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Heterocyclic compound

A heterocyclic compound or ring structure is a cyclic compound that has atoms of at least two different elements as members of its ring(s).[1] Heterocyclic organic chemistry is the branch of organic chemistry dealing with the synthesis, properties, and applications of organic heterocycles.[2]

Structures and names of common heterocyclic compounds
Pyridine, a heterocyclic compound

Examples of heterocyclic compounds include all of the nucleic acids, the majority of drugs, most biomass (cellulose and related materials), and many natural and synthetic dyes. More than half of known compounds are heterocycles.[3] 59% of US FDA-approved drugs contain nitrogen heterocycles.[4]

Classification edit

The study of organic heterocyclic chemistry focuses especially on organic unsaturated derivatives, and the preponderance of work and applications involves unstrained organic 5- and 6-membered rings. Included are pyridine, thiophene, pyrrole, and furan. Another large class of organic heterocycles refers to those fused to benzene rings. For example, the fused benzene derivatives of pyridine, thiophene, pyrrole, and furan are quinoline, benzothiophene, indole, and benzofuran, respectively. The fusion of two benzene rings gives rise to a third large family of organic compounds. Analogs of the previously mentioned heterocycles for this third family of compounds are acridine, dibenzothiophene, carbazole, and dibenzofuran, respectively.

Heterocyclic organic compounds can be usefully classified based on their electronic structure. The saturated organic heterocycles behave like the acyclic derivatives. Thus, piperidine and tetrahydrofuran are conventional amines and ethers, with modified steric profiles. Therefore, the study of organic heterocyclic chemistry focuses on organic unsaturated rings.

Inorganic rings edit

Some heterocycles contain no carbon. Examples are borazine (B3N3 ring), hexachlorophosphazenes (P3N3 rings), and tetrasulfur tetranitride S4N4. In comparison with organic heterocycles, which have numerous commercial applications, inorganic ring systems are mainly of theoretical interest. IUPAC recommends the Hantzsch-Widman nomenclature for naming heterocyclic compounds.[5]

Notes on lists edit

  • "Heteroatoms" are atoms in the ring other than carbon atoms.
  • Names in italics are retained by IUPAC and do not follow the Hantzsch-Widman nomenclature
  • Some of the names refer to classes of compounds rather than individual compounds.
  • Also no attempt is made to list isomers.

3-membered rings edit

Although subject to ring strain, 3-membered heterocyclic rings are well characterized.[6]

Three-membered rings with one heteroatom edit

Heteroatom Saturated Unsaturated
Boron Borirane Borirene
Nitrogen Aziridine Azirine
Oxygen Oxirane (ethylene oxide, epoxides) Oxirene
Phosphorus Phosphirane Phosphirene
Sulfur Thiirane (episulfides) Thiirene

Three-membered rings with two heteroatoms edit

Heteroatoms Saturated Unsaturated
2× Nitrogen Diaziridine Diazirine
Nitrogen + oxygen Oxaziridine Oxazirine
2× Oxygen Dioxirane
(highly unstable)

4-membered rings edit

Four-membered rings with one heteroatom edit

Heteroatom Saturated Unsaturated
Nitrogen Azetidine Azete
Oxygen Oxetane Oxete
Phosphorus Phosphetane Phosphete
Sulfur Thietane Thiete

Four-membered rings with two heteroatoms edit

Heteroatoms Saturated Unsaturated
2× Nitrogen Diazetidine Diazete
2× Oxygen Dioxetane Dioxete
2× Sulfur Dithietane Dithiete

5-membered rings edit

Five-membered rings with one heteroatom edit

Heteroatom Saturated Unsaturated
Antimony Stibolane Stibole
Arsenic Arsolane Arsole
Bismuth Bismolane Bismole
Boron Borolane Borole
Nitrogen Pyrrolidine ("Azolidine" is not used) Pyrrole ("Azole" is not used)
Oxygen Tetrahydrofuran Furan
Phosphorus Phospholane Phosphole
Selenium Selenolane Selenophene
Silicon Silacyclopentane Silole
Sulfur Tetrahydrothiophene Thiophene
Tellurium Tellurophene
Tin Stannolane Stannole

Five-membered rings with two heteroatoms edit

The 5-membered ring compounds containing two heteroatoms, at least one of which is nitrogen, are collectively called the azoles. Thiazoles and isothiazoles contain a sulfur and a nitrogen atom in the ring. Dithiolanes have two sulfur atoms.

