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Kuo-Chuan Ho

Researcher at National Taiwan University

Publications -  522
Citations -  23927

Kuo-Chuan Ho is an academic researcher from National Taiwan University. The author has contributed to research in topics: Dye-sensitized solar cell & Electrochromism. The author has an hindex of 74, co-authored 506 publications receiving 21485 citations. Previous affiliations of Kuo-Chuan Ho include Indian Institute of Technology Roorkee & University of Rochester.

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Proceedings ArticleDOI

Design of a portable potentiostat for electrochemical sensors

TL;DR: The experimental results show that the proposed potentiostat has the merits of moderate accuracy, low cost, and long-distance wireless data communication capability.
Journal ArticleDOI

Electrochemical Preparation of a Nanostructured Poly(amino napthalene sulfonic acid) Electrode Using CTAB as a Soft Template and Its Electrocatalytic Application for the Reduction of Iodate

TL;DR: In this paper, a nanostructured poly(5-amino-2-naphthalene sulfonic acid) (nstructured PANS) electrode has been prepared using cetyltrimethyl ammonium bromide (CTAB) as a soft template by potentiodynamic method.
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Study on Oxidation State Dependent Electrocatalytic Ability for I−/I3− Redox Reaction of Reduced Graphene Oxides

TL;DR: In this paper, the influence of oxidation states on electrocatalytic abilities for I3 -reduction is discussed for reduced graphene oxide (rGO), which is a promising catalyst of counter electrodes for dye-sensitized solar cells (DSSCs).
Journal ArticleDOI

Novel metal-free organic dyes possessing fused heterocyclic structural motifs for efficient molecular photovoltaics

TL;DR: The novel dyes possessing cyanoacrylic acid as electron acceptor, PCA1-PCA3, exhibit higher power conversion efficiency, short circuit current, open-circuit voltage, and electron lifetime those with thioxothiazolidinylacetic acid, PCTA 1-PCTA 3, as the same.
Journal ArticleDOI

Metal–Organic Framework-Derived 2D NiCoP Nanoflakes from Layered Double Hydroxide Nanosheets for Efficient Electrocatalytic Water Splitting at High Current Densities

TL;DR: In this article , a two-dimensional (2D) metal-organic framework (MOF)-derived NiCoP nanoflakes, denoted as NiCo(nf)-P, are prepared via in situ growth of MOF using NiCo layered double hydroxide (LDH) as a sacrificial template, followed by phosphorization.