Water Electrolysis and Energy Harvesting with Zero-Dimensional Ion-Sensitive Field-Effect Transistors
The relationship of the gas bubble size to the size distribution critically influences the effectiveness of electrochemical processes. Several optical and acoustical techniques have been used to characterize the size and emission frequency of bubbles. Here, we used zero-dimensional (0D) ion-sensitiv...
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Published in | Nano letters Vol. 13; no. 8; pp. 3903 - 3908 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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American Chemical Society
14.08.2013
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Abstract | The relationship of the gas bubble size to the size distribution critically influences the effectiveness of electrochemical processes. Several optical and acoustical techniques have been used to characterize the size and emission frequency of bubbles. Here, we used zero-dimensional (0D) ion-sensitive field-effect transistors (ISFETs) buried under a microbath to detect the emission of individual bubbles electrically and to generate statistics on the bubble emission time. The bubble size was evaluated via a simple model of the electrolytic current. We suggest that energy lost during water electrolysis could be used to generate electric pulses at an optimal efficiency with an array of 0D ISFETs. |
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AbstractList | The relationship of the gas bubble size to the size distribution critically influences the effectiveness of electrochemical processes. Several optical and acoustical techniques have been used to characterize the size and emission frequency of bubbles. Here, we used zero-dimensional (0D) ion-sensitive field-effect transistors (ISFETs) buried under a microbath to detect the emission of individual bubbles electrically and to generate statistics on the bubble emission time. The bubble size was evaluated via a simple model of the electrolytic current. We suggest that energy lost during water electrolysis could be used to generate electric pulses at an optimal efficiency with an array of 0D ISFETs. |
Author | Vuillaume, D Nishiguchi, K Dufreche, J. F Guerin, D Clément, N Fujiwara, A |
AuthorAffiliation | NTT Basic Research Laboratories Université de Montpellier 2 CNRS |
AuthorAffiliation_xml | – name: Université de Montpellier 2 – name: CNRS – name: NTT Basic Research Laboratories |
Author_xml | – sequence: 1 givenname: N surname: Clément fullname: Clément, N email: Nicolas.Clement@iemn.univ-lille1.fr – sequence: 2 givenname: K surname: Nishiguchi fullname: Nishiguchi, K – sequence: 3 givenname: J. F surname: Dufreche fullname: Dufreche, J. F – sequence: 4 givenname: D surname: Guerin fullname: Guerin, D – sequence: 5 givenname: A surname: Fujiwara fullname: Fujiwara, A – sequence: 6 givenname: D surname: Vuillaume fullname: Vuillaume, D |
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Keywords | ISFET bubble detection 0D Transistor energy harvesting Si nanowire water electrolysis hydrogen production |
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SubjectTerms | Arrays Bubbles Chemical Sciences Electrolysis Electronics Emission Engineering Sciences Field effect transistors Optical data processing Semiconductor devices Statistics |
Title | Water Electrolysis and Energy Harvesting with Zero-Dimensional Ion-Sensitive Field-Effect Transistors |
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