Tag Archives: David Díaz Díaz

Available “Early View” of the last publication with David and Juanvi

Self‐Assembly of Hollow Organic Nanotubes Driven by Arene Regioisomerism, Alegre-Requena, J. V.; Herrera, R. P.; Díaz Díaz, D. ChemPlusChem 2020, https://doi.org/10.1002/cplu.202000473 Abstract. Arene regioisomerism in low‐molecular‐weight gelators can be exploited as a tool to modulate the micro‐structures of the corresponding xerogel … Continue reading

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Congrats for this new article!

Sulfonamide as amide isostere for fine-tuning the gelation properties of physical gels, Alegre-Requena, J. V.; Grijalvo, S.; Sampedro, D.;  Mayr, J.;  Saldías, C.; Marrero-Tellado, J. J.; Eritja, R.; Herrera, R. P.; Díaz, D. D. RSC Adv. 2020, 10, 11481-11492. Abstract. … Continue reading

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Two old friends visited us!

Last 6th September, Prof. David Díaz Díaz from the “INSTITUTE OF NATURAL PRODUCTS AND AGROBIOLOGY” – CSIC (Tenerife, Spain), visited us. We enjoyed talking about Chemistry and much more 😉 Thanks a lot for coming to Zaragoza one more time! … Continue reading

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Synthesis and supramolecular self-assembly of glutamic acid-based squaramides

Synthesis and supramolecular self-assembly of glutamic acid-based squaramides Juan V. Alegre-Requena, Marleen Häring, Isaac G. Sonsona, Alex Abramov, Eugenia Marqués-López, Raquel P. Herrera and David Díaz Díaz Beilstein J. Org. Chem. 2018, 14, 2065–2073. Abstract: We describe the preparation and characterization of two … Continue reading

Posted in Collaboration, Eugenia Marqués-López, Gel, Publication, Raquel P. Herrera, Squaramide | Tagged , , , , , | Leave a comment

Urea Activation by an External Brønsted Acid: Breaking Self-Association and Tuning Catalytic Performance

Urea Activation by an External Brønsted Acid: Breaking Self-Association and Tuning Catalytic Performance Isaac G. Sonsona, Eugenia Marqués-López, Marleen Häring, David Díaz Díaz  and Raquel P. Herrera Catalysts 2018, 8(8), 305; https://doi.org/10.3390/catal8080305 Abstract: In this work, we hypothesize that Brønsted acids can activate urea-based catalysts by diminishing its … Continue reading

Posted in Collaboration, Eugenia Marqués-López, Gel, Hydrogen-bonding, Organocatalysis, Publication, Raquel P. Herrera, Urea | Tagged , , , , , , , , , , , | Leave a comment

A good friend visited us!

Prof. David Díaz Díaz, from the Universität Regensburg, come back to Zaragoza after long time, and as a present gave us a nice and excellent talk about “Air-sensitive photoredox catalysis performed under aerobic conditions in gel networks” DANKE!! 😉

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David visites us after long time!

Our friend and colleague, David Díez from the University of Regensburg, was in Zaragoza last Monday (2nd October). We enjoyed a lot talking about chemistry and much much more. Thank you for coming! See you soon “here” or “there”… Tschüss!

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Regulatory Parameters of Self-Healing Alginate Hydrogel Networks Prepared via Mussel-Inspired Dynamic Chemistry

This new article is one more example of the active and excellent collaboration between David and Raquel research groups. Thanks and congratulations! Regulatory Parameters of Self-Healing Alginate Hydrogel Networks Prepared via Mussel-Inspired Dynamic Chemistry. Alegre-Requena, J. V.; Haering, M.; Herrera, R. P.; Diaz, … Continue reading

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Expanding the knowledge about an old friend of us: aminoindanol urea derivative

This is a new joint paper with our friend Prof. Dr. David Díaz Díaz (Universität Regensburg) and his collaborators, which delves into the properties and applications of aminoindanol urea derivative: a fascinating molecule that has been already more than 10 years … Continue reading

Posted in Anion recognition, Application, Collaboration, Publication, Raquel P. Herrera, Research, Urea | Tagged , , , , , , , , , , , , , , | Leave a comment

Taking advantage of self-assembled capacity of squaramides to form stable alcogels

Squaramides are intriguing molecular structures intensively employed in the last decade as organocatalysts. That is why they entered to be part of the research focuses of H-OCA, dedicated -as you certainly know- to the asymmetric organocatalysis field. Along to this … Continue reading

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