The characterization of Vanadium Redox Battery Cells using BioLogic BCS-815 battery cyclers & a Pinflow® 20 cm² test cell.
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DC and AC characterization of a Vanadium Redox Flow Battery (VRFB) using a Pinflow 20 cm² test lab cell Battery – Application Note 71
RK-Spectro Technical Note 44: Pulsed flow method for Quench flow experiment
Pulsed flow method for Quench flow experiment
Precise control of flow rate – SFM-2000 series -Rapid kinetics – Application Note 17
AN17. Precise control of flow rate. Stopped Flow/Rapid Kinetics
Effect of channel dimensions of serpentine flow fields on the performance of a vanadium redox flow battery
CITATION: Ravendra Gundlapalli, Sreenivas Jayanti⁎
Double mixing stopped-flow using interrupted flow method – SFM-2000 seriesRapid kinetics – Application Note 21
AN21 Double mixing stopped-flow using interrupted flow method . Stopped Flow/Rapid Kinetics
Rapid mixing stopped-flow small-angle X-ray scattering study of lipoplex formation at beamline ID02@ESRF
CITATION: Borislav Angelov, Angelina Angelova, Markus Drechsler, Sylviane Lesieur
Cyclic electron flow in C3 plants – Photosynthesis – Application Note 3
AN 3. Cyclic electron flow in C3 plants. Spectroscopy
Measuring Intracellular Ca Changes in Human Sperm using Four Techniques: Conventional Fluorometry, Stopped Flow Fluorometry, Flow Cytometry and Single Cell Imaging
CITATION: Esperanza Mata-Martínez, Omar José, Paulina Torres-Rodríguez, Alejandra Solís-López, Ana A. Sánchez-Tusie, Yoloxochitl, Sánchez-Guevara, Marcela B. Treviño, and Claudia L. Treviño
Enzyme Kinetics above Denaturation Temperature: A Temperature-Jump/Stopped-Flow Apparatus
CITATION: Bálint Kintses, Zoltán Simon,Máté Gyimesi, Júlia Tóth, Balázs Jelinek, Csaba Niedetzky, Mihály Kovács András Málnási-Csizmadia
Pore selectivity analysis of an aquaglyceroporin by stopped-flow spectrophotometry on bacterial cell suspensions
CITATION: Jean-Francois Hubert, Laurence Duchesne, Christian Delamarche, Amaury Vaysse, Herve Gueune and Celine Ragúenes-Nicol
An advanced EPR stopped-flow apparatus based on a dielectric ring resonator
CITATION: Günter Lassmann, Peter Paul Schmidt, WolfgangLubitz
RK-Spectro Technical Note 34: Design of stopped flow sequence, determination of minimum washing volume
Design of stopped flow sequence, determination of minimum washing volume
RK-Spectro Technical Note 52: Designing double mixing quench flow experiments
Designing double mixing quench flow experiments
Cyclic and linear electron flow in plants revealed by JTS-10 spectrometer – Photosynthesis – Application Note 2
AN 2. Cyclic and linear electron flow in plants revealed by JTS-10. Spectroscopy/Photosynthesis
RK-Spectro Technical Note 05: Quenched-flow mode_ Rate constant determination using Biokine
Quenched-flow mode_ Rate constant determination using Biokine
RK-Spectro Technical Note 18: Create a stopped-flow sequence using MPS32 software
Create a stopped-flow sequence using MPS32 software
Kinetics of thermo-induced micelle-to-vesicle transitions in a catanionic surfactant system investigated by stopped-flow temperature jump
CITATION: Jingyan Zhang and Shiyong Liu
Extending the Lifespan of Soluble Lead Flow Batteries with a Sodium Acetate Additive
CITATION: Yan-Ting Lin, Wei-Cheng Ku1, Chun-Yen Lee1, Hao-Lun Tan, Hsun-Yi Chen, Ho-Wei Chan, Yong-Hong Lai, Kai-Rui Pan
Formation Kinetics of Oil-Rich, Nonionic Microemulsions
CITATION: Helge F. M. Klemmer, Carola Harbauer, Reinhard Strey,Isabelle Grillo,Thomas Sottmann
Salt-induced cluster formation of gold nanoparticles followed by stopped-flow SAXS, DLS and extinction spectroscopy
CITATION: Nico Carl, Sylvain Prévost, Joseph P. S. Fitzgerald and Matthias Karg
Lithium recovery from diluted brine by means of electrochemical ion exchange in a flow-through-electrodes cell
CITATION: Maria Sofia, Palagonia Doriano Brogioli Fabio, La Mantia
Membrane transport kinetics as measured by stopped-flow – SFM 2000 Series- µSFM- Rapid Kinetics – Application Note 35
AN35 Membrane transport kinetics as measured by stopped-flow
Stopped-flow in the mid-IR using dual comb spectroscopy – AN38
Obtain very fast reaction speeds by combining stopped flow with dual comb spectrometers.
