Matteo Valentini
@ValMatteo_
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PhD student in Di Stefano group and member of @SupRaLabRome (@SapienzaRoma).
Roma, Lazio
Joined March 2022
📢Our team will be advertising a number of fully-funded positions in the coming months (new photoswitch-based projects)💡🚨 Applicants from the 🇪🇺 and 🇨🇳 are encouraged. More info will be coming soon and advertised on our website https://t.co/EJwFtX9nvg
#photoswitch #imine
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Using an enantiopure ACA to program over time the induction of chirality onto a metal complex. Thanks to all Authors and Reviewers. https://t.co/Wb5FSxNJO2
@SupRaLabRome @olivo_giorgio @S__DI_Stefano
onlinelibrary.wiley.com
Time-controlled induction of chirality on a Zn2+ metal complex is achieved by means of an enantiomerically pure activated carboxylic acid (ACA). Such chirality induction is due to the interaction...
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📢Very excited to announce that our team will be moving to @StAndrewsChem 🏴 later this month. I am so very grateful to @wuerthnergroup 🇩🇪for support over the last 3-years and stoked for our teams future! Check out an updated website at https://t.co/EJwFtX9nvg 🚨🔦💡
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We are happy to share that our article on chirality-driven non-equilibrium assembly is now published in @angew_chem ! 🎉Congrats to Lenard and Kun for showing how left and right handed aminoacyl phosphates enable control over kinetics and pathways. https://t.co/p91j3M73IC
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Check out our latest publication in @ChemSystemsChem! We explore how ACAs drive dissipative systems and identify three distinct types: Systems under dissipative conditions, Energy ratchets, NESS systems. @S__DI_STEFANO @gianfry_il_prof I hope you enjoy it!
chemistry-europe.onlinelibrary.wiley.com
This concept aims to describe the dissipative chemical systems driven by activated carboxylic acids (ACAs), identifying three different types: systems under dissipative conditions (Type 1), energy...
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🗣️ @BoekhovenLab is Associate Professor in the Bioscience Department at the @TU_Muenchen 🇩🇪 🎯 His research focuses on #molecular #selfassembly and #non-#equilibrium #chemically fueled #supramolecular #assemblies towards #synthetic #life from the bottom up 👌 👉 Do not miss it!
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Check out Monika Wenisch's work published in @Chem_CP! We’ve engineered synthetic cells that emerge, grow, and produce offspring autonomously, powered by chemical fuel. A significant stride towards synthetic life (Movie by Leonie Kauling) https://t.co/ykgFlEdPEX
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🚨📢Improving the photoswitching properties of N-alkyl imines, out now in @J_A_C_S 🤔Insights from our previous work led @GalliumWu, Lasse, and I to tune the properties of these N-alkyl systems🛠️, where we also observed isomer-dependent fluorescence!💡🔦🚥 https://t.co/OyiIhRsQ3A
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We are very happy to share our recent publication in @Chem_CP on abiotic aminoacylation and side chain recognition through compartmentalization! Congrats to @KunDaiChemistry and Lenard, and everyone else involved in the work! https://t.co/GjQ4gAJy70
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#ChemSystemsChem Transient Changes in Conductivity of a Water Solution by Means of an Activated Carboxylic Acid (ACA) (Stefano Di Stefano and co-workers) •
chemistry-europe.onlinelibrary.wiley.com
Nitroacetic acid, the most active activated carboxylic acid (ACA) employed so far, is used to transiently increase the conductivity of a water solution. Its dissociation produces ions that act as...
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In just 6 months as an intern in our lab at ICIQ, Gabriele delivered this fantastic work—yes, I’m biased, but rightfully so!—now out in @J_A_C_S! 🍒 on top: I got to collaborate again with my mentor @S__DI_STEFANO and friends from Parma. Check it out—you won’t be disappointed!
#ICIQNews 🔄A study conducted by Dr. @JA_Berrocal's group at ICIQ, in collaboration with Prof. Di Stefano’s team at @SapienzaRoma, presents a new approach to transient supramolecular polymerisation. Read more 🔗 https://t.co/bTsgol2hSW
@J_A_C_S
@iCERCA @_BIST @SOMM_alliance
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Imine-Based Transient Supramolecular Polymers | Journal of the American Chemical Society https://t.co/q55Yb1p5YD ACA chemistry meets imine chemistry again. Thanks to all authors and reviewers.
pubs.acs.org
Systems that change properties upon exposure to chemical stimuli offer the interesting prospect of (partially) mimicking the functions of living systems. Over the past decade, numerous supramolecular...
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Check out ACS’s video-highlight of our work in @J_A_C_S! The work by @PablZambrano show a primitive, very simple mechanism to produce synthetic cell offspring! https://t.co/aLeAkJU4Gm
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Happy for our published article in @NatureComms showing the departure from randomness in peptide bond formation through aminoacyl phosphate esters. Congratulations to Arti and everyone involved.@livMatS_UniFR @UniFreiburg @FreiburgChem @FitFreiburg
https://t.co/rq5UN9b4HY
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#ChemSystemsChem Coacervate-Droplet Cased Synthetic Cells Regulated By Activated Carboxylic Acids (ACAs) (Job Boekhoven and co-workers) @BoekhovenLab @ValMatteo_ @SupRaLabRome #openaccess 🔓
chemistry-europe.onlinelibrary.wiley.com
The activated carboxylic acid (ACA) reaction cycle, usually employed to transiently change the solution pH, has been exploited to precisely control the lifetime of peptide-based coacervates. This...
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Excited to share our latest publication in @J_A_C_S : 'Chemically Driven Division of Protocells by Membrane Budding' I am grateful to all my amazing coauthors for their incredible teamwork @BoekhovenLab . Read it: https://t.co/0q8Gsst75w
#JACS #Chemistry #Protocells #originoflife
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I'm super happy to see online our latest paper in collaboration with @BoekhovenLab! We coupled peptide-based coacervates formation with the ACA reaction cycle - offering a new versatile approach toward synthetic life. @S__DI_STEFANO
@SupRaLabRome
chemistry-europe.onlinelibrary.wiley.com
The activated carboxylic acid (ACA) reaction cycle, usually employed to transiently change the solution pH, has been exploited to precisely control the lifetime of peptide-based coacervates. This...
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My video for Primo Levi Award was the most popular one! Thanks to @SciGiovani for this recognition and a special thanks to everyone who supported me along the way 🎉
I’ve been selected among the finalists of Primo Levi Award, the most important prize of @SciGiovani 🎉 See the autonomous soft robots I worked on in my PhD with @S__DI_STEFANO in collaboration with @WaltherLab! 🎥 👉🏼 https://t.co/psPEQh0LTe RT and 👍🏼 to the video appreciated 😁
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We got to submit a cover for our work on the iminobispyrazole photoswitches🔦🚨💡 recently published in @ChemCommun ( https://t.co/XCg2fLO7In); check out the image made by @GalliumWu 👩🎨🎨 #imine #photoswitch #igot99problemsbutaswitchaintone
https://t.co/fguGyl7EUW
pubs.rsc.org
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We are excited to share our article published in @J_A_C_S on abiotic cascades using our favorite aminoacyl phosphates. Congratulations to @PolMahesh1 for the excellent work before the PhD defense. @FitFreiburg @livMatS_UniFR @UniFreiburg @FreiburgChem
https://t.co/DtJdPus9AM
pubs.acs.org
Biochemical acyl transfer cascades, such as those initiated by the adenylation of carboxylic acids, are central to various biological processes, including protein synthesis and fatty acid metabolism....
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