Sections in the chapter Jauhar Book
10.1 Coordination compounds
10.2 Important terms in Coordination compounds
Practice Problems: 10.1 to 10.5
10.3 IUPAC formulation and nomenclature of Coordination compounds
P.P. 10.6
10.4 Isomerism in Coordination compounds
P.P. 107 to 10.10
10.5 Bonding in Coordination compounds
10.6 Werner’s coordination theory
10.7 Valency bond theory for bonding in Coordination compounds
10.8 Crystal theory
10.9 Stability of Coordination compounds in solution
10.10 General methods of preparation of Coordination compounds
10.11 Applications of Coordination compounds
10.12 Organometallic compounds
10.13 Bonding in organometallic compounds
10.14 Synthesis of organometallic compounds
Key facts to remember
Conceptual Questions with Answers:
Additional Numerical Problems for Practice:
Revision Exercises
Very Short Answer questions : 25
Short Answer Questions : 60
Long Answer Questions : 14
Competition File
Typical questions: 11
Objective Questions:
Multiple choice questions: 28
Fill in the blanks: 10
True or False: 10
Study Plan
Main Study 10 days
Revision 10 days
Day 1
10.1 Coordination compounds
10.2 Important terms in Coordination compounds
Practice Problems: 10.1 to 10.5
Day 2
10.3 IUPAC formulation and nomenclature of Coordination compounds
P.P. 10.6
Day 3
10.4 Isomerism in Coordination compounds
P.P. 107 to 10.10
Day 4
10.5 Bonding in Coordination compounds
10.6 Werner’s coordination theory
10.7 Valency bond theory for bonding in Coordination compounds
Day 5
10.8 Crystal theory
Day 6
10.9 Stability of Coordination compounds in solution
10.10 General methods of preparation of Coordination compounds
10.11 Applications of Coordination compounds
Day 7
10.12 Organometallic compounds
10.13 Bonding in organometallic compounds
10.14 Synthesis of organometallic compounds
Key facts to remember
Day 8
Revision Exercises: Very Short Answer questions : 25
Day 9
Short Answer Questions : 1 to 30
Day 10
Short Answer Questions : 31 to 60
Revision Period
Day 11
Competition File: Typical questions: 11
Day 12
Multiple choice questions: 1 to 14
Day 13
Multiple choice questions: 15 to 28
Day 14
Fill in the blanks: 10
Day 15
True or False: 10
Day 16 to 20
Concept revision and test paper question solving
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Tampilkan postingan dengan label Coordination compounds. Tampilkan semua postingan
Tampilkan postingan dengan label Coordination compounds. Tampilkan semua postingan
Rabu, 11 Maret 2009
Jumat, 31 Oktober 2008
Coordination Compounds - Important Terms - Revision Points
Coordination compounds: coordination compounds are a special class of compounds in which the central atom is surrounded by ions and atoms beyond their normal valency
OR
Coordination or complex compounds may be defined as a molecular compound that results from the combination of two or more simple stable molecular compounds and retains its identity in the solid as well as in the dissolved state .The properties of such compounds are totally different than individual constituents. A coordination compound contains very often but not always a complex ion.
Complex ion
An electrically charged species which consists of a central metal ion or atom surrounded by a group of ions or neutral molecules(it may be noted that a complex may be positively charged or negatively charged or neutral).
Types of complex:
1.cationic complex
2.anionic complex
3.neutral complex
cationic complex :A complex which has net positive charge .
anionic complex : A complex which has net negative charge .
neutral complex: A complex which has no net charge or simply neutral.
TERMINOLOGY OF COORDINATION COMPOUNDS:
1 .Ligands:
The neutral molecule or ions which are directly attached to the central metal ion or atom through coordinate bonds in the complex ion is called Ligand.
>Ligands should have lone pair of electrons
>Ligands donate the lone pair to the central metal atom or ion forming coordinate covalent bond .
>thus Ligand are Lewis bases and central metal ion is a Lewis acid.
Types of ligands:
1. monodentate or unidentate ligands :ligand having only one donor atom.
2.bidentate ligand :ligand having two donor atoms
3.polydentate ligand :ligand having more than two donor atoms.
(tridentate,tetradentate,pentadentate,hexadentate,etc)
Chelating ligands:
when a bidentate or a polydentate ligand is attached by two or more donor atoms to the same central metal ion or atom forming a ring structure ,the ligand is called a chelating ligand. Chelating ligand forms a ring structure around the central metal ion.