Heteroatoms Saturated Unsaturated (and partially unsaturated)
2× nitrogen Imidazolidine
Pyrazolidine
Imidazole (Imidazoline)
Pyrazole (Pyrazoline)
Oxygen + sulfur 1,3-Oxathiolane
1,2-Oxathiolane
Oxathiole (Oxathioline)
Isoxathiole
Nitrogen + Oxygen Oxazolidine
Isoxazolidine
Oxazole (Oxazoline)
Isoxazole
Nitrogen + sulfur Thiazolidine
Isothiazolidine
Thiazole (Thiazoline)
Isothiazole
2× oxygen Dioxolane
2× sulfur Dithiolane Dithiole

Five-membered rings with at least three heteroatoms edit

A large group of 5-membered ring compounds with three or more heteroatoms also exists. One example is the class of dithiazoles, which contain two sulfur atoms and one nitrogen atom.

Heteroatoms Saturated Unsaturated
N N N Triazoles
N N O Furazan
Oxadiazole
N N S Thiadiazole
N O O Dioxazole
N S S Dithiazole
N N N N Tetrazole
N N N N O Oxatetrazole
N N N N S Thiatetrazole
N N N N N Pentazole

6-membered rings edit

Six-membered rings with one heteroatom edit

Heteroatom Saturated Unsaturated Ions
Antimony Stibinin[7]
Arsenic Arsinane Arsinine
Bismuth Bismin[8]
Boron Borinane Borinine Boratabenzene anion
Germanium Germinane Germine
Nitrogen Piperidine
(Azinane is not used)
Pyridine
(Azine is not used)
Pyridinium cation
Oxygen Oxane Pyran
(2H-Oxine is not used)
Pyrylium cation
Phosphorus Phosphinane Phosphinine
Selenium Selenane Selenopyran[9] Selenopyrylium cation
Silicon Silinane Siline
Sulfur Thiane Thiopyran
(2H-Thiine is not used)
Thiopyrylium cation
Tellurium Tellurane Telluropyran Telluropyrylium cation
Tin Stanninane Stannine

Six-membered rings with two heteroatoms edit

Heteroatom Saturated Unsaturated
Nitrogen / nitrogen Diazinane Diazine
Oxygen / nitrogen Morpholine Oxazine
Sulfur / nitrogen Thiomorpholine Thiazine
Oxygen / Sulfur Oxathiane Oxathiin
Oxygen / oxygen Dioxane Dioxine
Sulfur / sulfur Dithiane Dithiin
Boron / nitrogen 1,2-Dihydro-1,2-azaborine

Six-membered rings with three heteroatoms edit

Heteroatom Saturated Unsaturated
Nitrogen Triazinane Triazine
Oxygen Trioxane
Sulfur Trithiane

Six-membered rings with four heteroatoms edit

Heteroatom Saturated Unsaturated
Nitrogen Tetrazine

Carborazine is a six-membered ring with two nitrogen heteroatoms and two boron heteroatom.

Six-membered rings with five heteroatoms edit

Heteroatom Saturated Unsaturated
Nitrogen Pentazine

Six-membered rings with six heteroatoms edit

The hypothetical chemical compound with six nitrogen heteroatoms would be hexazine.

Borazine is a six-membered ring with three nitrogen heteroatoms and three boron heteroatoms.

