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Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing silicon & carbon: Group 4A CO 2 vs SiO 2 Molecular bonding and structure play the central role in understand the properties of matter and in the determining the course of all chemical reactions. Object: Bonding and Structure of materials (chemicals)

Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Page 1: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

Chapter Eight

Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties.

Comparing silicon & carbon: Group 4A CO2 vs SiO2

Molecular bonding and structure play the central role in understand the properties of matter and in the determining the course of all chemical reactions.

Object: Bonding and Structure of materials (chemicals)

Page 2: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Questions to Consider

• What is meant by the term “chemical bond?”

• Why do atoms bond with each other to form molecules?

• How do atoms bond with each other to form molecules?

Page 3: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 10.27: Examples of silicate anions, all of which are based on SiO4

4- tetrahedra.

Page 4: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Key Ideas in Bonding

• Ionic Bonding: Electrons are transferred, NaCl, Ionic compounds, Coulomb’s force

• Covalent Bonding: Electrons are shared equally, H2

• What about intermediate cases?– HF, polar covalent bonding

Chemical Bond: energy , force

# : intramolecular and intermolecular bond

Types of Chemical Bonds:

Page 5: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.1 a & b (a) The Interaction of Two Hydrogen Atoms (b) Energy Profile as a Function of the Distance

Between the Nuclei of the Hydrogen Atoms

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Figure 8.2 The Effect of an Electric Field on Hydrogen Fluoride Molecules

Page 7: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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• If lithium and fluorine react, which has more attraction for an electron? Why?

• In a bond between fluorine and iodine, which has more attraction for an electron? Why?

8.2 Electronegativity

Page 8: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.3 The Pauling Electronegativity Vaules

Δ= (H–X)act - (H–X)exp

Page 9: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Table 8.1 The Relationship Between Electronegativity and Bond Type

Page 10: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.4 An Electrostatic Potential Map of HF

8.3 Bond Polarity and Dipole Moments

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Figure 8.5 a-c The Charge Distribution in the Water Molecule

Page 12: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.6 a-c The Structure and Charge Distribution of the Ammonia

Molecule

Page 13: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.7 a-c The Carbon Dioxide Molecule

Page 14: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Table 8.2 Types of Molecules with Polar Bonds but No Resulting Dipole Moment

Page 15: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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e.p. Diagram HCL

Page 16: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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e.p.Diagram SO3

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e.p. Diagram CH4

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e.p. Diagram H2S

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Question

Which of the following bonds would be the least polar yet still be considered polar covalent?

Mg-O C-O O-O Si-O N-O

Page 20: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Ions: Electron Configurations and Sizes

What we can “read” from the periodic table:

• Trends for– Atomic size– Ion radius– Ionization energy– Electronegativity

• Electron configurations

• Predicting formulas for ionic compounds

• Ranking polarity of covalent bonds

Page 21: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Table 8.3 Common Ions with Noble Gas Configurations in Ionic Compounds

Page 22: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.8 Sizes of Ions Related to Positions of the Elements on the Periodic Table

8.4 Ions: Electron Configurations and Sizes

Page 23: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Arrange the following, without consulting any specific listed radii, in order from smallest to largest size (radius)

S2– ; Cl–; K+; Rb+

1. S2– ; Cl–; K+; Rb+

2. K+; Rb+; Cl–; S2– 3. S2– ; Cl–; Rb+; ; K+

4. S2– ; Cl–; Rb+; K+

QUESTION

Page 24: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Formation of an Ionic Solid

1. Sublimation of the solid metal• M(s) M(g) [endothermic]

2. Ionization of the metal atoms• M(g) M+(g) + e [endothermic]

3. Dissociation of the nonmetal• 1/2X2(g) X(g) [endothermic]

4. Formation of X ions in the gas phase:• X(g) + e X(g) [exothermic]

5. Formation of the solid MX• M+(g) + X(g) MX(s)

[quite exothermic]

Page 25: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.9 The Energy Changes Involved in the Formation of Lithium Fluoride from Its Elements

Page 26: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.11 Comparison of the Energy Changes Involved in the Formation of Solid Sodium Fluoride and Solid Magnesium Oxide

Page 27: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.10 a & b The Structure of Lithium Fluoride

Page 28: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.12 a-c The Three Possible Types of Bonds

Page 29: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.13 The Relationship Between the Ionic Character of a Covalent Bond and the

Electronegativity Difference of the Bounded Atoms

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Models

• Models are attempts to explain how nature operates on the microscopic level based on experiences in the macroscopic world.

