Piyush Singh
@PiyushS977282
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Postdoctoral Researcher @DTUEnergy, #MOF Chemist #CO2 capture#Gas separation
Lyngby-Taarbæk, Danmark
Joined April 2023
Excited to share our Zn_Damtz-Ox MOF with high CO₂ uptake at low pressure, synthesized in water at room temperature. Grateful to all co-authors and thanks to Prof. @RamanathanVaid1, @IISERPune, @ChemMater, @CSIR_IND, @svantesolutions for their support!
pubs.acs.org
We report a zinc-diaminotriazolato-oxalate metal–organic framework (IISERP-MOF36, 1) inspired by the exceptional CO2 selectivity demonstrated by its triazolate analogue, CALF-20. Unlike the CALF-20...
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Honored to receive the Best Poster Award at @euromof2025, Crete! Grateful for the recognition and inspiring interactions with the MOF community. Thanks to my supervisor @RamanathanVaid1 for his constant support and Thanks to @IISERPune @CSIR_IND @IndiaDST and @DTUEnergy
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Potential of a Water-Stable Ultramicroporous Aluminum Gallate Metal Organic Framework as Sorbent for Upgradation of Natural Gas
pubs.acs.org
Developing easily accessible metal–organic framework (MOF) sorbents with industrially relevant gas separation capabilities is desirable. This can be achieved by constructing MOFs from simple ligands...
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Excited to share our latest work in Chem. Mater.: "Potential of a Water-Stable Ultramicroporous Aluminum Gallate MOF as a Sorbent for Natural Gas Upgradation." Grateful to @RamanathanVaid1 , co-authors, our collaborators & @IISERPune @CSIR_IND @ChemMater
pubs.acs.org
Developing easily accessible metal–organic framework (MOF) sorbents with industrially relevant gas separation capabilities is desirable. This can be achieved by constructing MOFs from simple ligands...
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Ultra-Microporous Zinc-Diaminotriazolate-Oxalate Metal Organic Framework with Nonlayered-Pillared Structure Showing High Carbon Dioxide Uptakes at Low Partial Pressures
pubs.acs.org
We report a zinc-diaminotriazolato-oxalate metal–organic framework (IISERP-MOF36, 1) inspired by the exceptional CO2 selectivity demonstrated by its triazolate analogue, CALF-20. Unlike the CALF-20...
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We are delighted to invite you to the International Conference on Emerging Materials for Energy and Sustainability (EMES-2025), organized by the Department of Chemistry and eVIT-RC, VIT Chennai. https://t.co/46J3Wbhl9B
#Conferences, #SDG, #energy, #sustainability, #Vitchennai
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Announcing the International Conference on Carbon Capture and Utilization 2025! Mark your calendars for 7-12 Dec 2025 at Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR, Bengaluru, India). All stakeholders in the field, prepare to attend! Details coming soon.
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Happy to have received the best poster award at the @ICCCU123775 conference at JNCSAR. I got the opportunity to present our research on MOFs for CO₂ capture in this very well-arranged conference. Grateful for the opportunity to meet Prof. C.N.R. Rao. Thanks to @IISERPune
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Grateful to be part of Chemsymphoria 2024! It was an incredible experience presenting my work on MOFs for CO₂ capture and receiving a prize for the Click! Chemistry contest. Thanks to the Chemphilic team for their exceptional effort in organizing such an event! @IISERPune
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CO2-Specific Gate Opening Transforms a Dense Cation-Filled Zinc-Aminotriazolato-Oxalate Framework into an Ultramicroporous MOF
pubs.acs.org
CALF-20, a zinc-triazolato-oxalate MOF, [Zn2(tz)2(Ox)]·solvent, is an industrially practiced ultramicroporous MOF sorbent. In CALF-20, some interesting structural transformations occur during its...