7-membered rings edit

In a 7-membered ring, the heteroatom must be able to provide an empty π-orbital (e.g. boron) for "normal" aromatic stabilization to be available; otherwise, homoaromaticity may be possible. Compounds with one heteroatom include:

Heteroatom Saturated Unsaturated
Boron Borepin
Nitrogen Azepane Azepine
Oxygen Oxepane Oxepine
Sulfur Thiepane Thiepine

Those with two heteroatoms include:

Heteroatom Saturated Unsaturated
Nitrogen Diazepane Diazepine
Nitrogen/sulfur Thiazepine

8-membered rings edit

Heteroatom Saturated Unsaturated
Nitrogen Azocane Azocine
Oxygen Oxocane Oxocine
Sulfur Thiocane Thiocine

Borazocine is an eight-membered ring with four nitrogen heteroatoms and four boron heteroatoms.

9-membered rings edit

Heteroatom Saturated Unsaturated
Nitrogen Azonane Azonine
Oxygen Oxonane Oxonine
Sulfur Thionane Thionine

Images of rings with one heteroatom edit

Saturated Unsaturated
Heteroatom Nitrogen Oxygen Sulfur Nitrogen Oxygen Sulfur
3-atom ring Aziridine Oxirane Thiirane Azirine Oxirene Thiirene
           
4-atom ring Azetidine Oxetane Thietane Azete Oxete Thiete
           
5-atom ring Pyrrolidine Oxolane Thiolane Pyrrole Furan Thiophene
           
6-atom ring Piperidine Oxane Thiane Pyridine Pyran Thiopyran
           
7-atom ring Azepane Oxepane Thiepane Azepine Oxepine Thiepine
           
8-atom ring Azocane Oxocane Thiocane Azocine Oxocine Thiocine
           
9-atom ring Azonane Oxonane Thionane Azonine Oxonine Thionine
           

Fused/condensed rings edit

Heterocyclic rings systems that are formally derived by fusion with other rings, either carbocyclic or heterocyclic, have a variety of common and systematic names. For example, with the benzo-fused unsaturated nitrogen heterocycles, pyrrole provides indole or isoindole depending on the orientation. The pyridine analog is quinoline or isoquinoline. For azepine, benzazepine is the preferred name. Likewise, the compounds with two benzene rings fused to the central heterocycle are carbazole, acridine, and dibenzoazepine. Thienothiophene are the fusion of two thiophene rings. Phosphaphenalenes are a tricyclic phosphorus-containing heterocyclic system derived from the carbocycle phenalene.

History of heterocyclic chemistry edit

The history of heterocyclic chemistry began in the 1800s, in step with the development of organic chemistry. Some noteworthy developments:[10]

  • 1818: Brugnatelli makes alloxan from uric acid
  • 1832: Dobereiner produces furfural (a furan) by treating starch with sulfuric acid
  • 1834: Runge obtains pyrrole ("fiery oil") by dry distillation of bones
  • 1906: Friedlander synthesizes indigo dye, allowing synthetic chemistry to displace a large agricultural industry
  • 1936: Treibs isolates chlorophyll derivatives from crude oil, explaining the biological origin of petroleum.
  • 1951: Chargaff's rules are described, highlighting the role of heterocyclic compounds (purines and pyrimidines) in the genetic code.

Uses edit

Heterocyclic compounds are pervasive in many areas of life sciences and technology.[2] Many drugs are heterocyclic compounds.[11]

