ChemRxiv(@ChemRxiv) 's Twitter Profileg
ChemRxiv

@ChemRxiv

ChemRxiv is the open preprint server for the global chemistry community. Contact us at [email protected] for assistance.

ID:817434290950504448

linkhttps://chemrxiv.org calendar_today06-01-2017 18:14:56

11,1K Tweets

29,1K Followers

229 Following

Yusuke ISHIGAKI(@ysk_isgk) 's Twitter Profile Photo

Happy to share our preprint entitled 'Cation-Stacking Approach Enabling Interconversion between Bis(xanthylium) and Its Reduced Species' has appeared in ChemRxiv . Huge congratulations to Moto and all involved!!
go.shr.lc/3JtTRIL

Happy to share our preprint entitled 'Cation-Stacking Approach Enabling Interconversion between Bis(xanthylium) and Its Reduced Species' has appeared in @ChemRxiv . Huge congratulations to Moto and all involved!! go.shr.lc/3JtTRIL
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Archismita(@archismita235) 's Twitter Profile Photo

A brief version of one of my works is on ChemRxiv. Superlattices of Zn2+ Mediated 2D Assembly of Mn2+-Cysteine Complex Nanoparticles Alter Electron Spin Transitions in the X-band | ChemRxiv - go.shr.lc/4aHJqgr

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Vinicius Verri(@VeriVinicius) 's Twitter Profile Photo

Sharing our latest piece of work from Benedikt Warth lab on a novel method combining targeted (MRM-HR) and untargeted (SWATH) approaches for sensitive exposomics and broad coverage metabolomics in a single LC-MS run.

chemrxiv.org/engage/chemrxi…

Sharing our latest piece of work from @ben_warth lab on a novel method combining targeted (MRM-HR) and untargeted (SWATH) approaches for sensitive exposomics and broad coverage metabolomics in a single LC-MS run. chemrxiv.org/engage/chemrxi…
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Olexandr Isayev 🇺🇦🇺🇸(@olexandr) 's Twitter Profile Photo

Very excited to share our latest ChemRxiv preprint: 'Discovery of Crystallizable Organic Semiconductors with ' U.S. National Science Foundation DMREF sponsored collaboration with Barry Rand's group Princeton University
chemrxiv.org/engage/chemrxi…

Very excited to share our latest @ChemRxiv preprint: 'Discovery of Crystallizable Organic Semiconductors with #MachineLearning' @NSF DMREF sponsored collaboration with Barry Rand's group @Princeton #compchem chemrxiv.org/engage/chemrxi…
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Vertaix®(@Vertaix_) 's Twitter Profile Photo

What you see in the picture is the current best metal-organic framework (MOF) for ammonia adsorption, an important environmentally relevant application. Its composition is C78-O25-H42-Cr3. We discovered this material by developing a new algorithm that combines Bayesian

#NewPaper What you see in the picture is the current best metal-organic framework (MOF) for ammonia adsorption, an important environmentally relevant application. Its composition is C78-O25-H42-Cr3. We discovered this material by developing a new algorithm that combines Bayesian
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Mykhailiuk Chem 🇺🇦(@MykhailiukChem) 's Twitter Profile Photo

Aromatic methyl sulfones are popular (>30 drugs). Heteroaromatic ones are not (lack of approaches). Not anymore!
A new reagent towards methyl sulfones in one step!
Today in ChemRxiv bit.ly/3W0nWqA

Aromatic methyl sulfones are popular (>30 drugs). Heteroaromatic ones are not (lack of approaches). Not anymore! A new reagent towards methyl sulfones in one step! Today in @ChemRxiv bit.ly/3W0nWqA
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Wang Lab@SIOC(@pengwanglab) 's Twitter Profile Photo

Can Ni(II) act as Pd(II) in oxdative difunctionalization of alkene? Here might be a solution with acac-type ligand. Check out our latest preprint @chemrxiv : Alkene Dicarbofunctionalisationvia High-Valent Nickel Catalysis | ChemRxiv- go.shr.lc/3xA28rU

Can Ni(II) act as Pd(II) in oxdative difunctionalization of alkene? Here might be a solution with acac-type ligand. Check out our latest preprint @chemrxiv : Alkene Dicarbofunctionalisationvia High-Valent Nickel Catalysis | ChemRxiv- go.shr.lc/3xA28rU
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Yichun Wang(@Yichun_Wang_Lab) 's Twitter Profile Photo

We Yichun Wang are glad to share a preprint on ChemRxiv with Matthew J. Webber - 'Sensitive Fluorometric Detection of Fentanyl-Class Agents by Competition-Mediated Supramolecular Displacement and Graphene Nanoparticle Quenching.' chemrxiv.org/engage/chemrxi…

We @Yichun_Wang_Lab are glad to share a preprint on @ChemRxiv with @WebberLab - 'Sensitive Fluorometric Detection of Fentanyl-Class Agents by Competition-Mediated Supramolecular Displacement and Graphene Nanoparticle Quenching.' chemrxiv.org/engage/chemrxi…
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Boron-Chem-Research(@Boron_Chemistry) 's Twitter Profile Photo

Buildup and Consumption of Species in Emulsion Droplets during Aqueous Suzuki Coupling Correlate with Yield (ChemRxiv): chemrxiv.org/engage/chemrxi… (@BlumLaboratory).

