Functional Group Flashcards: Names & Structures

Practice 19 organic functional-group families with 57 cards on condensed structures, name-to-connectivity recall, and distinctions between easily confused groups.

O tomto balíčku

Learn to recognize 19 common organic functional-group families from their bonding patterns. These 57 English flashcards use condensed structures and short text descriptions, with explicit C(=O) notation for carbonyls and C≡N for nitriles. The cards contain no molecular diagrams.

Practice in both directions: identify a group from a concrete structure or ring description, then recall the defining connectivity from its name. Ten comparison cards separate easily confused groups, including amine versus amide, aldehyde versus ketone, ether versus ester, and alcohol versus phenol. Additional examples check formaldehyde, nitrogen groups without N–H bonds, and an alkane with no characteristic functional group.

The set covers alkenes, alkynes, benzene-type aromatic rings, haloalkanes, alcohols, phenols, ethers, amines, nitriles, aldehydes, ketones, carboxylic acids, carboxylic esters, carboxamides, carboxylic acid halides, carboxylic acid anhydrides, thiols, organic sulfides (thioethers), and disulfides. Here, ester and amide practice focuses on carboxylic-acid derivatives.

Notation appears before the examples that depend on it. Early cards establish common carbon, oxygen, and nitrogen patterns; later cards add carbonyl families and sulfur groups. Recognition, reverse recall, and comparisons are spaced apart. Say the answer or sketch the connectivity before turning each card.

This is introductory recognition practice. Reaction mechanisms, reagent recall, spectroscopy, acidity rankings, exhaustive IUPAC naming, advanced aromaticity tests, imines, and thioesters are excluded to keep the study task focused. It is not a full organic chemistry course or an exam syllabus. For a later application to biological structures, try the amino acid flashcards.

Questions, answers, examples, organization, and metadata were independently authored with AI assistance. Terminology was checked against the IUPAC structural class glossary (Moss, Smith and Tavernier, Pure and Applied Chemistry 67, 1307–1375, 1995); its text and diagrams were not copied. The original text and generated cover are released under CC0 1.0 to the extent applicable rights exist. Chemical facts themselves are common knowledge. This is an independent resource, unaffiliated with IUPAC or any examination provider.

Kartičky v tomto balíčku

  1. Kartička 1

    Otázka

    What does a functional group tell you about an organic molecule?

    Odpověď

    It identifies a characteristic bonding pattern that helps predict chemical behavior. Recognizing the group is a starting point; the rest of the molecule can still affect its reactions.

  2. Kartička 2

    Otázka

    In the condensed structure CH3–CH(CH3)–CH2–CH3, where does the parenthesized CH3 attach?

    Odpověď

    To the preceding CH carbon. Parentheses show a branch attached to the atom just before them.

  3. Kartička 3

    Otázka

    In an organic structural formula, why might two substituents be labeled R and R′?

    Odpověď

    They stand for groups whose full structures are omitted. The prime distinguishes the two positions; the groups may be the same or different. Check each formula’s definition of R, especially whether H is allowed.

  4. Kartička 4

    Otázka

    Functional group in CH3–CH=CH–CH3?

    Odpověď

    Alkene. The defining feature is a carbon–carbon double bond, C=C.

  5. Kartička 5

    Otázka

    Classify the oxygen-containing functional group in CH3–CH(OH)–CH2–CH3.

    Odpověď

    Alcohol. The –OH group is attached to a saturated carbon atom.

  6. Kartička 6

    Otázka

    Functional-group class of CH3–CH(Br)–CH2–CH3?

    Odpověď

    Haloalkane, also called an alkyl halide. Bromine is bonded directly to a saturated carbon atom.

  7. Kartička 7

    Otázka

    What bonding unit does C(=O) show in a condensed organic structure?

    Odpověď

    A carbonyl group: carbon double-bonded to oxygen. The atoms attached to that carbon determine the more specific functional-group class.

  8. Kartička 8

    Otázka

    Functional group in CH3–O–CH2–CH2–CH3?