References edit

  1. ^ IUPAC Gold Book heterocyclic compounds
  2. ^ a b Thomas L. Gilchrist "Heterocyclic Chemistry" 3rd ed. Addison Wesley: Essex, England, 1997. 414 pp. ISBN 0-582-27843-0.
  3. ^ Rees, Charles W. (1992). "Polysulfur-Nitrogen Heterocyclic Chemistry". Journal of Heterocyclic Chemistry. 29 (3): 639–651. doi:10.1002/jhet.5570290306.
  4. ^ Edon Vitaku, David T. Smith, Jon T. Njardarson (2014). "Analysis of the Structural Diversity, Substitution Patterns, and Frequency of Nitrogen Heterocycles among U.S. FDA Approved Pharmaceuticals". J. Med. Chem. 57 (24): 10257–10274. doi:10.1021/jm501100b. PMID 25255204.{{cite journal}}: CS1 maint: multiple names: authors list (link)
  5. ^ IUPAC, Compendium of Chemical Terminology, 2nd ed. (the "Gold Book") (1997). Online corrected version: (2006–) "Hantzsch–Widman name". doi:10.1351/goldbook.H02737
  6. ^ Smith, Michael B.; March, Jerry (2007), Advanced Organic Chemistry: Reactions, Mechanisms, and Structure (6th ed.), New York: Wiley-Interscience, ISBN 978-0-471-72091-1
  7. ^ "Stibinin". chemspider. Royal Society of Chemistry. Retrieved 11 June 2018.
  8. ^ "Bismin". ChemSpider. Royal Society of Chemistry. Retrieved 11 June 2018.
  9. ^ "Selenopyranium". ChemSpider. Royal Society of Chemistry. Retrieved 11 June 2018.
  10. ^ Campaigne, E. (1986). "Adrien Albert and the rationalization of heterocyclic chemistry". Journal of Chemical Education. 63 (10): 860. Bibcode:1986JChEd..63..860C. doi:10.1021/ed063p860.
  11. ^ "IPEXL.com Multilingual Patent Search, Patent Ranking". www.ipexl.com.

External links edit

  • Hantzsch-Widman nomenclature, IUPAC
  • Heterocyclic amines in cooked meat, US CDC
  • List of known and probable carcinogens, American Cancer Society
  • List of known carcinogens by the State of California, Proposition 65 (more comprehensive)

