Pan Wang
@PanWang11450199
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Our review on "Molecular Design and Redox Chemistries for Aqueous Organic Redox Flow Batteries (AORFBs)" is now online as an open-access paper! 🥂 Please feel free to check it out! https://t.co/jxDDOWhnlY
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Our review on "Molecular Design and Redox Chemistries for Aqueous Organic Redox Flow Batteries (AORFBs)" is now online as an open-access paper! 🥂 We dive deep into the molecular-level strategies shaping the future of sustainable energy storage. Please feel free to check it out!
Molecular Design and Redox Chemistries for Aqueous Organic Redox Flow Batteries (AORFBs) (Pan Wang) #AngewandteReview #openaccess 🔓
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Thrilled to share our new Nature Energy paper! @NatureEnergyJnl "A hybrid-flowcell for stable pH-swing-facilitateddirect aircapture", in collaboration with Prof. Aziz from Harvard and Prof. Ji from UCAS. https://t.co/67yGiHIfG0 Full paper here: https://t.co/YfyElb7fHZ
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Excited to share our group's latest research published in Joule ! A polymer membrane with integrated microphase separation and intrinsic microporosity for high-performance AORFBs. This design boosts efficiency and stability! 🔋 Here is the share link: https://t.co/RAyouG1UYI
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Excited to share our group's latest research published in Joule ! A polymer membrane with integrated microphase separation and intrinsic microporosity for high-performance AORFBs. This design boosts efficiency and stability! 🔋 Here is the share link: https://t.co/RAyouG1UYI
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Excited to share our latest research published with Angewandte Chemie. We developed a multi-electron and high-potential posolyte for AORFBs.
A Multielectron and High-Potential Spirobifluorene-Based Posolyte for Aqueous Redox Flow Batteries (Pan Wang and co-workers) #battchat #AngewandteVIP @Westlake_Uni
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A Multielectron and High-Potential Spirobifluorene-Based Posolyte for Aqueous Redox Flow Batteries (Pan Wang and co-workers) #battchat #AngewandteVIP @Westlake_Uni
onlinelibrary.wiley.com
This research addresses a critical challenge in developing multielectron positive electrolyte (posolyte) with high redox potential for aqueous organic redox flow batteries (AORFBs) as an advanced...
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Excited to share our latest research published with @SpringerNature in Nature energy @NatureEnergyJnl! We've developed a phenazine-based electrochemical CO2 capture cell with high capacity & stability. Here is a shared link: https://t.co/AFg1X6ukwb
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Excited to share my lab's first research paper which, published in Chem @Chem_CP, features the precise construction of double-walled tetrahedra from molecular bows driven solely by noncovalent bonding interactions. So proud of the team @Westlake_Uni Read: https://t.co/rEoYeR8Opf
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Biomimetic Amino Acid Functionalized Phenazine Flow Batteries with Long Lifetime at Near-Neutral pH (Ji) https://t.co/TrRYoOUWss
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