Ambident ligand:
The monodentate ligands which can coordinate with the central metal ion or atom through more than one site are called ambident ligand.e.g.CN
M CN (cyanide)
M NC(isocyanide)
2.Coordination number:
The total number of ligands attached to the central metal ion or atom is called the coordination number of the metal atom or ion.
3.Coordination sphere:
The central metal ion or atom and the ligands are collectively called the coordination sphere .
(in other words the ions present in the square bracket together are called the coordination sphere)
4. Charge of a complex:
the charge carried by a complex ion is the algebraic sum of the charges carried by the central ion and the ligands coordinated to it .
OR
Coordination or complex compounds may be defined as a molecular compound that results from the combination of two or more simple stable molecular compounds and retains its identity in the solid as well as in the dissolved state .The properties of such compounds are totally different than individual constituents. A coordination compound contains very often but not always a complex ion.
Complex ion
An electrically charged species which consists of a central metal ion or atom surrounded by a group of ions or neutral molecules(it may be noted that a complex may be positively charged or negatively charged or neutral).
Types of complex:
1.cationic complex
2.anionic complex
3.neutral complex
cationic complex :A complex which has net positive charge .
anionic complex : A complex which has net negative charge .
neutral complex: A complex which has no net charge or simply neutral.
TERMINOLOGY OF COORDINATION COMPOUNDS:
1 .Ligands:
The neutral molecule or ions which are directly attached to the central metal ion or atom through coordinate bonds in the complex ion is called Ligand.
>Ligands should have lone pair of electrons
>Ligands donate the lone pair to the central metal atom or ion forming coordinate covalent bond .
>thus Ligand are Lewis bases and central metal ion is a Lewis acid.
Types of ligands:
1. monodentate or unidentate ligands :ligand having only one donor atom.
2.bidentate ligand :ligand having two donor atoms
3.polydentate ligand :ligand having more than two donor atoms.
(tridentate,tetradentate,pentadentate,hexadentate,etc)
Chelating ligands:
when a bidentate or a polydentate ligand is attached by two or more donor atoms to the same central metal ion or atom forming a ring structure ,the ligand is called a chelating ligand. Chelating ligand forms a ring structure around the central metal ion.
Ambident ligand:
The monodentate ligands which can coordinate with the central metal ion or atom through more than one site are called ambident ligand.e.g.CN
M CN (cyanide)
M NC(isocyanide)
2.Coordination number:
The total number of ligands attached to the central metal ion or atom is called the coordination number of the metal atom or ion.
3.Coordination sphere:
The central metal ion or atom and the ligands are collectively called the coordination sphere .
(in other words the ions present in the square bracket together are called the coordination sphere)
4. Charge of a complex:
the charge carried by a complex ion is the algebraic sum of the charges carried by the central ion and the ligands coordinated to it .
Werner's Coordination Theory - Revision Points
Postulates
1. In co-ordination compounds, central metal atoms exhibit primary valency and secondary valency.
The primary valency is ionizable. Secondary valency is not ionizable.
The primary valency corresponds to oxidation state.
The secondary valency corresponds to coordination number. (the central metal ion and ligands are not ionizable)
2. Every metal atom has a fixed number of secondary valencies (coordination number(s)).
3. The metal atom tends to satisfy boths its primary valency as well as its secondary valency. Primary valency is satisfied by negative ions (metal ion has a positive charge) whereas secondary valency (coordination number) is satisfied either by negative ions or by neutral molecules. (In certain case a negative ion may satisfy both types of valencies).
4. The coordination number or secondary valencies are always directed towards the fixed positions in space and this leads to definite geometry of the coordination compound.
1. In co-ordination compounds, central metal atoms exhibit primary valency and secondary valency.
The primary valency is ionizable. Secondary valency is not ionizable.
The primary valency corresponds to oxidation state.
The secondary valency corresponds to coordination number. (the central metal ion and ligands are not ionizable)
2. Every metal atom has a fixed number of secondary valencies (coordination number(s)).
3. The metal atom tends to satisfy boths its primary valency as well as its secondary valency. Primary valency is satisfied by negative ions (metal ion has a positive charge) whereas secondary valency (coordination number) is satisfied either by negative ions or by neutral molecules. (In certain case a negative ion may satisfy both types of valencies).
4. The coordination number or secondary valencies are always directed towards the fixed positions in space and this leads to definite geometry of the coordination compound.
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