🚨 New in Nature Communications!
We demonstrate a non-isothermal CO₂ electrolysis strategy using a temperature gradient to suppress salt precipitation & enable 200+ h stable operation at high alkalinity.
📄 Read more: https://t.co/lpnV3mBxJN
#CO2Electrolysis#Energy#ClimateTech
Check out our team's latest research on solar seawater desalination, published in Energy & Environmental Science. We explore the impact of front cover material's optical & thermal properties on efficiency in multi-stage evaporators & propose optimization strategies.
Our latest research, entitled "A hybrid electro-thermochemical device for methane production from the air," is out in Nature Communications (10.1038/s41467-024-53336-9).
Checkout our work by Da Xu and Lei Zhao on the optimization of porous reactants for solar thermochemistry in Progress in Natural Science: Materials International(https://t.co/wiIVxnkbRa)
Check out our latest research on tandem CO2 reduction (https://t.co/Zx0T9Tp6dB, @Joule_CP ). We contributed to the multiphysics modeling in this collaborative work with Prof. Jun Gu at SUSTech.
Check out our latest work by Yuzhu at EES @RSC_Energy on the quantification of photoelectrodes' performance with patterned catalysts. We used a multiphysics model to link the photoelectrode design with the CO2 reduction performance (DOI https://t.co/pdVErjq56w).
Via a joint electrochemistry and multiphysical simulation approach, researchers from Fudan, SUSTech @linmeng316, USTC, and SJTU demonstrate how the anodic O2 bubble management aids to the improved energy efficiencies of MEA electrolyzers.
https://t.co/10rIOTgY1T
Please check out our latest work, in collaboration with Prof. Kun Jiang at SJTU, on the anode side bubble management strategy using interdigitated flow design to enhance the electrolysis performance of water splitting and CO2 reduction. Link: https://t.co/eghHVAVmti
Check our new paper on the modeling of dense particles for solar thermochemistry with the Journal of Materials Chemistry A (DOI:https://t.co/vViMx5ajuX).
Check our new paper on 'Tuning the Interfacial Electrical Field of Bipolar Membranes with Temperature and Electrolyte Concentration for Enhanced Water Dissociation' at ACS Sustainable Chemistry & Engineering. (https://t.co/tU6L2K4H4l)