Page 31: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Fundamental Properties of Models

1. A model does not equal reality.

2. Models are oversimplifications, and are therefore often wrong.

3. Models become more complicated as they age.

4. We must understand the underlying assumptions in a model so that we don’t misuse it.

Page 32: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Model of Chemical Bond

• Individual bond occurs between pair electron.• Average individual bond energy• Bond energy values can used to calculate the

reaction energies.

Page 33: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Table 8.4 Average Bond Energies (kj/mol)

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Table 8.5 Bond Lengths for Selected Bonds

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Localized Electron Model

• A molecule is composed of atoms that are bound together by sharing pairs of electrons using the atomic orbitals of the bound atoms.

• bonding pairs, lone pairs

Page 36: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Localized Electron Model

1. Description of valence electron arrangement (Lewis structure).

2. Prediction of geometry (VSEPR model).

3. Description of atomic orbital types used to share electrons or hold long pairs.

Page 37: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Lewis Structure

• Shows how valence electrons are arranged among atoms in a molecule.

• Reflects central idea that stability of a compound relates to noble gas electron configuration.

Page 38: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Lewis Structures

1. Sum the valence electrons.

2. Place bonding electrons between pairs of atoms.

3. Atoms usually have noble gas configurations.

Page 39: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Which of the following Lewis structures best describes BF3? 1)

2)

3)

4)

5)

Page 40: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Resonance

• More than one Lewis structure for a given molecule. Ex. NO3

-

• Resonance structure, Ex. NO2-

• Formal charge: (# of VEs on free atom)-(# of VEs assigned to the atom in the molecule), Ex. SO4

2-

• Rules of formal charge• Assigning the structure based on formal charge

(predicted structure should be judged by expt.

Page 41: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Choose the electron dot formula that most accurately describes the bonding in CS2. (Hint: Consider formal charges.)

1) .. ..

:S C S: 2) .. ..

:C S S:

3) .. ..

:S C S:.. .. 4) .. .. ..

:S C S:.. ..

5) ..

:S C S:..

Page 42: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Molecular Structure: VSEPR Model

• Molecular structure: 3D arrangement of the atoms in a molecule.

• VSEPR: valence shell electron-pair repulsion• Assume: The structure around a given atom is

determined principally by minimizing electron pair repulsions.

(Bonding and nonbonding pairs around a given atom should be positioned as far as possible.)

• Ex. BeCl2, BF3, CH4

Page 43: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.15 The Molecular Structure of Methane

Page 44: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Balloons Tied Together Naturally Form Tetrahedral Shape

Page 45: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Predicting a VSEPR Structure

1. Draw Lewis structure.

2. Put pairs as far apart as possible.

3. Determine positions of atoms from the way electron pairs are shared.

4. Determine the name of molecular structure from positions of the atoms.

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Figure 8.16 a-c The Molecular Structure of Ammonia is a Trigonal Pyramid

Page 47: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.17 a-c The Tetrahedral Arrangement of Oxygen In a Water Molecule

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Figure 8.18 The Bond Angles In the CH4, NH3, and H2O Molecules

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Figure 8.19 a & b In a Bonding Pair of Electrons the Electrons are Shared by Two Nuclei (b) In a Lone Pair, Both Electrons Must Be Close to a Single Nucleus

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Predicting a VSEPR Structure

1. Draw Lewis structure.2. Put pairs as far apart as possible.3. Determine positions of atoms from the

way electron pairs are shared.4. Determine the name of molecular

structure from positions of the atoms.5. Lone pairs require more room than

bonding pairs

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Table 8.6 Arrangements of Electron Pairs Around an Atom Yielding Minimum Repulsion

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Table 8.7 Structures of Molecules that Have Four Electron Pairs Around the Central Atom

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Table 8.8 Structures of Molecules with Five Electron Pairs Around the Central Atom

Page 54: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Determine the shape for each of the following molecules, and include bond angles:

•HCN

•PH3

•SF4

•O3

•KrF4

Page 55: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.20 a & b Possible Electron Pair Arrangements for XeF4

Page 56: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.21 a-c Three Possible Arrangements of the Electron Pairs in

the I3- Ion

Page 57: Chapter Eight Comparing diamond & graphite: The bounding of substances (chemical) has a profound effect on chemical and physical properties. Comparing

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Figure 8.22 a-c The Molecular Structure of Methanol

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Queen Bee

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NH3

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PH3