Rupture of Pluronic Micelles by Di-Methylated β-Cyclodextrin Is Not Due to Polypseudorotaxane Formation
CITATION: Margarita Valero, Isabelle Grillo, and Cécile A. Dreiss
Kinetics of Collapse Transition and Cluster Formation in a Thermoresponsive Micellar Solution of P(S-b-NIPAM-b-S) Induced by a Temperature Jump
CITATION: Joseph Adelsberger, Ezzeldin Metwalli,Alexander Diethert, Isabelle Grillo, Achille M. Bivigou-Koumba, André Laschewsky, Peter Müller-Buschbaum, Christine M. Papadakis
RK-Spectro Technical Note 33: Stopped-flow_Diode array detection using Kinspec
Stopped-flow_Diode array detection using Kinspec
RK-Spectro Technical Note 53: Determination of your experimental dead time in fluorescence mode
Determination of your experimental dead time in fluorescence mode
RK-Spectro Technical Note 54: Determination of your experimental dead time in fluorescence mode
Determination of your experimental dead time in fluorescence mode
RK-Spectro Technical Note 73: Determination of your experimental dead time in fluorescence mode using μFC-08 and SFM-4000/S
Determination of your experimental dead time in fluorescence mode using μFC-08 and SFM-4000/S
Stopped-flow in cryogenic conditions – SFM-2000 series – Rapid kinetics – Application Note 25
AN25 Stopped Flow, Stopped-flow in cryogenic conditions. Rapid Kinetics
Stopped-flow Accessory catalog
All of these accessories are user changeable, enabling you to adapt the SFM-2000/3000/4000 to your labs needs without buying a completely new system.
Stopped-flow in cryogenic conditions using an external cryostat – Rapid Kinetics – Application Note 25b
Stopped-flow in cryogenic conditions using an external cryostat - Application Note 25b
EC-Lab Technical Notes 37: Peristaltic pump Installation
EC-Lab Technical Notes 37 Peristaltic pump Installation
RK-Spectro Technical Note 85: SFM-X000 used in anaerobic conditions_ loading of instrument
SFM-X000 used in anaerobic conditions_ loading of instrument
Fuel Cell Testing Part I: Overview and I/E characterizations (IV characterization) Fuel-Cell – Application Note 31
AN 31. IV characterization - Fuel-Cell. Electrochemistry
SCAN-Lab Technical Notes 21: Introducing software for the SDS470 Pump
Introducing software control for the SDS470 pump
RK-Spectro Technical Note 43: Ageing methods for long time reaction using MPS software and biokine up to the version 4.04
Ageing methods for long time reaction using MPS software and biokine up to the version 4.04
Submicrosecond dead time determination – SFM-2000 series – Rapid kinetics – Application Note 15
AN15. Submicrosecond dead time determination. Stopped Flow/Rapid Kinetics
Getting the most from a 50 μl stock of sample using the μSFM for refolding experiments – μSFM – Rapid kinetics – Application Note 27
AN27. Getting the most from a 50 μl stock of sample using the μSFM for refolding experiments. Stopped Flow
Photosynthesis Technical Notes 01: Use of Eukaryote Kit in Absorbance mode – ECS measurement with PSI excitation
Use of Eukaryote Kit in Absorbance mode – ECS measurement with PSI excitation
RK-Spectro Technical Note 49: Determination of minimum washing volume for the microcuvette (mFC-08)
Determination of minimum washing volume for the microcuvette (mFC-08)
RK-Spectro Technical Note 57: Single wavelength kinetic using J715-720 and Bio-Kine in fluorescence mode
Single wavelength kinetic using J715-720 and Bio-Kine in fluorescence mode
Precautions for good impedance measurements (EIS) Battery & Electrochemistry – Application Note 5
AN5. EIS precautions - Electrochemistry & Battery. Electrochemistry
The modified inductance element $L_\text a$ Battery – Application Note 42
AN42. Battery-EIS modified inductance element. Electrochemistry