    Odpověď

    Ether. One oxygen links two carbon groups through single bonds, and neither adjacent carbon is a carbonyl carbon.

  9. Kartička 9

    Otázka

    Functional group in CH3–C≡C–CH2–CH3?

    Odpověď

    Alkyne. Two carbon atoms are joined by a triple bond.

  10. Kartička 10

    Otázka

    What does Ph stand for in a condensed organic structure such as Ph–CH2–CH3?

    Odpověď

    A phenyl group, C6H5–: a benzene ring with one hydrogen replaced by a bond to the rest of the molecule.

  11. Kartička 11

    Otázka

    Functional group in CH3–CH2–NH–CH3?

    Odpověď

    Amine. Nitrogen has single bonds to two carbon groups and one hydrogen, making this a secondary amine.

  12. Kartička 12

    Otázka

    What bond defines an alkene functional group?

    Odpověď

    A carbon–carbon double bond, C=C, outside an aromatic ring. Carbon–oxygen double bonds belong to a different group family.

  13. Kartička 13

    Otázka

    What connectivity defines an alcohol group?

    Odpověď

    An –OH group bonded to a saturated carbon atom. That carbon has only single bonds; an OH directly on a benzene ring is classified separately.

  14. Kartička 14

    Otázka

    Classify the OH-containing group in Ph–OH, where Ph is a phenyl group (C6H5–).

    Odpověď

    Phenol. The oxygen of –OH is bonded directly to a carbon in the aromatic ring.

  15. Kartička 15

    Otázka

    Functional group in CH3–CH2–C≡N?

    Odpověď

    Nitrile. The carbon chain attaches to the carbon of a carbon–nitrogen triple bond.

  16. Kartička 16

    Otázka

    What connectivity defines a haloalkane (alkyl halide)?

    Odpověď

    A halogen bonded directly to a saturated carbon: C–X, where X is F, Cl, Br, or I. The carbon has only single bonds.

  17. Kartička 17

    Otázka

    A six-carbon ring is drawn with alternating single and double bonds to represent six delocalized π electrons. How is this ring classified?

    Odpověď

    An aromatic ring: the benzene-ring pattern. Its electrons are delocalized around the ring, so it is not treated as three separate alkene groups.

  18. Kartička 18

    Otázka

    What connectivity defines a simple ether group?

    Odpověď

    R–O–R′, with R and R′ attached through carbon and neither attached carbon being a carbonyl carbon. The oxygen has two single bonds and no O–H bond.

  19. Kartička 19

    Otázka

    Does CH3–CH2–CH2–CH3 contain a characteristic functional group in introductory organic classification?

    Odpověď

    No. It is an alkane with only C–C and C–H single bonds. Its saturated hydrocarbon framework is the comparison baseline.

  20. Kartička 20

    Otázka

    What are the three basic connectivity patterns for neutral amines?

    Odpověď

    R–NH2, R–NH–R′, and R–N(R′)–R″. Here each R is an alkyl or aryl group attached through carbon; the patterns have one, two, or three such groups on nitrogen.

  21. Kartička 21

    Otázka

    What bond defines an alkyne functional group?

    Odpověď

    A carbon–carbon triple bond, C≡C. Either end may connect to a carbon group or to hydrogen.

  22. Kartička 22

    Otázka

    What connectivity defines a phenol group?

    Odpověď

    An –OH group attached directly to a carbon of an arene ring. In the simplest example, phenol, the structure is C6H5–OH.

  23. Kartička 23

    Otázka

    What connectivity defines a nitrile group?

    Odpověď

    R–C≡N, with R attached through carbon. The triple bond joins carbon to nitrogen, and the rest of the molecule attaches on the carbon side.

  24. Kartička 24

    Otázka

    What ring structure is the standard introductory example of an aromatic group?

    Odpověď

    A benzene ring: six carbon atoms in a planar ring with six delocalized π electrons. It can be shown as a hexagon with a circle or with alternating single and double bonds.

  25. Kartička 25

    Otázka

    What single bond-order change distinguishes an alkene group from an alkyne group?

    Odpověď

    The carbon–carbon bond is double in an alkene and triple in an alkyne: C=C versus C≡C.