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We found that a dense zinc-based MOF (IISERP-MOF35) can open up its structure specifically for CO2, turning it into an ultramicroporous material. Check out at https://t.co/xz53byv32m
@IISERPune @RamanathanVaid1 @ACSPublications
#CO2capture #MOF
pubs.acs.org
CALF-20, a zinc-triazolato-oxalate MOF, [Zn2(tz)2(Ox)]·solvent, is an industrially practiced ultramicroporous MOF sorbent. In CALF-20, some interesting structural transformations occur during its...
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Thrilled to share "CO2-Specific Gate Opening Transforms a Dense Cation-Filled Zinc-Aminotriazolato-Oxalate Framework into an Ultramicroporous MOF" is now online. https://t.co/KVLB8Y8UqG Special thanks to @RamanathanVaid1 for the constant support and guidance. Thanks @IISERPune.
pubs.acs.org
CALF-20, a zinc-triazolato-oxalate MOF, [Zn2(tz)2(Ox)]·solvent, is an industrially practiced ultramicroporous MOF sorbent. In CALF-20, some interesting structural transformations occur during its...
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Congratulations 🎊 👏@Supriya28736509 and co-authors
Glad to present our recently accepted feature article on "Metal-free Small Molecule-based Piezoelectric Energy Harvesters" in @ChemCommun. Thanks to @boomi_iiser @I_m_Nilu and @RishukumarP @IISERPune @ChemistryIISERP
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Take a look at the recent work from our group. Congratulations to the everyone 👏 👏.....specially @pragalbhshekha
Our work “Resorcinol–Azodianiline Covalent Organic Framework Supported FeOOH Quantum Dot-Catalyzed Electrochemical Ammonia Synthesis under Ambient conditions” is now online! https://t.co/RbuZ8Zct6P A fantastic collaboration with @ims_masaoka_g and the team. @IISERPune @csir_ncl
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Congratulations 🎊👏 @I_m_Nilu ...
Our open access contribution to a special issue honouring Prof. J. J. Vittal. Great efforts from @I_m_Nilu @Supriya28736509 Ashlesha and @Jan_K_Zareba. Homochirality-Induced Piezoelectricity in a Single-Component Molecular System | Crystal Growth & Design
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📢@IndiaDST invites Academia/Research Institutes & Industry for submitting Proposals in consortium mode for Carbon Capture Utilisation(CCU) deployment in Cement Sector focusing on capturing hard-to-abate emissions & their utilisation. For Details & apply➡️ https://t.co/sQTI3C089g
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Congratulations to everyone 👏 🎊.......happy to part of this work
Our latest paper in @ChemicalScience reveals a significant advance in boosting hydroxide ion conductivity in Viologen-Bakelite Frameworks, offering new possibilities for flexible and efficient rechargeable ZABs! @IISERPune @RamanathanVaid1 @Deepak_Rase
https://t.co/xgjcBWYmyu
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Our latest paper in @ChemicalScience reveals a significant advance in boosting hydroxide ion conductivity in Viologen-Bakelite Frameworks, offering new possibilities for flexible and efficient rechargeable ZABs! @IISERPune @RamanathanVaid1 @Deepak_Rase
https://t.co/xgjcBWYmyu
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Congratulations shaoo 🎊👏...
Delighted to share our recently accepted manuscript "A Chiral B‐N Adduct as a New Frontier in Ferroelectrics and Piezoelectric Energy Harvesting" https://t.co/UU5ukb1PRy Thanks to @boomi_iiser Vaithee Sir, @dkabra78 @Jan_K_Zareba and all the co-authors. @angew_chem @IISERPune
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Congratulations everyone for this one... specially @ChitvanJain6
"A versatile approach coupling COF with classical polymer- 2D to 3D with improved conductivity." Read the article @J_A_C_S
https://t.co/0UUeJsCdox Congrats @ChitvanJain6 and team. Appreciate your support @IISERPune @csir_ncl @mhrd_innovation @IndiaDST @AFOSR @RamanathanVaid1
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