1.2 Atomic Structure: Orbitals - Organic Chemistry | OpenStax (2024)

1.2 • Atomic Structure: Orbitals

How are the electrons distributed in an atom? You might recall from your general chemistry course that, according to the quantum mechanical model, the behavior of a specific electron in an atom can be described by a mathematical expression called a wave equation—the same type of expression used to describe the motion of waves in a fluid. The solution to a wave equation is called a wave function, or orbital, and is denoted by the lowercase Greek letter psi (ψ).

When the square of the wave function, ψ2, is plotted in three-dimensional space, an orbital describes the volume of space around a nucleus that an electron is most likely to occupy. You might therefore think of an orbital as looking like a photograph of the electron taken at a slow shutter speed. In such a photo, the orbital would appear as a blurry cloud, indicating the region of space where the electron has been. This electron cloud doesn’t have a sharp boundary, but for practical purposes we can set the limits by saying that an orbital represents the space where an electron spends 90% to 95% of its time.

What do orbitals look like? There are four different kinds of orbitals, denoted s, p, d, and f, each with a different shape. Of the four, we’ll be concerned primarily with s and p orbitals because these are the most common in organic and biological chemistry. An s orbital has a spherical shape, with the nucleus at its center; a p orbital has a dumbbell shape with two parts, or lobes; and four of the five d orbitals have a cloverleaf shape with four lobes, as shown in Figure 1.4. The fifth d orbital is shaped like an elongated dumbbell with a doughnut around its middle.

1.2 Atomic Structure: Orbitals - Organic Chemistry | OpenStax (1)

Figure 1.4 Representations of s, p, and d orbitals. An s orbital is spherical, a p orbital is dumbbell-shaped, and four of the five d orbitals are cloverleaf-shaped. Different lobes of p orbitals are often drawn for convenience as teardrops, but their actual shape is more like that of a doorknob, as indicated.

The orbitals in an atom are organized into different layers around the nucleus called electron shells, which are centered around the nucleus and have successively larger size and energy. Different shells contain different numbers and kinds of orbitals, and each orbital within a shell can be occupied by two electrons. The first shell contains only a single s orbital, denoted 1s, and thus holds only 2 electrons. The second shell contains one 2s orbital and three 2p orbitals and thus holds a total of 8 electrons. The third shell contains a 3s orbital, three 3p orbitals, and five 3d orbitals, for a total capacity of 18 electrons. These orbital groupings and their energy levels are shown in Figure 1.5.

1.2 Atomic Structure: Orbitals - Organic Chemistry | OpenStax (2)

Figure 1.5 Energy levels of electrons in an atom. The first shell holds a maximum of 2 electrons in one 1s orbital; the second shell holds a maximum of 8 electrons in one 2s and three 2p orbitals; the third shell holds a maximum of 18 electrons in one 3s, three 3p, and 3d orbitals; and so on. The two electrons in each orbital are represented by five up and down arrows, .. Although not shown, the energy level of the 4s orbital falls between 3p and 3d.

The three different p orbitals within a given shell are oriented in space along mutually perpendicular directions, denoted px, py, and pz. As shown in Figure 1.6, the two lobes of each p orbital are separated by a region of zero electron density called a node. Furthermore, the two orbital regions separated by the node have different algebraic signs, + and −, in the wave function, as represented by the different colors in Figure 1.4 and Figure 1.6. As we’ll see in Section 1.11, these algebraic signs for different orbital lobes have important consequences with respect to chemical bonding and chemical reactivity.

1.2 Atomic Structure: Orbitals - Organic Chemistry | OpenStax (3)

Figure 1.6 Shapes of the 2p orbitals. Each of the three mutually perpendicular, dumbbell-shaped orbitals has two lobes separated by a node. The two lobes have different algebraic signs in the corresponding wave function, as indicated by the different colors.

1.2 Atomic Structure: Orbitals - Organic Chemistry | OpenStax (2024)

FAQs

What is atomic orbitals in organic chemistry? ›

What are orbitals in simple terms? The positions surrounding an atom's nucleus where the electrons are most likely to be at any given moment are atomic orbitals. It is a mathematical feature that defines either one electron or a pair of electrons' wave-like behaviour in an atom.

