32. Chiral phosphoric acid-catalyzed Friedel-Crafts reaction of 2,5-disubstituted and 2-monosubstituted
pyrroles with isoindolinone-derived ketimines
Arben Beriša and Matija Gredičak
Org. Biomol. Chem. 2023, 21, 3381-3387. (PDF)
31. Construction of chiral Betti base precursors containing congested quaternary stereogenic center
via chiral phosphoric acid-catalyzed arylation of isoindolinone-derived ketimines
Danijel Glavač and Matija Gredičak
New J. Chem. 2022, 46, 8760-8764. (PDF)
30. Chemoselective and Regioselective Synthesis of Spiroisoindolinone Indenes
via an Intercepted Meyer-Schuster Rearrangement/Intramolecular Friedel-Crafts Alkylation Relay
Nikola Topolovčan, Marina Degač, Ana Čikoš and Matija Gredičak
J. Org. Chem. 2022, 87, 3712-3717. (PDF)
29. Enantioselective construction of a congested quaternary stereogenic center in isoindolinones
bearing three aryl groups via an organocatalytic formal Betti reaction
Arben Beriša, Danijel Glavač, Chao Zheng, Shu-Li You and Matija Gredičak
Org. Chem. Front. 2022, 9, 428-435. (PDF)
28. Synthesis of 14-membered enediyne-embedded macrocycles
Mladena Glavaš, Matija Gredičak, Zoran Štefanić and Ivanka Jerić
Org. Biomol. Chem. 2022, 20, 3823-3834. (PDF)
27. Enantioselective construction of a tetrasubstituted stereocenter in isoindolinones via
an organocatalyzed reaction between ketones and 3-hydroxyisoindolinones
Mateja Matišić and Matija Gredičak
Chem. Commun. 2021, 57, 13546-13549. (PDF)
26. Influence of N-Substitution in 3-Alkyl-3-hydroxyisoindolin-1-ones on Stereoselectivity of
Brønsted Acid-Catalyzed Synthesis of 3-Methyleneisoindolin-1-ones
Nikola Topolovčan, Filip Duplić and Matija Gredičak
Eur. J. Org. Chem. 2021, 3920-3924. (PDF)
25. Synthesis and stereoselective catalytic transformations of 3-hydroxyisoindolinones
Nikola Topolovčan and Matija Gredičak
Org. Biomol. Chem. 2021, 19, 4637-4651. (PDF)
24. Organocatalytic Synthesis of α-Triphenylmethylamines from Diarylketimines and Phenols
Danijel Glavač, Nikola Topolovčan and Matija Gredičak
J. Org. Chem. 2020, 85, 14253-14261. (PDF)
23. Adsorption of Aspartate Derivatives to Calcite Surfaces in Aqueous Environment
Robert Stepić, Lara Jurković, Ksenia Klementyeva, Marko Ukrainczyk, Matija Gredičak, David. M. Smith,
Damir Kralj and Ana-Sunčana Smith
Cryst. Growth Des. 2020, 20, 2853-2859. (PDF)
Danijel Glavač, Ivanka Jerić and Matija Gredičak
Croat. Chem. Acta 2019, 92, 203-209. (PDF)
21. Enediyne-Comprising Amino Aldehydes in the Passerini Reaction
Mladena Glavaš, Matija Gredičak and Ivanka Jerić
ACS Comb. Sci. 2018, 20, 151-155. (PDF)
Danijel Glavač, Chao Zheng, Irena Dokli, Shu-li You and Matija Gredičak
J. Org. Chem. 2017, 82, 8752-8760. (PDF)
Iva Orehovec, Danijel Glavač, Irena Dokli, Matija Gredičak and Ivo Piantanida
Croat. Chem. Acta 2017, 90, 603-611. (PDF)
18. Organocatalytic Asymmetric Transformations of 3-Substituted 3-Hydroxyisoindolinones
Danijel Glavač and Matija Gredičak
Synlett 2017, 28, 889-897. (PDF)
Danijel Glavač, Irena Dokli, and Matija Gredičak
Curr. Org. Chem. 2017, 21, 1335-1340. (PDF)
Josipa Suć, Irena Dokli, and Matija Gredičak
