Lesson 24 of 25 • 6 upvotes • 9:05mins
In this lesson I have discussed in detail about the ligand metal charge transfer spectra ie what is LMCT, how the transition takes place and the dependence of intensity on energy and oxidation state of metal.
25 lessons • 4h 19m
Introduction to Coordination Chemistry (in Hindi)
12:04mins
Wener’s Theory (in Hindi)
9:23mins
Hybridisation in Octahedral Complexes (in Hindi)
10:48mins
Hybridisation in CNO=4 Complexes and Concerted d Systems (in Hindi)
11:08mins
Crystal Field Theory (in Hindi)
10:04mins
Relationship b/w CFSE of octahedral,cubic and tetrahedral complexes
11:25mins
Factors affecting CFSE
10:09mins
Some examples to understand the concept of field strength of ligands
10:22mins
Stabalisation of complexes
11:13mins
Secondary stabalisation( Jahn Tellar distortion)
11:16mins
How JTD occurs(Jahn Teller Distortion)
8:52mins
Occurance of Zin and Zout
8:08mins
Some examples of complexes showing JTD
8:03mins
Applications of JTD(jahn teller distortion)
11:42mins
Applications of CFSE(crystal field splitting energy)
12:21mins
Applications of CFSE part 2
8:41mins
Determination of spinels
9:55mins
Structure determination of spinels(part 2)
10:40mins
Atomic spectra( states and microstates)
9:50mins
Term and Term symbol
14:08mins
Colour of coordination compounds
8:45mins
Laporte and spin selection rules
10:36mins
Intensity table and charge transfer spectra
9:25mins
Ligand Metal charge transfer(LMCT)
9:05mins
MLCT, intervalence charge transfer and MMCT
11:19mins