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For other uses of ring structure see Ring structure A heterocyclic compound or ring structure is a cyclic compound that has atoms of at least two different elements as members of its ring s 1 Heterocyclic organic chemistry is the branch of organic chemistry dealing with the synthesis properties and applications of organic heterocycles 2 Structures and names of common heterocyclic compoundsPyridine a heterocyclic compoundExamples of heterocyclic compounds include all of the nucleic acids the majority of drugs most biomass cellulose and related materials and many natural and synthetic dyes More than half of known compounds are heterocycles 3 59 of US FDA approved drugs contain nitrogen heterocycles 4 Contents 1 Classification 1 1 Inorganic rings 2 Notes on lists 3 3 membered rings 3 1 Three membered rings with one heteroatom 3 2 Three membered rings with two heteroatoms 4 4 membered rings 4 1 Four membered rings with one heteroatom 4 2 Four membered rings with two heteroatoms 5 5 membered rings 5 1 Five membered rings with one heteroatom 5 2 Five membered rings with two heteroatoms 5 3 Five membered rings with at least three heteroatoms 6 6 membered rings 6 1 Six membered rings with one heteroatom 6 2 Six membered rings with two heteroatoms 6 3 Six membered rings with three heteroatoms 6 4 Six membered rings with four heteroatoms 6 5 Six membered rings with five heteroatoms 6 6 Six membered rings with six heteroatoms 7 7 membered rings 8 8 membered rings 9 9 membered rings 10 Images of rings with one heteroatom 11 Fused condensed rings 12 History of heterocyclic chemistry 13 Uses 14 References 15 External linksClassification editThe study of organic heterocyclic chemistry focuses especially on organic unsaturated derivatives and the preponderance of work and applications involves unstrained organic 5 and 6 membered rings Included are pyridine thiophene pyrrole and furan Another large class of organic heterocycles refers to those fused to benzene rings For example the fused benzene derivatives of pyridine thiophene pyrrole and furan are quinoline benzothiophene indole and benzofuran respectively The fusion of two benzene rings gives rise to a third large family of organic compounds Analogs of the previously mentioned heterocycles for this third family of compounds are acridine dibenzothiophene carbazole and dibenzofuran respectively Heterocyclic organic compounds can be usefully classified based on their electronic structure The saturated organic heterocycles behave like the acyclic derivatives Thus piperidine and tetrahydrofuran are conventional amines and ethers with modified steric profiles Therefore the study of organic heterocyclic chemistry focuses on organic unsaturated rings Inorganic rings edit Some heterocycles contain no carbon Examples are borazine B3N3 ring hexachlorophosphazenes P3N3 rings and tetrasulfur tetranitride S4N4 In comparison with organic heterocycles which have numerous commercial applications inorganic ring systems are mainly of theoretical interest IUPAC recommends the Hantzsch Widman nomenclature for naming heterocyclic compounds 5 Notes on lists edit Heteroatoms are atoms in the ring other than carbon atoms Names in italics are retained by IUPAC and do not follow the Hantzsch Widman nomenclature Some of the names refer to classes of compounds rather than individual compounds Also no attempt is made to list isomers 3 membered rings editAlthough subject to ring strain 3 membered heterocyclic rings are well characterized 6 Three membered rings with one heteroatom edit Heteroatom Saturated UnsaturatedBoron Borirane BorireneNitrogen Aziridine AzirineOxygen Oxirane ethylene oxide epoxides OxirenePhosphorus Phosphirane PhosphireneSulfur Thiirane episulfides ThiireneThree membered rings with two heteroatoms edit Heteroatoms Saturated Unsaturated2 Nitrogen Diaziridine DiazirineNitrogen oxygen Oxaziridine Oxazirine2 Oxygen Dioxirane highly unstable 4 membered rings editFour membered rings with one heteroatom edit Heteroatom Saturated UnsaturatedNitrogen Azetidine AzeteOxygen Oxetane OxetePhosphorus Phosphetane PhospheteSulfur Thietane ThieteFour membered rings with two