Buildup and Consumption of Species in Emulsion Droplets during Aqueous Suzuki Coupling Correlate with Yield (@ChemRxiv): chemrxiv.org/engage/chemrxi… (@BlumLaboratory).
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Henrik Pedersen(@hacp81) 's Twitter Profile Photo

In our latest ChemRxiv preprint 'On the origin of epitaxial r-B4C growth by on 4H-SiC' Sachin Sharma uses analytical TEM to try to understand why we get epitaxy - no interlayers or interface roughness is found. Surface energy is likely the explanation
chemrxiv.org/engage/chemrxi…

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Apurba De(@femto_apurba) 's Twitter Profile Photo

Check out our recent ChemRxiv on how to extract stimulated emission info in perovskite NCs from their complex-overlapped signals in transient absorption data!
Unveiling the stimulated emission cross section in quantum confined CsPbBr3 nanocrystals
go.shr.lc/49Myk8D

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Nobuhiro Yanai(@NobuhiroYanai) 's Twitter Profile Photo

Excited to share our new work on in vivo optogenetics using 'heavy metal-free' photon upconversion nanoparticles ChemRxiv!! We developed a new Br-modified TADF sensitizer for red/NIR-to-blue TTA-UC. Great collaboration with Ajioka group TMDU - Tokyo Medical and Dental University.
chemrxiv.org/engage/chemrxi…

Excited to share our new work on in vivo optogenetics using 'heavy metal-free' photon upconversion nanoparticles @ChemRxiv!! We developed a new Br-modified TADF sensitizer for red/NIR-to-blue TTA-UC. Great collaboration with Ajioka group @TMDUniversity. chemrxiv.org/engage/chemrxi…
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Naoki Shida / 信田尚毅(@naoki_shida) 's Twitter Profile Photo

Super excited and proud to share our latest work on electrocatalytic hydrogenation of N-containing aromatic compounds in ChemRxiv !! We unlocked e-chem hydrogenation of pyridine, quiniline, pyrazine, and pyrrole👍Big congratulations to all involved
🎉 🙌chemrxiv.org/engage/chemrxi…

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Jon Beves(@JonBeves) 's Twitter Profile Photo

Our latest pre-print is up on ChemRxiv! We made a photoswitchable cage that can catalyse a Michael addition reaction. The cage (and catalysis) can be switched reversibly ON/OFF with visible light. Comments, corrections, and suggestions are very welcome!
doi.org/10.26434/chemr…

Our latest pre-print is up on @ChemRxiv! We made a photoswitchable cage that can catalyse a Michael addition reaction. The cage (and catalysis) can be switched reversibly ON/OFF with visible light. Comments, corrections, and suggestions are very welcome! doi.org/10.26434/chemr…
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Mesías Orozco-Ic(@MesiasOrozco) 's Twitter Profile Photo

Determining the aromaticity of molecules with heavy elements is never trivial, especially from a magnetic viewpoint due to the core electrons. Check out our preprint on this topic on ChemRxiv! doi.org/10.26434/chemr… A work with Eduard Matito 🎗 Gabriel Merino Faculty of Science, University of Helsinki

Determining the aromaticity of molecules with heavy elements is never trivial, especially from a magnetic viewpoint due to the core electrons. Check out our preprint on this topic on @ChemRxiv! doi.org/10.26434/chemr… A work with @eduardmatito @theochemmerida @KumpulaScience
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Lorenz Lab(@lorenz_lab) 's Twitter Profile Photo

Our latest publication is available on ChemRxiv . In it we present a suite of MD analysis tools that allow us to gain a state-of-the-art understanding of interfaces and the self-assembly of soft and biological matter. Have a 👀 ... bit.ly/3VPoU9c 1/5

Our latest publication is available on @ChemRxiv . In it we present a suite of MD analysis tools that allow us to gain a state-of-the-art understanding of interfaces and the self-assembly of soft and biological matter. Have a 👀 ... bit.ly/3VPoU9c 1/5
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