electrochemical analyzer Search Results


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Toshcon electrochemical analyzer tmulti 27
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Ivium Technologies USA n stat multichannel electrochemical analyzer
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Bioanalytical Systems Inc epsilon electrochemical analyser
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Bioanalytical Systems Inc bas cv 50 w voltammetric analyzer
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CH Instruments electrochemical analyzer
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Bioanalytical Systems Inc electrochemical analyser
Electrochemical Analyser, supplied by Bioanalytical Systems Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrochemical+analyzer/electrochemical+analyzer/pm26160296-50-0-23
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Ivium Technologies USA compactstat.h: portable electrochemical interface and impedance analyzer
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Metrohm AG μautolabiii electrochemical analyzer
μautolabiii Electrochemical Analyzer, supplied by Metrohm AG, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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CH Instruments electrochemical analyzer chli1210c
Electrochemical Analyzer Chli1210c, supplied by CH Instruments, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Ivium Technologies USA electrochemical analyser vertex eis
<t>Electrochemical</t> performance of solid gel electrolyte coated supercapacitor. a Cyclic voltammetry (CV) curves at 50 mV s -1 for various MnO 2 wt%. b Calculated MnO 2 areal loading density, and linear capacitances versus MnO 2 loading wt%. CV curves (from 10 to 100 mV s -1 ) of supercoil fibres with c 10.8 wt%, and d 17.7 wt% MnO 2 loadings. e Galvanostatic charge/discharge curves (current density from 25 to 100 µA cm -1 ) of supercapacitor (SC) 17.7 wt% MnO 2 loading. f Specific linear (blue diamond) and areal (black circle) capacitance values versus scan rate. g CV curves measured for the initial ( ε = 0%) and statically stretched states of the supercoil supercapacitor. h Capacitance retention performance versus tensile strain (inset shows capacitance retention versus cyclically applied stretching test). i Linear capacitances versus maximum strains of various fibre supercapacitors. The maximum linear capacitance ( C L = 21.7 mF cm -1 ) and stretchability ( ε = 1000%) for the present supercoil supercapacitor exceed (a) a coiled MnO 2 /carbon nanotube (CNT)/nylon fibre (5.4 mF cm -1 , 150%) , (b) a coiled MnO 2 /CNT/rubber fibre (4.8 mF cm -1 , 400%) , (c) a MnO 2 /CNT/rectangular rubber sandwich fibre (2.38 mF cm -1 , 200%) , (d) a polyaniline (PANI)/CNT/elastomer fibre (0.9 mF cm -1 , 400%) , (e) a spandex@CNT-based wire SC (0.26 mF cm -1 , 100%) , and (f) a styrene-ethylene-butylene-styrene (SEBS) wounded by CNT/graphene/PANI fibres (10.3 mF cm -1 , 800%)
Electrochemical Analyser Vertex Eis, supplied by Ivium Technologies USA, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrochemical+analyzer/electrochemical+analyzer+vertex+eis/pmc06347621-215-1-5
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Bio-Logic Science electrochemical analyzer
<t>Electrochemical</t> performance of solid gel electrolyte coated supercapacitor. a Cyclic voltammetry (CV) curves at 50 mV s -1 for various MnO 2 wt%. b Calculated MnO 2 areal loading density, and linear capacitances versus MnO 2 loading wt%. CV curves (from 10 to 100 mV s -1 ) of supercoil fibres with c 10.8 wt%, and d 17.7 wt% MnO 2 loadings. e Galvanostatic charge/discharge curves (current density from 25 to 100 µA cm -1 ) of supercapacitor (SC) 17.7 wt% MnO 2 loading. f Specific linear (blue diamond) and areal (black circle) capacitance values versus scan rate. g CV curves measured for the initial ( ε = 0%) and statically stretched states of the supercoil supercapacitor. h Capacitance retention performance versus tensile strain (inset shows capacitance retention versus cyclically applied stretching test). i Linear capacitances versus maximum strains of various fibre supercapacitors. The maximum linear capacitance ( C L = 21.7 mF cm -1 ) and stretchability ( ε = 1000%) for the present supercoil supercapacitor exceed (a) a coiled MnO 2 /carbon nanotube (CNT)/nylon fibre (5.4 mF cm -1 , 150%) , (b) a coiled MnO 2 /CNT/rubber fibre (4.8 mF cm -1 , 400%) , (c) a MnO 2 /CNT/rectangular rubber sandwich fibre (2.38 mF cm -1 , 200%) , (d) a polyaniline (PANI)/CNT/elastomer fibre (0.9 mF cm -1 , 400%) , (e) a spandex@CNT-based wire SC (0.26 mF cm -1 , 100%) , and (f) a styrene-ethylene-butylene-styrene (SEBS) wounded by CNT/graphene/PANI fibres (10.3 mF cm -1 , 800%)
Electrochemical Analyzer, supplied by Bio-Logic Science, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/electrochemical+analyzer/electrochemical+analyzer/us08889319-138-18-21
Average 90 stars, based on 1 article reviews
electrochemical analyzer - by Bioz Stars, 2026-09
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Electrochemical performance of solid gel electrolyte coated supercapacitor. a Cyclic voltammetry (CV) curves at 50 mV s -1 for various MnO 2 wt%. b Calculated MnO 2 areal loading density, and linear capacitances versus MnO 2 loading wt%. CV curves (from 10 to 100 mV s -1 ) of supercoil fibres with c 10.8 wt%, and d 17.7 wt% MnO 2 loadings. e Galvanostatic charge/discharge curves (current density from 25 to 100 µA cm -1 ) of supercapacitor (SC) 17.7 wt% MnO 2 loading. f Specific linear (blue diamond) and areal (black circle) capacitance values versus scan rate. g CV curves measured for the initial ( ε = 0%) and statically stretched states of the supercoil supercapacitor. h Capacitance retention performance versus tensile strain (inset shows capacitance retention versus cyclically applied stretching test). i Linear capacitances versus maximum strains of various fibre supercapacitors. The maximum linear capacitance ( C L = 21.7 mF cm -1 ) and stretchability ( ε = 1000%) for the present supercoil supercapacitor exceed (a) a coiled MnO 2 /carbon nanotube (CNT)/nylon fibre (5.4 mF cm -1 , 150%) , (b) a coiled MnO 2 /CNT/rubber fibre (4.8 mF cm -1 , 400%) , (c) a MnO 2 /CNT/rectangular rubber sandwich fibre (2.38 mF cm -1 , 200%) , (d) a polyaniline (PANI)/CNT/elastomer fibre (0.9 mF cm -1 , 400%) , (e) a spandex@CNT-based wire SC (0.26 mF cm -1 , 100%) , and (f) a styrene-ethylene-butylene-styrene (SEBS) wounded by CNT/graphene/PANI fibres (10.3 mF cm -1 , 800%)