  26. Kartička 26

    Otázka

    Why is Ph–CH2–OH an alcohol, while Ph–OH is a phenol? (Ph = phenyl.)

    Odpověď

    In Ph–CH2–OH, OH attaches to the saturated CH2 carbon. In Ph–OH, OH attaches directly to the aromatic ring.

  27. Kartička 27

    Otázka

    Classify the nitrogen group in CH3–N(CH3)–CH2–CH3.

    Odpověď

    Tertiary amine. Nitrogen has three carbon substituents and no N–H bond; it is still an amine.

  28. Kartička 28

    Otázka

    Functional group in CH3–CH2–CH2–C(=O)H?

    Odpověď

    Aldehyde. The carbonyl carbon is bonded to a hydrogen and, here, to a carbon chain.

  29. Kartička 29

    Otázka

    Functional group in CH3–CH2–C(=O)–O–CH3?

    Odpověď

    Carboxylic ester. The carbonyl carbon is bonded to an oxygen that also bonds to a non-carbonyl carbon group.

  30. Kartička 30

    Otázka

    Functional group in CH3–CH2–C(=O)–CH2–CH3?

    Odpověď

    Ketone. The carbonyl carbon has a carbon atom attached on each side.

  31. Kartička 31

    Otázka

    Functional group in CH3–CH2–CH2–SH?

    Odpověď

    Thiol. Sulfur is bonded to a carbon group and to hydrogen.

  32. Kartička 32

    Otázka

    Functional group in CH3–CH2–C(=O)–NH2?

    Odpověď

    Amide, specifically a carboxamide. Nitrogen is bonded directly to the carbonyl carbon.

  33. Kartička 33

    Otázka

    Functional group in CH3–CH2–C(=O)–OH?

    Odpověď

    Carboxylic acid. An OH group and a double-bonded oxygen attach to the same carbon.

  34. Kartička 34

    Otázka

    Functional group in CH3–CH2–C(=O)–Cl?

    Odpověď

    Acid chloride, a carboxylic acid halide (acyl halide). Chlorine is bonded directly to the carbonyl carbon.

  35. Kartička 35

    Otázka

    Functional group in CH3–CH2–S–CH2–CH2–CH3?

    Odpověď

    Organic sulfide, also commonly called a thioether. One sulfur links two carbon groups through single bonds.

  36. Kartička 36

    Otázka

    Functional group in CH3–C(=O)–O–C(=O)–CH2–CH3?

    Odpověď

    Carboxylic acid anhydride. The central oxygen connects two carbonyl carbons; the carbon groups on the two sides can differ.

  37. Kartička 37

    Otázka

    What connectivity defines an aldehyde group, including formaldehyde?

    Odpověď

    R–C(=O)H, where R can be a carbon group or H. The carbonyl carbon has at least one attached hydrogen; formaldehyde is H–C(=O)–H.

  38. Kartička 38

    Otázka

    What local bonding feature separates a simple ether from a carboxylic ester?

    Odpověď

    An ester has a carbonyl carbon directly bonded to the linking oxygen: –C(=O)–O–C. A simple ether has C–O–C with neither adjacent carbon being a carbonyl carbon.

  39. Kartička 39

    Otázka

    Functional group in CH3–CH2–S–S–CH3?

    Odpověď

    Disulfide. Two sulfur atoms are bonded to each other, with a carbon group at each end.

  40. Kartička 40

    Otázka

    What connectivity defines a ketone group?

    Odpověď

    R–C(=O)–R′, with R and R′ both attached through carbon. Neither substituent on the carbonyl carbon is H.

  41. Kartička 41

    Otázka

    What attachment to nitrogen separates a carboxamide group from an amine group?

    Odpověď

    A carboxamide’s nitrogen is bonded directly to a carbonyl carbon. An amine’s nitrogen is bonded to alkyl or aryl groups instead of an acyl group.

  42. Kartička 42

    Otázka

    What connectivity defines a carboxylic acid group?