Chem. Commun. 2016, 52, 2071-2074. (PDF)
15. Synthesis and structure characterization of zinc and cadmium dipeptide coordination polymers
Andreas Puškarić, Ivan Halasz, Matija Gredičak, Ana Palčić and Josip Bronić
New. J. Chem. 2016, 40, 4252-4257. (PDF)
14. Mechanochemical Ritter reaction: A rapid approach to functionalized amides at room temperature
Irena Dokli and Matija Gredičak
Eur. J. Org. Chem. 2015, 2727-2732. (PDF)
13. A cation-directed two-component cascade approach to enantioenriched pyrroloindolines
Jamie R. Wolstenhulme, Alex Cavell, Matija Gredičak, Russell W. Driver and Martin D. Smith
Chem. Commun. 2014, 50, 13585-13588. (PDF)
12. Phase-transfer-catalysed synthesis of pyrroloindolines and pyridoindolines
by a hydrogen-bond-assisted isocyanide cyclization cascade
Peter C. Knipe, Matija Gredičak, Artiom Cernijenko, Robert S. Paton and Martin D. Smith
Chem. Eur. J. 2014, 20, 3005-3009. (PDF)
11. 'Backdoor Induction' of chirality: Asymmetric hydrogenation with rhodium(I) complexes of
triphenylphosphane-substituted β-turn Mimetics
Zoran Kokan, Zoran Glasovac, Maja Majerić Elenkov, Matija Gredičak, Ivanka Jerić and Srećko Kirin
Organometallics 2014, 33, 4005-4015. (PDF)
10. Interactions of scalenohedral calcite crystals with acidic amino acid derivatives of salicylic acid
Marko Ukrainczyk, Matija Gredičak, Ivanka Jerić and Damir Kralj
Cryst. Growth Des. 2014, 14, 4335-4346. (PDF)
9. Cyclic enediyne-amino acid chimeras as new aminopeptidase N inhibitors
Matija Gredičak, Marija Abramić and Ivanka Jerić
Amino Acids 2012, 43, 2087-2100. (PDF)
8. Interactions of salicylic acid derivatives with calcite crystals
Marko Ukrainczyk, Matija Gredičak, Ivanka Jerić and Damir Kralj
J. Colloid. Interface Sci. 2012, 365, 296-307. (PDF)
7. Amino acid-based tweezers: The role of turn-like conformation in the binding of copper(II)
Matija Gredičak, Nikola Bregović, Dejana Carić and Ivanka Jerić
J. Inorg. Biochem. 2012, 116, 45-52. (PDF)
Andreja Radman, Matija Gredičak, Ivica Kopriva and Ivanka Jerić
Int. J. Mol. Sci. 2011, 12, 8415-8430. (PDF)
Matija Gredičak, Ivana Matanović, Boris Zimmermann and Ivanka Jerić
J. Org. Chem. 2010, 75, 6219-6228. (PDF)
4. Computational structure-activity study directs synthesis of novel antitumor enkephalin analogs
Matija Gredičak, Fran Supek, Marijeta Kralj, Zsuzsa Majer, Miklos Hollosi, Tomislav Šmuc,
Kata Mlinarić-Majerski and Štefica Horvat
Amino Acids 2010, 38, 1185-1191. (PDF)
3. The Sonogashira cross-coupling reaction of alkenyl chlorides with aliphatic acetylenes
Matija Gredičak and Ivanka Jerić
Synlett 2009, 7, 1063-1066. (PDF)
2. Novel side-chain glucosylated and adamantylated [Asp2/Glu 2]enkephalin analogs:
Synthesis and in vitro growth inhibition of human tumor cells
Štefica Horvat, Marijeta Kralj, Milica Perc, Ivanka Jerić, Lidija Varga-Defterdarović, Andreja Jakas,
Maja Roščić, Lidija Šuman and Matija Gredičak
Chem. Biol. Drug Des. 2009, 73, 253-257. (PDF)
1. Novel chloroenyne-modified amino acid derivatives
Matija Gredičak, Anita Kolonić and Ivanka Jerić
Amino Acids 2008, 35, 185-194. (PDF)