heteroatoms edit Heteroatoms Saturated Unsaturated2 Nitrogen Diazetidine Diazete2 Oxygen Dioxetane Dioxete2 Sulfur Dithietane Dithiete5 membered rings editFive membered rings with one heteroatom edit Heteroatom Saturated UnsaturatedAntimony Stibolane StiboleArsenic Arsolane ArsoleBismuth Bismolane BismoleBoron Borolane BoroleNitrogen Pyrrolidine Azolidine is not used Pyrrole Azole is not used Oxygen Tetrahydrofuran FuranPhosphorus Phospholane PhospholeSelenium Selenolane SelenopheneSilicon Silacyclopentane SiloleSulfur Tetrahydrothiophene ThiopheneTellurium TelluropheneTin Stannolane StannoleFive membered rings with two heteroatoms edit The 5 membered ring compounds containing two heteroatoms at least one of which is nitrogen are collectively called the azoles Thiazoles and isothiazoles contain a sulfur and a nitrogen atom in the ring Dithiolanes have two sulfur atoms Heteroatoms Saturated Unsaturated and partially unsaturated 2 nitrogen Imidazolidine Pyrazolidine Imidazole Imidazoline Pyrazole Pyrazoline Oxygen sulfur 1 3 Oxathiolane1 2 Oxathiolane Oxathiole Oxathioline IsoxathioleNitrogen Oxygen OxazolidineIsoxazolidine Oxazole Oxazoline IsoxazoleNitrogen sulfur ThiazolidineIsothiazolidine Thiazole Thiazoline Isothiazole2 oxygen Dioxolane2 sulfur Dithiolane DithioleFive membered rings with at least three heteroatoms edit A large group of 5 membered ring compounds with three or more heteroatoms also exists One example is the class of dithiazoles which contain two sulfur atoms and one nitrogen atom Heteroatoms Saturated UnsaturatedN N N TriazolesN N O FurazanOxadiazoleN N S ThiadiazoleN O O DioxazoleN S S DithiazoleN N N N TetrazoleN N N N O OxatetrazoleN N N N S ThiatetrazoleN N N N N Pentazole6 membered rings editSix membered rings with one heteroatom edit Heteroatom Saturated Unsaturated IonsAntimony Stibinin 7 Arsenic Arsinane ArsinineBismuth Bismin 8 Boron Borinane Borinine Boratabenzene anionGermanium Germinane GermineNitrogen Piperidine Azinane is not used Pyridine Azine is not used Pyridinium cationOxygen Oxane Pyran 2H Oxine is not used Pyrylium cationPhosphorus Phosphinane PhosphinineSelenium Selenane Selenopyran 9 Selenopyrylium cationSilicon Silinane SilineSulfur Thiane Thiopyran 2H Thiine is not used Thiopyrylium cationTellurium Tellurane Telluropyran Telluropyrylium cationTin Stanninane StannineSix membered rings with two heteroatoms edit Heteroatom Saturated UnsaturatedNitrogen nitrogen Diazinane DiazineOxygen nitrogen Morpholine OxazineSulfur nitrogen Thiomorpholine ThiazineOxygen Sulfur Oxathiane OxathiinOxygen oxygen Dioxane DioxineSulfur sulfur Dithiane DithiinBoron nitrogen 1 2 Dihydro 1 2 azaborineSix membered rings with three heteroatoms edit Heteroatom Saturated UnsaturatedNitrogen Triazinane TriazineOxygen TrioxaneSulfur TrithianeSix membered rings with four heteroatoms edit Heteroatom Saturated UnsaturatedNitrogen TetrazineCarborazine is a six membered ring with two nitrogen heteroatoms and two boron heteroatom Six membered rings with five heteroatoms edit Heteroatom Saturated UnsaturatedNitrogen PentazineSix membered rings with six heteroatoms edit The hypothetical chemical compound with six nitrogen heteroatoms would be hexazine Borazine is a six membered ring with three nitrogen heteroatoms and three boron heteroatoms 7 membered rings editIn a 7 membered ring the heteroatom must be able to provide an empty p orbital e g boron for normal aromatic stabilization to be available otherwise homoaromaticity may be possible Compounds with one heteroatom include Heteroatom Saturated UnsaturatedBoron BorepinNitrogen Azepane AzepineOxygen Oxepane OxepineSulfur Thiepane ThiepineThose with two heteroatoms include Heteroatom Saturated UnsaturatedNitrogen Diazepane DiazepineNitrogen sulfur Thiazepine8 membered rings editHeteroatom Saturated UnsaturatedNitrogen Azocane AzocineOxygen Oxocane OxocineSulfur Thiocane ThiocineBorazocine is an eight membered ring with four nitrogen heteroatoms and four boron heteroatoms 9 membered rings editHeteroatom Saturated UnsaturatedNitrogen Azonane AzonineOxygen Oxonane OxonineSulfur Thionane ThionineImages of rings with one heteroatom editSaturated UnsaturatedHeteroatom Nitrogen Oxygen Sulfur