Academic literature on the topic 'Ring formation (Chemistry) Diels-Alder reaction. Organic compounds'

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Journal articles on the topic "Ring formation (Chemistry) Diels-Alder reaction. Organic compounds"

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Tietze, Lutz F., Christian Ott, and Frank Haunert. "Efficient and regioselective synthesis of bridged ring systems by domino Knoevenagel – hetero-Diels–Alder reaction." Canadian Journal of Chemistry 79, no. 11 (2001): 1511–14. http://dx.doi.org/10.1139/v00-204.

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The bridged heterocycles 10–12 were efficiently prepared by a domino Knoevenagel – hetero-Diels–Alder reaction of N,N'-dimethylbarbituric acid 2 and the aldehydes 6–8 which contain an allyl moiety as dienophile. In contrast, reaction of 2 and aldehyde 5 with a dimethylallyl moiety leads to the annulated product 9. For the formation of 10–12, an exo-Z-syn and for that of 9 an endo-E-syn transition structure is proposed.Key words: bridged compounds, domino reaction, Diels–Alder reaction, heterocycles, Knoevenagel reaction.
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Xu, Yao-Chang, Michel Cantin, and Pierre Deslongchamps. "Stereocontrolled construction of A.B.C.[6.6.6] tricycle via transannular Diels–Alder reaction of 14-membered macrocycle with acetylene as dienophile." Canadian Journal of Chemistry 68, no. 12 (1990): 2137–43. http://dx.doi.org/10.1139/v90-328.

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The syntheses of the acyclic dienynes 14a (cis-trans-acetylene) and 14b (trans-trans-acetylene) are described. The tandem macrocyclization and transannular Diels–Alder reaction of the allylic chloride 14b was conducted in the presence of Cs2CO3 at 85 °C in one-pot to provide tricyclic product 16, with the two hydrogens in ring B being cis. On the other hand, treatment of the allylic chloride 14a under the same conditions afforded 14-membered macrocycle 17, which could be transformed at 250 °C into a similar tricyclic product 18 with the two hydrogens in ring B being trans, along with an intere
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Virolleaud, Marie-Alice, and Olivier Piva. "Tandem Sequential Ring-Closing Metathesis/Diels–Alder/Cross-Metathesis: Formation of Polycyclic Compounds by a New Three-Component Reaction." European Journal of Organic Chemistry 2007, no. 10 (2007): 1606–12. http://dx.doi.org/10.1002/ejoc.200600946.

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Back, Thomas G. "Design and synthesis of some biologically interesting natural and unnatural products based on organosulfur and selenium chemistry." Canadian Journal of Chemistry 87, no. 12 (2009): 1657–74. http://dx.doi.org/10.1139/v09-133.

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Organosulfur and selenium chemistry has provided fertile ground for the discovery of novel synthetic methodology and for the design of bioactive molecules with potential therapeutic applications. Thus, acetylenic sulfones have been employed in novel strategies for the synthesis of nitrogen heterocycles, including several biologically active alkaloids. The conjugate addition of nitrogen nucleophiles containing ester or chloroalkyl substituents to acetylenic sulfones was followed by base-mediated intramolecular alkylation or acylation to afford variously substituted piperidines, pyrrolizidines,
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Patel, H. S., and V. C. Patel. "Polyimides Containing an s-Triazine Ring." High Performance Polymers 12, no. 1 (2000): 225–35. http://dx.doi.org/10.1088/0954-0083/12/1/319.

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A series of new polyimides containing an s-triazine nucleus were prepared via Diels–Alder (DA) intermolecular polymerization of 2,6-bis(2-furanyl methyl imino)-4-ethoxy-1,3,5-triazine with different bis(maleimide) compounds. The DA reaction was carried out in tetrahydrofuran as solvent, as well as in bulk followed by aromatization of poly(tetrahydrophthalimido)-intermediates in the presence of acetic anhydride. All the poly(imino- s-triazine imide)s were characterized by elemental analysis, IR spectral studies and thermogravimetry. Glass fibre reinforced composites were prepared via in situ Di
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Padwa, Albert, William S. Kissell, and Cheryl K. Eidell. "Cyclization–cycloaddition cascades for the construction of azapolycyclic ring systems." Canadian Journal of Chemistry 79, no. 11 (2001): 1681–93. http://dx.doi.org/10.1139/v01-154.

