Cycloalkanes Flashcards

1
Q

Why do cycloalkane undergo conformational change?

A

Cycloalkane will want to change its conformation to become more stable so it can avoid strains (angle, torsional and steric)

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2
Q

Which cycloalkane is the most strained?

A

Cyclopropane is the most strained of all rings due to angle strain and torsional strain

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3
Q

What is angle strain?

A

When bond angles are forced to deviate from the ideal 109 tetrahedral value

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4
Q

What is torsional strain

A

Strains due to eclipsing of bonds between neighboring atoms

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5
Q

What is the result of cyclopropane being stuck in its planar and strained conformation?

A

It cannot do anything to relieve the angle and torsional strain it is experiencing

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6
Q

Why does cyclobutane has torsional strain

A

There are 8 eclipsing C-H bond

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7
Q

How does cyclobutane and cyclopentane relieve its strain?

A

Through ring puckering

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8
Q

What is ring puckering?

A

When hydrogens are twisted away from each other to reduce eclipsing

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9
Q

Why does cyclopentane have almost no angle strain?

A

It has a 108 degree bond angle

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10
Q

Why does cyclopentane have a lot of torsional strain?

A

There are 10 eclipsing C-H bond

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11
Q

Why does cyclohexane have angle strain and torsional strain?

A

Cyclohexane has a bond angle of 120 which deviates from the ideal 109. It has a lot of torsional strain because it has 12 eclipsing C-H bonds

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12
Q

What are the conformation cyclohxane can take from ring puckering?

A

Chair, Boat, Twist Boat, Half Chair

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13
Q

Rank cyclohexane’s conformation from increasing energy

A

Chair, twist boat, boat, half chair

Chair is the most stable and half chair is the least stable

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14
Q

What is the most stable cyclohexane conformation?

A

Chair conformation of cyclohexane

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15
Q

What is a ring flip?

A

When the Carbons in a cycloalkane shifted one position from its original position in a clockwise manner

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16
Q

What happens during a ring flip?

A

-Axial bonds become equatorial bonds

-Equatorial bond becomes axial bond

  • Direction of the bond do not change
17
Q

Why is the equatorial conformer of methyl cyclohexane more stable than the axial conformer?

A

The axial conformation has steric interaction between the hydrogen atoms of the axial methyl on C1 to the axial hydrogens three carbons away on C3 and C5