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Items: 39

1.

Direct arene C-H fluorination with 18F- via organic photoredox catalysis.

Chen W, Huang Z, Tay NES, Giglio B, Wang M, Wang H, Wu Z, Nicewicz DA, Li Z.

Science. 2019 Jun 21;364(6446):1170-1174. doi: 10.1126/science.aav7019.

PMID:
31221856
2.

Enantioselective counter-anions in photoredox catalysis: the asymmetric cation radical Diels-Alder reaction.

Morse PD, Nguyen TM, Cruz CL, Nicewicz DA.

Tetrahedron. 2018 Jun 28;74(26):3266-3272. doi: 10.1016/j.tet.2018.03.052. Epub 2018 Mar 26.

PMID:
30287974
3.

Generation and Alkylation of α-Carbamyl Radicals via Organic Photoredox Catalysis.

McManus JB, Onuska NPR, Nicewicz DA.

J Am Chem Soc. 2018 Jul 25;140(29):9056-9060. doi: 10.1021/jacs.8b04890. Epub 2018 Jul 10.

PMID:
29986129
4.

A General Strategy for Aliphatic C-H Functionalization Enabled by Organic Photoredox Catalysis.

Margrey KA, Czaplyski WL, Nicewicz DA, Alexanian EJ.

J Am Chem Soc. 2018 Mar 28;140(12):4213-4217. doi: 10.1021/jacs.8b00592. Epub 2018 Mar 16.

5.

Direct Synthesis of Polysubstituted Aldehydes via Visible-Light Catalysis.

Wu F, Wang L, Chen J, Nicewicz DA, Huang Y.

Angew Chem Int Ed Engl. 2018 Feb 19;57(8):2174-2178. doi: 10.1002/anie.201712384. Epub 2018 Jan 24.

PMID:
29316099
6.

Cation Radical Accelerated Nucleophilic Aromatic Substitution via Organic Photoredox Catalysis.

Tay NES, Nicewicz DA.

J Am Chem Soc. 2017 Nov 15;139(45):16100-16104. doi: 10.1021/jacs.7b10076. Epub 2017 Oct 31.

PMID:
29068677
7.

Direct Aryl C-H Amination with Primary Amines Using Organic Photoredox Catalysis.

Margrey KA, Levens A, Nicewicz DA.

Angew Chem Int Ed Engl. 2017 Dec 4;56(49):15644-15648. doi: 10.1002/anie.201709523. Epub 2017 Nov 13.

8.

Oxidation of alkyl benzenes by a flavin photooxidation catalyst on nanostructured metal-oxide films.

Dongare P, MacKenzie I, Wang D, Nicewicz DA, Meyer TJ.

Proc Natl Acad Sci U S A. 2017 Aug 29;114(35):9279-9283. doi: 10.1073/pnas.1707318114. Epub 2017 Aug 11.

9.

Predictive Model for Site-Selective Aryl and Heteroaryl C-H Functionalization via Organic Photoredox Catalysis.

Margrey KA, McManus JB, Bonazzi S, Zecri F, Nicewicz DA.

J Am Chem Soc. 2017 Aug 16;139(32):11288-11299. doi: 10.1021/jacs.7b06715. Epub 2017 Aug 7.

10.

Visible-Light-Mediated [4+2] Cycloaddition of Styrenes: Synthesis of Tetralin Derivatives.

Wang L, Wu F, Chen J, Nicewicz DA, Huang Y.

Angew Chem Int Ed Engl. 2017 Jun 6;56(24):6896-6900. doi: 10.1002/anie.201702940. Epub 2017 May 5.

PMID:
28474858
11.

Direct C-H Cyanation of Arenes via Organic Photoredox Catalysis.

McManus JB, Nicewicz DA.

J Am Chem Soc. 2017 Mar 1;139(8):2880-2883. doi: 10.1021/jacs.6b12708. Epub 2017 Feb 14.

