The latest addition to our collection on CO₂ capture and conversion (https://t.co/CCAMYgJDku) is a review on advancing integrated CO₂ electrochemical conversion with amine-based CO₂ capture by @rollmale, @TomBurdyny et al. Check it out here! 👇
https://t.co/dMyIuzzv3a
Happy to share our review paper published in Nanoscale: Advancing integrated CO2 electrochemical conversion with amine-based CO2 capture: a review https://t.co/LTPbOIFKGC
This work by @hpvanmontfort was an incredibly fun way of indirectly visualizing electrochemical reactions by correlating GDE temperature to activity. There are many applications presented for both fundamental and applied research. I briefly talk about 2 below 👇. 1/3
Cations strike again! Congrats to @Kailun_Yang_ on her final PhD paper in @ACSEnergyLett. With her co-authors she showed increased CO selectivity and CO2 utilization in a zero-gap electrolyzer via bipolar membranes and cation crossover.
We are very happy to share our recent work on cations, BPMEA and CO2 utilization: don’t forget CATIONS while electrochemically reducing CO2 in acidic media for higher CO2 utilization, especially while using MEA cells and bipolar membranes!
Cation-Driven Increases of CO2 Utilization in a Bipolar Membrane Electrode Assembly for CO2 Electrolysis, An #OA Letter by Kailun Yang, Mengran Li, Siddhartha Subramanian, Marijn A. Blommaert, Wilson A. Smith, Thomas Burdyny https://t.co/4HJfiJYQYN
Very happy to share our latest work, where we use operando infrared spectroscopy to study semiconductor/electrolyte interfaces, revealing some interesting new insights. Now out in @J_A_C_S. @SmithElectroLab@rec_literature@ChemeTUDelft
This figure I made shows the most relevant keywords in “electrochemical CO2 reduction” field, based on 3000+ papers published in the last 5 years. Lots of them are very familiar to me actually. Interesting that DATA never lie...Is any of those dots related to your research too?🧐
Check out our new publication about 2D modeling of a GDE cell for CO2 reduction! You will find useful information about single pass conversion vs energy efficiency, etc. Very experimentalist-friendly!
Here we highlight three great articles from the upcoming issue of @ACSEnergyLett . Including an article from @TomBurdyny and @SmithElectroLab on the active role of carbon GDLs during CO2 electroreduction. https://t.co/OiFGTayegi
Role of the Carbon-Based Gas Diffusion Layer on Flooding in a Gas Diffusion Electrode Cell for Electrochemical CO2 Reduction, an #OA Letter by Kailun Yang, Recep Kas, Wilson A. Smith, and Thomas Burdyny https://t.co/pJYxnhWU4y
Check out the paper if you are interested! And I will be presenting this work at CHAINS (chemistry as innovating science) on Dec. 8 2020, in the parallel section: chemical conversation. Welcome to join me for the online discussion if you are there too!
Kailun’s (@Kailun_Yang_) 2nd paper is now online @ACSEnergyLett! Click to read more about how voltage thresholds play a role in the flooding of carbon GDL’s. Open Access courtesy of efforts by @deVSNU for open science.
https://t.co/WuoIemGDAk
@Ani_rudhV@TomBurdyny@SmithElectroLab Little bird told me you won an award 🥇 Congrats man! You deserved it! But next year you may not be so lucky, I will be competing with you 🤟
CO2 reduction on nanostructured electrodes: Fact or Defect? --> if there is too much difference in active surface area of two electrodes, selectivity, onset potential and even surface area normalized activity may not be representative metric to compare catalytic performance.