater Li, Jieling Sun, Shihao Gao, Ningshuang Li, Hua Liang, Kun Hai, Jun He, Suisui Mu, Xijiao Wang, Baodui Nanoscale Adv Chemistry Coordination polymers (CPs) have emerged as promising candidates for photocatalytic H(2) production owing to their structural tailorability and functional diversity. However, the development of CPs with high energy transfer efficiency for highly efficient photocatalytic H(2) production in a wide pH range still faces many challenges. Here we constructed a novel tube-like Pd(ii) coordination polymer with well-distributed Pd nanoparticles (denoted as Pd/Pd(ii)CPs) based on the coordination assembly of rhodamine 6G and Pd(ii) ions and further photo-reduction under visible light irradiation. Both the Br(−) ion and double solvent play a key role in forming the hollow superstructures. The resulting tube-like Pd/Pd(ii)CPs exhibit high stability in aqueous solution with the pH range from 3 to 14 due to the high Gibbs free energies of protonation and deprotonation, which provides the feasibility of photocatalytic hydrogen generation in a wide pH range. Electromagnetic field calculations showed that the tube-like Pd/Pd(ii)CPs have a good confinement effect on light. Therefore, the H(2) evolution rate could reach 112.3 mmol h(−1) g(−1) at pH 13 under visible light irradiation, which is far superior to those of reported coordination polymer-based photocatalysts. Moreover, such Pd/Pd(ii)CPs could also reach a H(2) production rate of 37.8 mmol h(−1) g(−1) in seawater under visible light with low optical density (40 mW cm(−2)) close to morning or cloudy sunlight. The above unique characteristics make the Pd/Pd(ii)CPs possess great potential for practical applications. RSC 2023-05-25 /pmc/articles/PMC10295160/ /pubmed/37383071 http://dx.doi.org/10.1039/d3na00252g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Jieling
Sun, Shihao
Gao, Ningshuang
Li, Hua
Liang, Kun
Hai, Jun
He, Suisui
Mu, Xijiao
Wang, Baodui
A tube-like Pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic H(2) production in a wide pH range and seawater
title A tube-like Pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic H(2) production in a wide pH range and seawater
title_full A tube-like Pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic H(2) production in a wide pH range and seawater
title_fullStr A tube-like Pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic H(2) production in a wide pH range and seawater
title_full_unstemmed A tube-like Pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic H(2) production in a wide pH range and seawater
title_short A tube-like Pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic H(2) production in a wide pH range and seawater
title_sort tube-like pd@coordination polymer with enhanced solar light harvesting for boosting photocatalytic h(2) production in a wide ph range and seawater
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10295160/
https://www.ncbi.nlm.nih.gov/pubmed/37383071
http://dx.doi.org/10.1039/d3na00252g
work_keys_str_mv AT lijieling atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT sunshihao atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT gaoningshuang atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT lihua atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT liangkun atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT haijun atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT hesuisui atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT muxijiao atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT wangbaodui atubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT lijieling tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT sunshihao tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT gaoningshuang tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT lihua tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT liangkun tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT haijun tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT hesuisui tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT muxijiao tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater
AT wangbaodui tubelikepdcoordinationpolymerwithenhancedsolarlightharvestingforboostingphotocatalytich2productioninawidephrangeandseawater