Journal: Nature Communications

Article Title: Highly twisted supercoils for superelastic multi-functional fibres

doi: 10.1038/s41467-018-08016-w

Figure Lengend Snippet: Electrochemical performance of solid gel electrolyte coated supercapacitor. a Cyclic voltammetry (CV) curves at 50 mV s -1 for various MnO 2 wt%. b Calculated MnO 2 areal loading density, and linear capacitances versus MnO 2 loading wt%. CV curves (from 10 to 100 mV s -1 ) of supercoil fibres with c 10.8 wt%, and d 17.7 wt% MnO 2 loadings. e Galvanostatic charge/discharge curves (current density from 25 to 100 µA cm -1 ) of supercapacitor (SC) 17.7 wt% MnO 2 loading. f Specific linear (blue diamond) and areal (black circle) capacitance values versus scan rate. g CV curves measured for the initial ( ε = 0%) and statically stretched states of the supercoil supercapacitor. h Capacitance retention performance versus tensile strain (inset shows capacitance retention versus cyclically applied stretching test). i Linear capacitances versus maximum strains of various fibre supercapacitors. The maximum linear capacitance ( C L = 21.7 mF cm -1 ) and stretchability ( ε = 1000%) for the present supercoil supercapacitor exceed (a) a coiled MnO 2 /carbon nanotube (CNT)/nylon fibre (5.4 mF cm -1 , 150%) , (b) a coiled MnO 2 /CNT/rubber fibre (4.8 mF cm -1 , 400%) , (c) a MnO 2 /CNT/rectangular rubber sandwich fibre (2.38 mF cm -1 , 200%) , (d) a polyaniline (PANI)/CNT/elastomer fibre (0.9 mF cm -1 , 400%) , (e) a spandex@CNT-based wire SC (0.26 mF cm -1 , 100%) , and (f) a styrene-ethylene-butylene-styrene (SEBS) wounded by CNT/graphene/PANI fibres (10.3 mF cm -1 , 800%)

Article Snippet: An electrochemical analyser (Vertex EIS, Ivium) was used for electrochemical performance characterisation.

Techniques: