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2022
DOI: 10.1021/acsnano.2c09396
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Self-Supporting Metal-Organic Framework-Based Nanoarrays for Electrocatalysis

Abstract: The replacement of powdery catalysts with self-supporting alternatives for catalyzing various electrochemical reactions is extremely important for the large-scale commercial application of renewable energy storage and conversion technologies. Metal-organic framework (MOF)-based nanoarrays possess tunable compositions, well-defined structure, abundant active sites, effective mass and electron transport, etc., which enable them to exhibit superior electrocatalytic performance in multiple electrochemical reaction… Show more

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Cited by 48 publications
(25 citation statements)
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“…So far, the controlled growth of MOFs on different substrate surfaces, especially chemically inert surfaces, remains a challenge because there are limited number of nucleation sites. [ 200 ] During the synthesis, surface defects, selected organic functional groups or metal layers on the surfaces provide accessible sites to allow the nucleation and conformal growth of MOFs. In a previous work, we have systematically investigated the growth of MOF nanoarrays on various substrates, such as Ni foam, Si or glass slides.…”
Section: Self‐supported 2d Mof For Electrocatalytic Water Splittingmentioning
confidence: 99%
“…So far, the controlled growth of MOFs on different substrate surfaces, especially chemically inert surfaces, remains a challenge because there are limited number of nucleation sites. [ 200 ] During the synthesis, surface defects, selected organic functional groups or metal layers on the surfaces provide accessible sites to allow the nucleation and conformal growth of MOFs. In a previous work, we have systematically investigated the growth of MOF nanoarrays on various substrates, such as Ni foam, Si or glass slides.…”
Section: Self‐supported 2d Mof For Electrocatalytic Water Splittingmentioning
confidence: 99%
“…Due to the easier adjustability of interlayer spacing, the interlayer metal ions of LDHs are capable of coordinating with organic ligands, including the conductive polymers and metal-organic framework to construct organic/LDHs heterojunctions to enhance the electrocatalytic activity of LDH [ 111 , 112 , 113 , 114 ]. Huang et al prepared the electron-rich NiFe-LDH loaded on carbon paper modified by polyaniline (PANI) via the first electrodeposition and followed by the hydrothermal method ( Figure 13 a) [ 113 ].…”
Section: Heterojunction Strategymentioning
confidence: 99%
“…Due to the easier adjustability of interlayer spacing, the interlayer metal ions of LDHs are capable of coordinating with organic ligands including the conductive polymers and metal-organic framework to construct organic/LDHs heterojunctions to enhance electrocatalytic activity of LDH [111][112][113][114]. Huang et al prepared the electron-rich NiFe-LDH loaded on carbon paper modified by polyaniline (PANI) via the first electrodeposition and followed by hydrothermal method (Figure 13a) [113].…”
Section: Organic Materialsmentioning
confidence: 99%