Nitrogen Oxygen Sulfur3 atom ring Aziridine Oxirane Thiirane Azirine Oxirene Thiirene nbsp nbsp nbsp nbsp nbsp nbsp 4 atom ring Azetidine Oxetane Thietane Azete Oxete Thiete nbsp nbsp nbsp nbsp nbsp nbsp 5 atom ring Pyrrolidine Oxolane Thiolane Pyrrole Furan Thiophene nbsp nbsp nbsp nbsp nbsp nbsp 6 atom ring Piperidine Oxane Thiane Pyridine Pyran Thiopyran nbsp nbsp nbsp nbsp nbsp nbsp 7 atom ring Azepane Oxepane Thiepane Azepine Oxepine Thiepine nbsp nbsp nbsp nbsp nbsp nbsp 8 atom ring Azocane Oxocane Thiocane Azocine Oxocine Thiocine nbsp nbsp nbsp nbsp nbsp nbsp 9 atom ring Azonane Oxonane Thionane Azonine Oxonine Thionine nbsp nbsp nbsp nbsp nbsp nbsp Fused condensed rings editHeterocyclic rings systems that are formally derived by fusion with other rings either carbocyclic or heterocyclic have a variety of common and systematic names For example with the benzo fused unsaturated nitrogen heterocycles pyrrole provides indole or isoindole depending on the orientation The pyridine analog is quinoline or isoquinoline For azepine benzazepine is the preferred name Likewise the compounds with two benzene rings fused to the central heterocycle are carbazole acridine and dibenzoazepine Thienothiophene are the fusion of two thiophene rings Phosphaphenalenes are a tricyclic phosphorus containing heterocyclic system derived from the carbocycle phenalene History of heterocyclic chemistry editThe history of heterocyclic chemistry began in the 1800s in step with the development of organic chemistry Some noteworthy developments 10 1818 Brugnatelli makes alloxan from uric acid 1832 Dobereiner produces furfural a furan by treating starch with sulfuric acid 1834 Runge obtains pyrrole fiery oil by dry distillation of bones 1906 Friedlander synthesizes indigo dye allowing synthetic chemistry to displace a large agricultural industry 1936 Treibs isolates chlorophyll derivatives from crude oil explaining the biological origin of petroleum 1951 Chargaff s rules are described highlighting the role of heterocyclic compounds purines and pyrimidines in the genetic code Uses editHeterocyclic compounds are pervasive in many areas of life sciences and technology 2 Many drugs are heterocyclic compounds 11 References edit IUPAC Gold Book heterocyclic compounds a b Thomas L Gilchrist Heterocyclic Chemistry 3rd ed Addison Wesley Essex England 1997 414 pp ISBN 0 582 27843 0 Rees Charles W 1992 Polysulfur Nitrogen Heterocyclic Chemistry Journal of Heterocyclic Chemistry 29 3 639 651 doi 10 1002 jhet 5570290306 Edon Vitaku David T Smith Jon T Njardarson 2014 Analysis of the Structural Diversity Substitution Patterns and Frequency of Nitrogen Heterocycles among U S FDA Approved Pharmaceuticals J Med Chem 57 24 10257 10274 doi 10 1021 jm501100b PMID 25255204 a href Template Cite journal html title Template Cite journal cite journal a CS1 maint multiple names authors list link IUPAC Compendium of Chemical Terminology 2nd ed the Gold Book 1997 Online corrected version 2006 Hantzsch Widman name doi 10 1351 goldbook H02737 Smith Michael B March Jerry 2007 Advanced Organic Chemistry Reactions Mechanisms and Structure 6th ed New York Wiley Interscience ISBN 978 0 471 72091 1 Stibinin chemspider Royal Society of Chemistry Retrieved 11 June 2018 Bismin ChemSpider Royal Society of Chemistry Retrieved 11 June 2018 Selenopyranium ChemSpider Royal Society of Chemistry Retrieved 11 June 2018 Campaigne E 1986 Adrien Albert and the rationalization of heterocyclic chemistry Journal of Chemical Education 63 10 860 Bibcode 1986JChEd 63 860C doi 10 1021 ed063p860 IPEXL com Multilingual Patent Search Patent Ranking www ipexl com External links edit nbsp Wikimedia Commons has media related to heterocyclic compounds nbsp Wikiquote has quotations related to Heterocyclic compound Hantzsch Widman nomenclature IUPAC Heterocyclic amines in cooked meat US CDC List of known and probable carcinogens American Cancer Society List of known carcinogens by the State of California Proposition 65 more comprehensive Retrieved from https en wikipedia org w index php title Heterocyclic compound amp oldid 1205512524, wikipedia, wiki, book, books, library,

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