    Odpověď

    –C(=O)–OH, the carboxy group. The carbonyl carbon is directly bonded to the oxygen of OH.

  43. Kartička 43

    Otázka

    What connectivity defines a thiol group?

    Odpověď

    R–S–H, where R attaches through carbon. The S–H bond is the key recognition cue.

  44. Kartička 44

    Otázka

    Classify H–C(=O)–H by its carbonyl functional-group family.

    Odpověď

    Aldehyde. This is formaldehyde (methanal), whose carbonyl carbon has two attached hydrogens.

  45. Kartička 45

    Otázka

    What connectivity defines a carboxylic ester group?

    Odpověď

    R–C(=O)–O–R′. Here R is H or a carbon group, and R′ attaches through a non-carbonyl carbon. The linking oxygen has no O–H bond.

  46. Kartička 46

    Otázka

    What connectivity defines a carboxamide group, including N-substituted forms?

    Odpověď

    A carbonyl carbon bonded directly to nitrogen: –C(=O)–N. The nitrogen can carry H atoms or carbon substituents; an N–H bond is not required.

  47. Kartička 47

    Otázka

    What connectivity defines a carboxylic acid halide group?

    Odpověď

    –C(=O)–X, where X is a halogen attached directly to the carbonyl carbon. For an acid chloride, X is Cl.

  48. Kartička 48

    Otázka

    What connectivity defines a simple organic sulfide (thioether) group?

    Odpověď

    R–S–R′, with both groups attached through non-carbonyl carbon atoms. One sulfur bridges the two groups and has no S–H bond.

  49. Kartička 49

    Otázka

    What connectivity defines a carboxylic acid anhydride group?

    Odpověď

    –C(=O)–O–C(=O)–: one oxygen links two carbonyl carbons. The groups beyond the carbonyl carbons can be the same or different.

  50. Kartička 50

    Otázka

    Which attachments to the carbonyl carbon distinguish an aldehyde from a ketone?

    Odpověď

    An aldehyde has at least one attached H. A ketone has two attached carbon atoms and no H attached to the carbonyl carbon.

  51. Kartička 51

    Otázka

    Why is the OH in CH3–C(=O)–OH classified as part of a carboxylic acid rather than as an alcohol group?

    Odpověď

    Its oxygen attaches to a carbonyl carbon. An alcohol’s OH attaches to a saturated carbon; classify the whole –C(=O)–OH unit together.

  52. Kartička 52

    Otázka

    Which bond at sulfur distinguishes a thiol from a simple organic sulfide?

    Odpověď

    A thiol has S–H. A simple organic sulfide has sulfur bonded to two carbon groups and no S–H bond.

  53. Kartička 53

    Otázka

    What connectivity defines an organic disulfide group?

    Odpověď

    R–S–S–R′, with R and R′ attached through carbon. The central S–S bond distinguishes it from a single-sulfur bridge.

  54. Kartička 54

    Otázka

    Classify the nitrogen-containing group in CH3–C(=O)–N(CH3)–CH3.

    Odpověď

    Amide (carboxamide). Nitrogen is directly bonded to the carbonyl carbon, even though it has no N–H bond.

  55. Kartička 55

    Otázka

    How many carbonyl carbons bond directly to the linking oxygen in a carboxylic ester versus a carboxylic acid anhydride?

    Odpověď

    One in an ester; two in an anhydride. Follow both bonds from the linking oxygen to check.

  56. Kartička 56

    Otázka

    How does the carbon bonded to Cl differ in CH3–CH2–Cl and CH3–C(=O)–Cl?

    Odpověď

    It is a saturated carbon in CH3–CH2–Cl (haloalkane) and a carbonyl carbon in CH3–C(=O)–Cl (acid chloride).

  57. Kartička 57

    Otázka

    What changes in the bridge between carbon groups when a sulfide is compared with a disulfide?

    Odpověď

    A sulfide bridge has one sulfur, C–S–C; a disulfide bridge has two, C–S–S–C, including an S–S bond.

Stacked study cards labeled Functional Groups and Organic Chemistry on a cream background.

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Functional Group Flashcards: Names & Structures

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