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PUBMED FOR HANDHELDS

Journal Abstract Search


543 related items for PubMed ID: 32729851

  • 1. Catalytic reductive aminations using molecular hydrogen for synthesis of different kinds of amines.
    Murugesan K, Senthamarai T, Chandrashekhar VG, Natte K, Kamer PCJ, Beller M, Jagadeesh RV.
    Chem Soc Rev; 2020 Sep 07; 49(17):6273-6328. PubMed ID: 32729851
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  • 3. General and selective synthesis of primary amines using Ni-based homogeneous catalysts.
    Murugesan K, Wei Z, Chandrashekhar VG, Jiao H, Beller M, Jagadeesh RV.
    Chem Sci; 2020 Mar 25; 11(17):4332-4339. PubMed ID: 34122891
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  • 4. Catalytic Reductive Amination of Aldehydes and Ketones With Nitro Compounds: New Light on an Old Reaction.
    Sukhorukov AY.
    Front Chem; 2020 Mar 25; 8():215. PubMed ID: 32351929
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  • 5. Convenient iron-catalyzed reductive aminations without hydrogen for selective synthesis of N-methylamines.
    Natte K, Neumann H, Jagadeesh RV, Beller M.
    Nat Commun; 2017 Nov 07; 8(1):1344. PubMed ID: 29116077
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  • 6. Development of Iron-Based Single Atom Materials for General and Efficient Synthesis of Amines.
    Ma Z, Kuloor C, Kreyenschulte C, Bartling S, Malina O, Haumann M, Menezes PW, Zbořil R, Beller M, Jagadeesh RV.
    Angew Chem Int Ed Engl; 2024 Sep 09; 63(37):e202407859. PubMed ID: 38923207
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  • 7. Simple ruthenium-catalyzed reductive amination enables the synthesis of a broad range of primary amines.
    Senthamarai T, Murugesan K, Schneidewind J, Kalevaru NV, Baumann W, Neumann H, Kamer PCJ, Beller M, Jagadeesh RV.
    Nat Commun; 2018 Oct 08; 9(1):4123. PubMed ID: 30297832
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  • 8. Iron-catalyzed synthesis of secondary amines: on the way to green reductive aminations.
    Stemmler T, Surkus AE, Pohl MM, Junge K, Beller M.
    ChemSusChem; 2014 Nov 08; 7(11):3012-6. PubMed ID: 25196429
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  • 9. Employing Ammonia for the Synthesis of Primary Amines: Recent Achievements over Heterogeneous Catalysts.
    Zhang M, Qi Z, Xie M, Qu Y.
    ChemSusChem; 2024 Aug 27; ():e202401550. PubMed ID: 39189946
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  • 10. Reductive aminations by imine reductases: from milligrams to tons.
    Gilio AK, Thorpe TW, Turner N, Grogan G.
    Chem Sci; 2022 May 04; 13(17):4697-4713. PubMed ID: 35655886
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  • 13. Anchored Palladium Complex-Generated Clusters on Zirconia: Efficiency in Reductive N-Alkylation of Amines with Carbonyl Compounds under Hydrogen Atmosphere.
    Zhang Z, Ikeda T, Murayama H, Honma T, Tokunaga M, Motoyama Y.
    Chem Asian J; 2022 Apr 01; 17(7):e202101243. PubMed ID: 35266303
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  • 15. NAD(P)H-Dependent Dehydrogenases for the Asymmetric Reductive Amination of Ketones: Structure, Mechanism, Evolution and Application.
    Sharma M, Mangas-Sanchez J, Turner NJ, Grogan G.
    Adv Synth Catal; 2017 Jun 19; 359(12):2011-2025. PubMed ID: 30008635
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  • 17. Homogeneous cobalt-catalyzed reductive amination for synthesis of functionalized primary amines.
    Murugesan K, Wei Z, Chandrashekhar VG, Neumann H, Spannenberg A, Jiao H, Beller M, Jagadeesh RV.
    Nat Commun; 2019 Nov 29; 10(1):5443. PubMed ID: 31784518
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  • 18. Micelle-Promoted Reductive Amination of DNA-Conjugated Amines for DNA-Encoded Library Synthesis.
    Anderson MJ, Carton TP, Salvini CLA, Crawford JJ, Pairaudeau G, Waring MJ.
    Chemistry; 2024 Apr 11; 30(21):e202400239. PubMed ID: 38251309
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  • 20. Protecting-group-free synthesis of amines: synthesis of primary amines from aldehydes via reductive amination.
    Dangerfield EM, Plunkett CH, Win-Mason AL, Stocker BL, Timmer MS.
    J Org Chem; 2010 Aug 20; 75(16):5470-7. PubMed ID: 20666449
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