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Cyclic 2-amidofuranones were obtained from the Rh(II)-catalyzed reaction of alpha-diazoketo substituted pyrrolidine derivatives. These compounds are derived by a [1,4]-hydrogen transfer from an initially formed carbonyl ylide dipole. Acylation of the amido-substituted furanone with pivalyl chloride provided a fused amidofuran, which underwent bimolecular Diels-Alder cycloaddition with N-phenylmaleimide. The Rh(II)-catalyzed decomposition of ethyl 2-diazo-3-oxo-(2-oxo-1-pent-4-enoyl-pyrrolidine-3-yl)propionate was also examined. In this case, the alkenyl group tethered to the amido carbonyl und
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Kotha, Sambasivarao, Saidulu Todeti, and Vikas R. Aswar. "Design and synthesis of C 3-symmetric molecules bearing propellane moieties via cyclotrimerization and a ring-closing metathesis sequence." Beilstein Journal of Organic Chemistry 14 (October 1, 2018): 2537–44. http://dx.doi.org/10.3762/bjoc.14.230.

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We have developed an efficient synthetic strategy to assemble C 3-symmetric molecules containing propellane moieties as end groups and a benzene ring as a central core. The synthesis of these C 3-symmetric molecules involves simple starting materials. Our approach to C 3-symmetric compounds relies on a Diels–Alder reaction, cyclotrimerization and ring-closing metathesis as key steps.
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Palkó, Márta, Mohamed El Haimer, Zsanett Kormányos, and Ferenc Fülöp. "Synthesis of Novel N-Heterocyclic Compounds Containing 1,2,3-Triazole Ring System via Domino, “Click” and RDA Reactions." Molecules 24, no. 4 (2019): 772. http://dx.doi.org/10.3390/molecules24040772.

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An uncomplicated, high-yielding synthetic route has been developed to constitute complicated heterocycles, applying domino, click and retro-Diels–Alder (RDA) reaction sequences. Starting from 2-aminocarboxamides, a new set of isoindolo[2,1-a]quinazolinones was synthesized with domino ring closure. A click reaction was performed to create the 1,2,3-triazole heterocyclic ring, followed by an RDA reaction resulting in dihydropyrimido[2,1-a]isoindole-2,6-diones. The absolute configuration, concluded by the norbornene structure that served as a chiral source, remained constant throughout the transf
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Nakada, Masahisa, Hiroki Shimoda, Takahiro Shibata, and Daisuke Sekine. "Synthetic Studies on Keramaphidin B: Formation of a Macrocyclic Ring by Intramolecular Diels-Alder Reaction." HETEROCYCLES 100, no. 1 (2020): 3. http://dx.doi.org/10.3987/com-19-14117.

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Alekseeva, Kseniia A., Elizaveta A. Kvyatkovskaya, Eugeniya V. Nikitina, et al. "Transposition of Aromaticity from a Furan to a Cyclohexane Ring in Furoisoindoles During the Interaction of 3-(Furyl)allylamines with Bromomaleic Anhydride." Synlett 31, no. 03 (2020): 255–60. http://dx.doi.org/10.1055/s-0039-1690782.

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An unexpected four-step reaction sequence was discovered in the course of investigation of the interaction between 3-(furan-2-yl)allylamines and bromomaleic anhydride. This conversion begins with the initial N-acylation of the allylamines by the anhydride, followed by intramolecular Diels–Alder reaction, which is accompanied by a dehydrohalogenation, and ends with the formation of partially unsaturated furo[2,3-f]isoindoles followed by transposition of aromaticity from the furan moiety to the neighboring cyclohexane ring. The reaction between 3-(furan-3-yl)allylamines and bromomaleic anhydride
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Dissertations / Theses on the topic "Ring formation (Chemistry) Diels-Alder reaction. Organic compounds"

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Chumachenko, Natasha. "[Beta]-acryloyloxysulfonyl tethers for intramolecular Diels-Alder cycloaddition reactions." [Kent, Ohio] : Kent State University, 2005. http://rave.ohiolink.edu/etdc/view?acc%5Fnum=kent1135392557.