12.

Reversing the Regioselectivity of Halofunctionalization Reactions through Cooperative Photoredox and Copper Catalysis.

Griffin JD, Cavanaugh CL, Nicewicz DA.

Angew Chem Int Ed Engl. 2017 Feb 13;56(8):2097-2100. doi: 10.1002/anie.201610722. Epub 2017 Jan 20.

13.

A General Approach to Catalytic Alkene Anti-Markovnikov Hydrofunctionalization Reactions via Acridinium Photoredox Catalysis.

Margrey KA, Nicewicz DA.

Acc Chem Res. 2016 Sep 20;49(9):1997-2006. doi: 10.1021/acs.accounts.6b00304. Epub 2016 Sep 2.

PMID:
27588818
14.

Organic Photoredox Catalysis.

Romero NA, Nicewicz DA.

Chem Rev. 2016 Sep 14;116(17):10075-166. doi: 10.1021/acs.chemrev.6b00057. Epub 2016 Jun 10.

PMID:
27285582
15.

Synthesis of α-Benzyloxyamino-γ-butyrolactones via a Polar Radical Crossover Cycloaddition Reaction.

Cavanaugh CL, Nicewicz DA.

Org Lett. 2015 Dec 18;17(24):6082-5. doi: 10.1021/acs.orglett.5b03113. Epub 2015 Dec 8.

PMID:
26646284
16.

Ambient-Temperature Newman-Kwart Rearrangement Mediated by Organic Photoredox Catalysis.

Perkowski AJ, Cruz CL, Nicewicz DA.

J Am Chem Soc. 2015 Dec 23;137(50):15684-7. doi: 10.1021/jacs.5b11800. Epub 2015 Dec 11.

PMID:
26645387
17.

Site-selective arene C-H amination via photoredox catalysis.

Romero NA, Margrey KA, Tay NE, Nicewicz DA.

Science. 2015 Sep 18;349(6254):1326-30. doi: 10.1126/science.aac9895.

18.

Hydrodecarboxylation of Carboxylic and Malonic Acid Derivatives via Organic Photoredox Catalysis: Substrate Scope and Mechanistic Insight.

Griffin JD, Zeller MA, Nicewicz DA.

J Am Chem Soc. 2015 Sep 9;137(35):11340-8. doi: 10.1021/jacs.5b07770. Epub 2015 Aug 28.

19.

Visible Light Photoinitiated Metal-Free Living Cationic Polymerization of 4-Methoxystyrene.

Perkowski AJ, You W, Nicewicz DA.

J Am Chem Soc. 2015 Jun 24;137(24):7580-3. doi: 10.1021/jacs.5b03733. Epub 2015 Jun 11.

PMID:
26050662
20.

Amide and amine nucleophiles in polar radical crossover cycloadditions: synthesis of γ-lactams and pyrrolidines.

Gesmundo NJ, Grandjean JM, Nicewicz DA.

Org Lett. 2015 Mar 6;17(5):1316-9. doi: 10.1021/acs.orglett.5b00316. Epub 2015 Feb 19.

PMID:
25695366
22.

Mechanistic insight into the photoredox catalysis of anti-markovnikov alkene hydrofunctionalization reactions.

Romero NA, Nicewicz DA.

J Am Chem Soc. 2014 Dec 10;136(49):17024-35. doi: 10.1021/ja506228u. Epub 2014 Nov 24.

23.

Butyrolactone synthesis via polar radical crossover cycloaddition reactions: diastereoselective syntheses of methylenolactocin and protolichesterinic acid.

Zeller MA, Riener M, Nicewicz DA.

Org Lett. 2014 Sep 19;16(18):4810-3. doi: 10.1021/ol5022993. Epub 2014 Sep 5.

24.

The direct anti-Markovnikov addition of mineral acids to styrenes.

Wilger DJ, Grandjean JM, Lammert TR, Nicewicz DA.

