2018
DOI: 10.1002/admi.201800332
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Hierarchical Nanoporous Copper Fabricated by One‐Step Dealloying Toward Ultrasensitive Surface‐Enhanced Raman Sensing

Abstract: Geometry‐tunable substrates with abundant plasmon resonant structure are ideal to proffer high surface‐enhanced Raman scattering (SERS) activity for trace sensing including pollutants and toxics, whereas great challenge remains in creating high‐density “hotspots” in these structures for further improving Raman signals and detection sensitivity. Herein, one‐step dealloying strategy is proposed to fabricate free‐standing copper membranes with hierarchical porous architecture where a high density of inherent “hot… Show more

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Cited by 24 publications
(29 citation statements)
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“…Reproduced with permission. [ 121 ] Copyright 2018, Wiley‐VCH. I) TEM images of spherical twinned, triangular, hexagonal, polycrystalline aggregate, fivefold‐symmetric, and bipyramidal Cu NPs.…”
Section: Fabrication Of Cu‐based Catalystsmentioning
confidence: 99%
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“…Reproduced with permission. [ 121 ] Copyright 2018, Wiley‐VCH. I) TEM images of spherical twinned, triangular, hexagonal, polycrystalline aggregate, fivefold‐symmetric, and bipyramidal Cu NPs.…”
Section: Fabrication Of Cu‐based Catalystsmentioning
confidence: 99%
“…Owing to the abundant high‐index facets, large specific surface areas, and high density of atomic kinks and steps, porous Cu has been widely used in catalysis, batteries, SERS, etc. [ 121,129–131 ] At present, porous Cu with adjustable pore sizes are facilely synthesized by dealloying method, thermal decomposition method, and wet chemical method. The pore size of porous Cu is continuously adjusted from tens to hundreds of nanometers, and even reaches to the micron level.…”
Section: Fabrication Of Cu‐based Catalystsmentioning
confidence: 99%
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“…Besides the conventional synthetic strategies mentioned above, a continuation of the three‐principal‐methods family has been growing rapidly. For examples, dealloying method is applied to prepare nanoporous HEMs 77 . Solvothermal method is proposed for the synthesis of HEMs in a nonaqueous solvent at temperature above the boiling point and pressure above 1 bar 78 .…”
Section: Novel Strategies For Synthesis Of Heas and Hecsmentioning
confidence: 99%