What is 1s 2s and 2p for orbitals? ›

Every electron is put in a shell that is represented by a no viz 1,2,3 … every shell has multiple subshells which are named as s,p,d,f. So 1s means s subshell of 1st shell, 2s means s subshell of 2nd shell and 2p means p subshell of 2nd shell.

How many orbitals are there in 1? ›

n=1; no of orbitals = (1)^2 = 1 orbital (1s) n=2; no of orbitals = (2)^2 = 4 orbitals (2s and three 2p orbitals) n=3; no of orbitals = (3)^2 = 9 orbitals (3s, three 3p and five 3d orbitals) n=4; no of orbitals = (4)^2= 16 orbitals (4s, three 4p, five 4d and seven 4f orbitals)

What is orbital in organic chemistry? ›

We know from Heisenberg's Uncertainty Principle that it is impossible to know the precise location of an electron. Despite this limitation, there are regions around the atom where the electron has a high probability of being found. Such regions are referred to as orbitals.

What are the 7 types of atomic orbitals? ›

Ernest Z. There are many types of atomic orbital ( s, p, d, f, g, h , …), but only the first four are occupied in the ground state of an atom.

How to calculate orbitals? ›

The number of orbitals in a shell is the square of the principal quantum number: 12 = 1, 22 = 4, 32 = 9. There is one orbital in an s subshell (l = 0), three orbitals in a p subshell (l = 1), and five orbitals in a d subshell (l = 2). The number of orbitals in a subshell is therefore 2(l) + 1.

What is the 2 8 8 18 rule in chemistry? ›

Electron shell (energy level)

The maximum number of electrons per shell, in order of increasing shell number (from 1 to 4) was said to be respectively 2, 8, 8, and 18. An atom will be made of the same number of electron shells as the number of period where it is found in the Periodic Table.

Are all 1s orbitals the same size? ›

The size of an atomic orbital is inversely proportional to the effective nuclear charge experienced by the electron occupying that orbital. Since the Li 1s electron experiences a higher effective nuclear charge (3) compared to the H 1s electron (1), the Li 1s orbital is smaller than the H 1s orbital.

How many electrons can go into 1 orbital? ›

Each orbital holds two electrons which differ in a property known as spin. Orbital: A region of space within an atom where an electron in a given subshell can be found. Any orbital can hold a maximum of 2 electrons with opposite spin.

What is the orbital rule in chemistry? ›

Hund's rule states that orbitals of equal energy are each occupied by one electron before any orbital is occupied by a second electron, and that each of the single electrons must have the same spin. The figure below shows how a set of three p orbitals is filled with one, two, three, and four electrons.

What are the 4 types of orbitals in chemistry? ›

An orbital is a region of space where there is a high probability of finding an electron. There are four basic types of orbitals: s, p, d, and f. An s orbital has a spherical shape and can hold two electrons.

What is the orbital theory in organic chemistry? ›

Basics of Molecular Orbital Theory

Molecular orbital theory asserts that atomic orbitals no longer hold significant meaning after atoms form molecules. Electrons no longer "belong", in a sense, to any particular atom but to the molecule as a whole.

What is the meaning of atomic orbital? ›

Atomic Orbitals refer to the mathematical equations that describe the energy and probability of finding electrons within a specific region of space in an atom. These orbitals are categorized by letters such as s, p, d, and f, and each orbital can hold a maximum of two electrons.

What are orbitals in simple terms? ›

1) An orbital is a three dimensional description of the most likely location of an electron around an atom. Below is a diagram that shows the probability of finding an electron around the nucleus of a hydrogen atom. Notice that the 1s orbital has the highest probability.

What do the atomic orbitals represent? ›

An atomic orbital represents the probability distribution* of the location of an electron around the nucleus and is mathematically described by a wave function.

What are the 5 atomic orbitals? ›

The shapes of the first five atomic orbitals are: 1s, 2s, 2px, 2py, and 2pz. The two colors show the phase or sign of the wave function in each region. Each picture is domain coloring of a ψ(x, y, z) function which depends on the coordinates of one electron.

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