2020
DOI: 10.1016/j.snb.2019.127232
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Stimuli-enabled reversible switched aclonifen electrochemical sensor based on smart PNIPAM/PANI-Cu hybrid conducting microgel

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Cited by 48 publications
(19 citation statements)
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“…[ 73 ] For these reasons, P(NIPAm‐ co ‐NIPMAm) has been utilized in several fields such as optics, [ 74 ] solar energy, [ 75 ] electronics, [ 76 ] catalysis, [ 77 ] and sensing. [ 78 ] The unique combination of Au nanostructures’ optical properties and the smart behavior of a thermosensitive polymer in the form of Au–hydrogel has attracted great interest. [ 79 ] In this section, an investigation of innovative optical attenuators made of AuNRs dispersed in crystal‐clear P(NIPAm‐co‐NIPMAm) films is reported.…”
Section: Probing and Controlling Photothermal Heat Generationmentioning
confidence: 99%
“…[ 73 ] For these reasons, P(NIPAm‐ co ‐NIPMAm) has been utilized in several fields such as optics, [ 74 ] solar energy, [ 75 ] electronics, [ 76 ] catalysis, [ 77 ] and sensing. [ 78 ] The unique combination of Au nanostructures’ optical properties and the smart behavior of a thermosensitive polymer in the form of Au–hydrogel has attracted great interest. [ 79 ] In this section, an investigation of innovative optical attenuators made of AuNRs dispersed in crystal‐clear P(NIPAm‐co‐NIPMAm) films is reported.…”
Section: Probing and Controlling Photothermal Heat Generationmentioning
confidence: 99%
“…Microgels are polymeric colloidal particles with a size of 10–1000 nm and three-dimensional cross-linked network structures. With the suitable combination of monomers, comonomers, and cross-linkers, the chemical and physical properties of obtained microgels can be tailored to fulfill the requirements of potential applications in various technical fields including biomedical materials, catalysts, and chemical sensors. However, there are only a few reports of fluorescent microgels for the detection of trace heavy metal ions in aqueous solutions. , …”
Section: Introductrionmentioning
confidence: 99%
“…In recent years, biomolecular computing, as a significant branch of unconventional operations, has been responsible for numerous scientific developments and breakthroughs [1][2][3][4]. Of these, logic computing devices constructed by the integration of biocatalytic reaction and stimuli-responsive film electrode have shown enormous potential in some fields, such as biosensing [5][6][7], information transmission [8,9], medical diagnostics [10,11], and drug delivery [12]. However, these logic devices reported were often simple in operation and unable to simulate complex environments.…”
Section: Introductionmentioning
confidence: 99%