Nat Chem. 2014 Aug;6(8):720-6. doi: 10.1038/nchem.2000. Epub 2014 Jul 13.

PMID:
25054943
25.

Cyclization-endoperoxidation cascade reactions of dienes mediated by a pyrylium photoredox catalyst.

Gesmundo NJ, Nicewicz DA.

Beilstein J Org Chem. 2014 Jun 3;10:1272-81. doi: 10.3762/bjoc.10.128. eCollection 2014.

26.

anti-Markovnikov hydroamination of alkenes catalyzed by a two-component organic photoredox system: direct access to phenethylamine derivatives.

Nguyen TM, Manohar N, Nicewicz DA.

Angew Chem Int Ed Engl. 2014 Jun 10;53(24):6198-201. doi: 10.1002/anie.201402443. Epub 2014 Apr 24.

27.

Organic Photoredox Catalysis as a General Strategy for Anti-Markovnikov Alkene Hydrofunctionalization.

Nicewicz DA, Hamilton DS.

Synlett. 2014;25(9):1191-1196. doi: 10.1055/s-0033-1340738. Epub 2014 Mar 5.

28.

Synthesis of cyclobutane lignans via an organic single electron oxidant-electron relay system.

Riener M, Nicewicz DA.

Chem Sci. 2013 Jun 1;4(6). doi: 10.1039/C3SC50643F.

29.

Direct catalytic anti-Markovnikov addition of carboxylic acids to alkenes.

Perkowski AJ, Nicewicz DA.

J Am Chem Soc. 2013 Jul 17;135(28):10334-7. doi: 10.1021/ja4057294. Epub 2013 Jul 3.

30.

Anti-Markovnikov hydroamination of alkenes catalyzed by an organic photoredox system.

Nguyen TM, Nicewicz DA.

J Am Chem Soc. 2013 Jul 3;135(26):9588-91. doi: 10.1021/ja4031616. Epub 2013 Jun 19.

31.

Synthesis of highly substituted tetrahydrofurans by catalytic polar-radical-crossover cycloadditions of alkenes and alkenols.

Grandjean JM, Nicewicz DA.

Angew Chem Int Ed Engl. 2013 Apr 2;52(14):3967-71. doi: 10.1002/anie.201210111. Epub 2013 Feb 25. No abstract available.

PMID:
23440762
32.

Direct catalytic anti-markovnikov hydroetherification of alkenols.

Hamilton DS, Nicewicz DA.

J Am Chem Soc. 2012 Nov 14;134(45):18577-80. doi: 10.1021/ja309635w. Epub 2012 Nov 5.

33.

Silyl glyoxylates. Conception and realization of flexible conjunctive reagents for multicomponent coupling.

Boyce GR, Greszler SN, Johnson JS, Linghu X, Malinowski JT, Nicewicz DA, Satterfield AD, Schmitt DC, Steward KM.

J Org Chem. 2012 May 18;77(10):4503-15. doi: 10.1021/jo300184h. Epub 2012 Mar 23.

34.

Self-consistent synthesis of the squalene synthase inhibitor zaragozic acid C via controlled oligomerization.

Nicewicz DA, Satterfield AD, Schmitt DC, Johnson JS.

J Am Chem Soc. 2008 Dec 24;130(51):17281-3. doi: 10.1021/ja808347q.

35.

Merging photoredox catalysis with organocatalysis: the direct asymmetric alkylation of aldehydes.

Nicewicz DA, MacMillan DW.

Science. 2008 Oct 3;322(5898):77-80. doi: 10.1126/science.1161976. Epub 2008 Sep 4.

36.

Catalytic asymmetric acylation of (silyloxy)nitrile anions.

Nicewicz DA, Yates CM, Johnson JS.

Angew Chem Int Ed Engl. 2004 May 10;43(20):2652-5. No abstract available.

PMID:
18629980
38.
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