Sentence examples for by in situ electropolymerization from inspiring English sources

Exact(5)

The biologic film was prepared by in situ electropolymerization of aniline into microporous poly acrylonitrile-co-acrylic acid)-coated poly acrylonitrile-co-acrylicsence of glucose oxidase.

The biologic film was prepared by in situ electropolymerization of aniline into microporous polyacrylonitrile-coated platinum electrode in the presence of glucose oxidase.

Herein, we describe a simple strategy for the aligning of disordered CNTs within the conducting polymer matrix by in situ electropolymerization using an ionic surfactant as the supporting electrolyte.

A polypyrrole-mercury/mercury chloride reference electrode was initially constructed by in situ electropolymerization of pyrrole on a mercury pool anode in a 0.5 M sodium para-toluene sulfonate and 1.0 M sodium chloride mixture solution.

The nanocomposite, N-FLG@poly[1], prepared by in situ electropolymerization, showed similar electrochemical responses to pristine poly[1], but with more well-defined redox peaks and higher current intensities, in compliance with larger electroactive surface coverage.

Similar(54)

A thin film of MWNTs ARS was successfully deposited onto the electrode surface by an in situ electropolymerization in aqueous MWNTs ARS solution.

A novel titanium foil substrate strategy for the synthesis of high electrocatalytic activity nickel sulfide/polyaniline/titanium (NiS/PANI/Ti) composite film with one-dimensional (1D) net-work structure by using an in situ electropolymerization route, and proposed as platinum (Pt -free counter electrode (CE) catalyst for flexible dye-sensitized solar cells (FDSSCs).

A composite film of nickel sulfide/platinum/titanium foil (NiS/Pt/Ti) with low cost and high electrocatalytic activity was synthesized by the use of an in situ electropolymerization route and proposed as a counter electrode (CE) catalyst for flexible dye-sensitized solar cells (FDSSCs).

We have demonstrated a simple and general strategy, namely in situ electropolymerization by using an ionic surfactant as the electrolyte, for alignment of disordered CNTs within conducting polymer/carbon nanotube composite films.

In situ electropolymerization of EDOT was carried out by slowly increasing the electrode potential to 1.20 V.

A new type of in situ electropolymerization was used for electrochemical biosensor design.

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