Grateful for the overwhelming response that made this year’s conference a grand success! 🙌 It concluded beautifully with awards and a sincere vote of thanks, celebrating everyone’s contributions. See you next year with even more enthusiasm and energy
@SCPGroup1@SebastianCPeter
Presented my work on photocatalytic CO₂ conversion at @ICCCU123775 highlighting reaction pathways and product selectivity. Grateful for the discussions. Thanks to @ANRFIndia (NPDF) for funding support, and @jncasr & @iitdelhi for institutional support.
What are capture clusters?
📍Geographic groupings of large CO₂ sources—steel, cement, refineries, power—connected by shared pipelines, compression & monitoring.
Prof. Vikram Vishal explains all in his talk.
@iitbombay@SCPGroup1@IndiaDST@jncasr
Prof. @VPolshettiwar demonstrates the Gaps in Our Light
After decades of photocatalytic CO₂ conversion, we must ask an uncomfortable question: what have we truly achieved—and what have we failed to admit? 🧵⬇️
@SCPGroup1@jncasr
The student paper talks today were a highlight—engaging, well-presented, and full of promise. Congratulations to all presenters! Looking forward to the final day of the conference.
icccu25.com@SCPGroup1
Prof. Virgil elaborates how solar-driven CO₂ conversion is gaining momentum. Perovskite materials enable integrated photoelectrochemical systems that could lower energy input and improve reaction selectivity.
@SCPGroup1@NTUsg
Ms Janani Kannan Mitta, in her talk, highlights design to deployment: engineering is the backbone of CCU commercialisation—scaling lab concepts into reliable, cost-effective, and market-ready solutions. #CCU@SCPGroup1icccu25.com
From compliance to opportunity: Dr. Chanchal Samanta highlights the importance of CCU in refineries to convert captured CO₂ into fuels, chemicals, and materials—supporting decarbonization without compromising productivity. #CarbonUtilization@SCPGroup1@jncasr@BPCLimited
What if CO₂ capture wasn’t the end, but the beginning? Prof. Sonde highlights in-situ conversion during capture as a way to directly create value while reducing downstream transport & storage challenges. #CarbonManagement@SCPGroup1@IndiaDST
Research shouldn’t stay on paper.
Industry partnerships help translate academic insights into practical products, effective policies, and tangible progress.
Some moments captured from the panel discussion happened today.
@SCPGroup1@IndiaDST@jncasr
⚗️ Chemistry with a purpose: Prof. Jayaramulu Kolleboyina describes how engineered metal–organic polyhedra unlock synergistic reactivity mechanisms critical for next-gen CO₂ conversion systems. 🌿 #NetZero#AdvancedMaterials@IITJammu@SCPGroup1icccu25.com
🎤 Day 3 highlights: insightful presentations, thoughtful discussions, and students driving the conversation forward. Some moments captured from yesterday's students' talk. Already excited for what Day 4 has in store.
#EngagingStudents@SCPGroup1icccu25.com
🧪 Prof. Himanshu Goyal, in his lecture, emphasised that first-principles tools can reduce reliance on trial-and-error, thereby speeding up the scale-up from lab to industrial CCU reactors💫
@iitmadras@SCPGroup1icccu25.com
🚫 Coking suppression is a game-changer —Prof. Chinmoy Ranjan, in his talk, showed how mixed ionic-electronic conductors help stabilise redox reaction pathways.
@SCPGroup1@iiscbangalore@jncasricccu25.com
From materials to architecture, Prof. Soumyabrata Roy emphasises rational electrode design as the key to selective CO₂ transport and targeted electrochemical conversion.
To learn more about electrode design, please join us at icccu25.com@SCPGroup1@sroy_chem