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Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic Cells): spontaneous chemical reactions produce electricity and supply it to an external circuit

Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

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Page 1: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Types of Electrochemical Cells

Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur

Voltaic Cells (Galvanic Cells): spontaneous chemical reactions produce electricity and supply it to an external circuit

Page 2: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Electrical Conduction

Electric current represents charge transfer Charges conducted through:

1. liquid electrolytes

2. metals – metalic conduction Ionic Conduction – conduction of an electric

current through motion of ions in solution

Page 3: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Ionic Conduction

+Migrate

Neg. Electrode

-Migrate

Pos. Electrode

Page 4: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Electrodes

Surfaces upon which oxidation and reduction half reactions occur

May or may not participate in the reaction Inert Electrodes – do not participate

Ex. Pt, C, Pd Reduction at cathode Oxidation at anode

Page 5: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Electrodes

RED CAT

And

AN OX

Page 6: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Ted Talk

http://ed.ted.com/lessons/electric-vocabulary

Page 7: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Voltaic or Galvanic Cells

Spontaneous oxidation – reduction reactions produce electrical energy

Two halves of redox reaction are separated Half cell – contains the oxidized and reduced

forms of an element or other complex species

Page 8: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Voltaic or Galvanic Cells

Salt bridge – completes circuit between the two half cells

Salt bridge is any medium through which ions can flow

Agar + Salt Gelations

1. Allows electrical contact between two solutions

2. Prevents mixing of electrode solutions

3. Maintains electrical neutrality

Page 9: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Redox Reaction

Page 10: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Redox Reaction

Page 11: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Redox reaction – NOTa voltaic cell

Zn metal

Cu2+ ions

Zn metal

Cu2+ ions

With time, Cu plates onto the Zn metal strip, and Zn strip disappears

• Electrons are transferred from Zn to Cu2+, but there is no useful electric current.

Page 12: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

CHEMICAL CHANGE --->CHEMICAL CHANGE --->ELECTRIC CURRENTELECTRIC CURRENT To obtain a useful To obtain a useful

current, we separate current, we separate the oxidizing and the oxidizing and reducing agents so that reducing agents so that electron transfer occurs electron transfer occurs thru an external wire.thru an external wire.

This is accomplished in a This is accomplished in a GALVANICGALVANIC or or VOLTAICVOLTAIC cell.cell.

A group of such cells is called A group of such cells is called a a batterybattery..

Zn

Zn2+ ions

Cu

Cu2+ ions

wire

saltbridge

electrons

Zn

Zn2+ ions

Cu

Cu2+ ions

wire

saltbridge

electrons

Page 13: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Voltaic Cell links

http://www.chembio.uoguelph.ca/educmat/chm19105/galvanic/galvanic1.htm

http://www.youtube.com/watch?v=0oSqPDD2rMA

Page 14: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Cu - Ag Cell

Page 15: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Sn – Cu cell

Page 16: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Summary of Zn, Cu, Ag Zn – Cu

Cu electrode – cathode

Cu+2 is more easily reduced than Zn+2

Zn is a stronger reducing agent than Cu

Ag – CuCu electrode – anode

Ag+ is more easily reduced than Cu+2

Cu is a stronger reducing agent than Ag

Cathode – Anode are dictated by species present

Page 17: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Summary of Zn, Cu, Ag

Strength as oxidizing agents

Zn+2 < Cu+2 < Ag+

Strength as reducing agents

Zn > Cu > Ag

Page 18: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Standard Electrode Potentials

Magnitude of a cell’s potential measures the spontaneity of its redox reaction

Higher cell potentials indicate a greater driving force

Want to separate total cell potentials into individual potentials of the two half reactions

Determine tendencies for redox reactions

Page 19: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Standard Hydrogen Electrode

“Every oxidation needs a reduction”

e- must go somewhere Therefore it is impossible to determine

experimentally the potential of a single electrode Establish an arbitrary standard electrode

Standard Hydrogen Electrode, SHE

Page 20: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Standard Hydrogen Electrode

Metal coated with Pt immersed in a 1.0 M H+

solution. H2 gas is bubbled at 1 atm over the electrode

Assigned a potential of 0.000 V

2 H2 H++(aq, 1 M) + 2e- <----> H(aq, 1 M) + 2e- <----> H22(g, 1 atm) E(g, 1 atm) E° = 0.000V° = 0.000V

HH22(g, 1 atm <----> 2 H(g, 1 atm <----> 2 H++(aq, 1 M) + 2e- E(aq, 1 M) + 2e- E° = 0.000V° = 0.000V

Page 21: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Cu – SHE Cell

Page 22: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Zn – SHE Cell

Page 23: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Zn – Cu Cell

Page 24: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Electromotive Series

Can develop series of standard electrode potentials

When involve metals in contact with their ions – electromotive series

Zn: Std. oxidation potential = +0.763 V

Therefore, reduction potential = -0.763 V

Page 25: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Electromotive Series

International convention is to use reduction half reactions

Indicates tendencies of electrodes to behave as cathodes toward SHE

If E° < 0.0 V, then electrode acts as anode versus SHE

Page 26: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Uses of the Electromotive Series

Predict the spontaneity of redox reactions

Question: Will Cu+2 oxidize Zn to Zn+2 or will Zn+2 oxidize Cu?

Write half reactions and make sure E° is positive.Cu+2 + 2 e- Cu E° = 0.34 V Zn Zn+2 + 2 e- E° = 0.76 VTherefore, Cu+2 will oxidize Zn to Zn+2

Page 27: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Will Cr+3 oxidize Cu to Cu+2 or will Cu+2 oxidize Cr to Cr+3?

Page 28: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Nernst Equation

Use when you do not have standard state conditions

Page 29: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Problem

Calculate E for Fe+3/Fe+2 electrode if the [Fe+2] is 5 times that of [Fe+3].

Page 30: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Problem

Calculate E for a Al – Cu cell in which the temperature is 20.5 °C and the [Cu+2] = 0.25 M and [Al+3] is 0.75 M.

Page 31: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Relationship of E° to G° and Keq

G° = -nF E°

G = G° + RT ln Q

G° = -RT ln Keq

Page 32: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

“Triangle of Truth”

E°cell Keq

nFE° = RT ln Keq

G° = -nFE°G° = -RT ln Keq

Page 33: Types of Electrochemical Cells Electrolytic Cells: electrical energy from an external source causes a nonspontaneous reaction to occur Voltaic Cells (Galvanic

Calculate

3 Sn+4 + 2 Cr 3 Sn+2 + 2 Cr+3

Calculate G° and Keq