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Thesis (Ph.D.)--Kent State University, 2005.<br>Title from PDF t.p. (viewed July 28, 2005). Author's first name appears on the abstract page as: Nataliya. Advisor: Paul Sampson. Keywords: b-hydroxysulfones; [beta]-hydroxysulfones; epoxide opening; intramolecular Diels-Alder reaction; vinylsulfones. Includes bibliographical references (p.194- 202).
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司徒振邦 and Chun-pong Szeto. "Studies on the use of (triphenylphosphine)copper(I) hydride hexamer inthe tandem reduction-intramolecular aldol cyclisation reaction." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2000. http://hub.hku.hk/bib/B31223412.

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Szeto, Chun-pong. "Studies on the use of (triphenylphosphine)copper(I) hydride hexamer in the tandem reduction-intramolecular aldol cyclisation reaction /." Hong Kong : University of Hong Kong, 2000. http://sunzi.lib.hku.hk/hkuto/record.jsp?B21827369.

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Crawford, Jason Blair. "Efforts towards steroid natural products using a sequential Diels-Alder strategy." Thesis, 1996. http://hdl.handle.net/1828/6208.

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Books on the topic "Ring formation (Chemistry) Diels-Alder reaction. Organic compounds"

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Boger, Dale L. Hetero Diels-Alder methodology in organic synthesis. Academic Press, 1987.

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Boger, Dale L. Hetero Diels-Alder methodology inorganic synthesis. Academic Press, 1987.

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3

Maier, Martin. Hetero-Diels-Alder Reaktionen mit inversem Elektronenbedarf zur Synthese von Hexopyranosiden. Hartung-Gorre, 1985.

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Book chapters on the topic "Ring formation (Chemistry) Diels-Alder reaction. Organic compounds"

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Lambert, Tristan H. "Total Synthesis of C–O Ring-Containing Natural Products." In Organic Synthesis. Oxford University Press, 2015. http://dx.doi.org/10.1093/oso/9780190200794.003.0053.

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Scott A. Snyder at Columbia University demonstrated (J. Am. Chem. Soc. 2012, 134, 17714) that tetrahydrofuran 1 could be readily converted to oxocane 2 by treatment with the BDSB reagent developed in his laboratory. Reduction of 2 with DIBAL-H initiated a second ring closure by mesylate displacement to form the bicycle 3, which represented a formal total synthesis of laurefucin 4. Andrew L. Lawrence at the Australian National University found (Org. Lett. 2012, 14, 4537) that upon treatment with catalytic base, rengyolone 6, which was prepared in one pot from phenol 5, could be converted to the natural products incarviditone 7 and incarvilleatone 8. This demonstration provides strong support for the postulated biomimetic formation of these natural products. Shuanhu Gao at East China Normal University reported (Angew. Chem. Int. Ed. 2012, 51, 7786) the total synthesis of (+)-fusarisetin A 12 via biomimetic oxidation of equisetin 10 to produce the peroxy compound 11, followed by reduction. The bicyclic carbon skeleton of equisetin 10 was synthesized by intramolecular Diels-Alder reaction of trienyl aldehyde 9. The ellagitannin natural product (+)-davidiin 15 possesses a glucopyranose core with the unusual 1C4 (tetraaxial) conformation due to the presence of a biaryl bridge between two of the galloyl groups. Hidetoshi Yamada at Kwansei Gakuin University constructed (Angew. Chem. Int. Ed. 2012, 51, 8026) this bridge by oxidation with CuCl2 of 13, in which the three sterically demanding triisopropylsiloxy groups enforce the requisite tetraaxial conformation. John A. Porco, Jr. at Boston University applied (J. Am. Chem. Soc. 2012, 134, 13108) his asymmetric [3+2] photocycloaddition chemistry to the total synthesis of the aglain natural product (+)-ponapensin 20. Irradiation of hydroxyflavone 16 with methyl cinnamate 17 in the presence of diol 18 afforded the entire core framework 19 of ponapensin 20, which was accessed in just a few further synthetic transformations. Finally, Silas P. Cook at Indiana University reported (J. Am. Chem. Soc. 2012, 134,13577) a five-pot total synthesis of the antimalarial (+)-artemisinin 25. Cyclohexenone 21 was converted by simple operations to aldehyde 22. This aldehyde was then engaged in a [4+2] cycloaddition with the silyl ketene acetal 23 to produce, after an impressive Wacker oxidation of the disubstituted olefin, bicycle 24.
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