{"database":"biostudies-literature","file_versions":[],"scores":null,"additional":{"submitter":["Li J"],"funding":["Scientific Research and Technology Development Program of Guangxi","National Natural Science Foundation of China","Guilin University of Electronic Technology","National Key Research and Development Program of China"],"pagination":["26834-26842"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-EPMC9055546"],"repository":["biostudies-literature"],"omics_type":["Unknown"],"volume":["10(45)"],"pubmed_abstract":["CoNiP nanosheet array catalysts were successfully prepared on three-dimensional (3D) graphene foam using hydrothermal synthesis. These catalysts were prepared using 3D Ni-graphene foam (Ni/GF), comprising nickel foam as the 'skeleton' and reduced graphene oxide as the 'skin'. This unique continuous modified 'skeleton/skin' structure ensure that the catalysts had a large surface area, excellent conductivity, and sufficient surface functional groups, which promoted <i>in situ</i> CoNiP growth, while also optimizing the hydrolysis of sodium borohydride. The nanosheet arrays were fully characterized and showed excellent catalytic performance, as supported by density functional theory calculations. The hydrogen generation rate and activation energy are 6681.34 mL min<sup>-1</sup> g<sup>-1</sup>"],"journal":["RSC advances"],"pubmed_title":["A modified 'skeleton/skin' strategy for designing CoNiP nanosheets arrayed on graphene foam for on/off switching of NaBH<sub>4</sub> hydrolysis."],"pmcid":["PMC9055546"],"funding_grant_id":["191010-K","5187011196","551671062","2018YFB1502105","AD17195073","U1501242","51971068","2018YFB1502103","AA19182014","2017AD23029"],"pubmed_authors":["Li J","Zheng S","Xu F","Du Y","Rosei F","Wang J","Huang P","Sun L","Jurgen SH","Zou Y","Sven U","Hong X","Chu H","Luo Y","Li B","Wang Y","Wu X"],"additional_accession":[]},"is_claimable":false,"name":"A modified 'skeleton/skin' strategy for designing CoNiP nanosheets arrayed on graphene foam for on/off switching of NaBH<sub>4</sub> hydrolysis.","description":"CoNiP nanosheet array catalysts were successfully prepared on three-dimensional (3D) graphene foam using hydrothermal synthesis. These catalysts were prepared using 3D Ni-graphene foam (Ni/GF), comprising nickel foam as the 'skeleton' and reduced graphene oxide as the 'skin'. This unique continuous modified 'skeleton/skin' structure ensure that the catalysts had a large surface area, excellent conductivity, and sufficient surface functional groups, which promoted <i>in situ</i> CoNiP growth, while also optimizing the hydrolysis of sodium borohydride. The nanosheet arrays were fully characterized and showed excellent catalytic performance, as supported by density functional theory calculations. The hydrogen generation rate and activation energy are 6681.34 mL min<sup>-1</sup> g<sup>-1</sup>","dates":{"release":"2020-01-01T00:00:00Z","publication":"2020 Jul","modification":"2025-04-05T13:23:47.674Z","creation":"2025-04-05T13:23:47.674Z"},"accession":"S-EPMC9055546","cross_references":{"pubmed":["35515805"],"doi":["10.1039/d0ra01892a"]}}