Ajmal Pandikassala
ajmalp.bsky.social
Ajmal Pandikassala
@ajmalp.bsky.social
Researcher | CUTN | CSIR-NCL | Electrochemistry | Green Hydrogen |

An admirer of Chelsea!!⚽
Our latest work in ACS Catalysis explores a Pt-based carbon-free cathode with embedded oxygen nanoreservoirs; an innovative approach for oxygen buffering to enhance ORR in PEMFCs.

doi.org/10.1021/acsc...

#ChemSky #SciComm #Hydrogen #Electrocatalysis @acs.org
A Pt-Based Carbon-Free Cathode with Embedded Oxygen Nanoreservoirs: A Promising Approach for Oxygen Buffering to Aid Oxygen Reduction Reactions of PEMFCs
For practical applications of proton exchange membrane fuel cells (PEMFCs), the system needs to be operated by employing air in the cathode instead of pure oxygen (O2). This makes it necessary to deve...
doi.org
November 13, 2025 at 9:34 AM
Here is our latest research published in RSC J. Mater. Chem. A. "UV-Modified Polydopamine Zincophilic Protective Layer for Durable and Alkaline-Stable Zinc Anodes in Zinc-Air Batteries"

Full article here: doi.org/10.1039/D5TA...

#ChemSky #SciComm #Battery #RSCJournal
UV-modified polydopamine zincophilic protective layer for durable and alkaline-stable zinc anodes in zinc–air batteries
Rechargeable zinc–air batteries (ZABs) are promising for flexible energy storage due to their high specific energy, safety, and cost-effectiveness. However, the snags of the zinc (Zn) anode, like inel...
doi.org
November 7, 2025 at 8:52 AM
Here is our latest research,
“In situ engineered triple phase boundary enhancement in 3D structured carbon supported catalyst for high-temperature PEMFC”, published in RSC J. Mater. Chem. A.

Full article here: doi.org/10.1039/D5TA...

#ChemSky #SciComm #Hydrogen #Electrocatalysis #RSCJournal
In situ engineered triple phase boundary enhancement in 3D structured carbon supported catalyst for high-temperature PEMFC
Enhancing platinum (Pt) utilization in polymer electrolyte membrane fuel cells (PEMFCs) requires optimizing the catalyst support microstructures to expand the triple-phase boundary (TPB). A promising ...
doi.org
October 28, 2025 at 8:39 AM