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Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

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Page 1: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Towards Practical Molecular Devices

Noel O’BoyleHan Vos Research Group X246

Page 2: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Introduction Molecular device

“capable of performing a useful function at the molecular level”

Supermolecule “has the intrinsic properties of each of its

components” “has properties above and beyond those of

the individual components”

Page 3: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Supramolecular chemistry

Ground state

Excited state

Page 4: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Supramolecular chemistry

Ground state

Excited state

Page 5: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Supramolecular chemistry

Ground state

Excited state (1)

Page 6: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Supramolecular chemistry

Ground state

Excited state (1)

Page 7: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Supramolecular chemistry

Ground state

Excited state (1)

Excited state (2)

Page 8: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Supramolecular chemistry

Ground state

Page 9: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Metal-Metal dyads

RuN

N

NN

OHO

OHO

O

OH

O

OH

N

NN

NN

RuN

N

N N

RuN

N

NN

OHO

OHO

O

OH

O

OH

N

NN

NN

OsN

N

N N

Ru-Ru Ru-Os

3+ 3+

Page 10: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Molecular device

Ru

e-

TiO2- +

Page 11: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Molecular device

e-

e-

-

+

Page 12: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Charge injection

Can be studied using: UV-Vis of ruthenium complex UV-Vis of TiO2

Lifetime of excited state of ruthenium complex

But occurs in <100 fs! (ultrafast)

Page 13: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Outline of future work

Slow down the charge injection

Change surface roughnesses

Use different surfaces

Use different complexes

Page 14: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Semiempirical calculations Using ZINDO (in Hyperchem) to find:

Orbital energies Location of HOMO levels Contribution of ligands and metal

centres to orbitals Assign the peaks in the UV-Vis

spectrum to specific transitions between energy levels

Page 15: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

H H-1 H-2

-8.94 eV -9.55 eV -9.64 eV 22% Ru, 74% LL, 3% bpy 38% Ru, 54% LL, 8% bpy 74% Ru, 4% LL, 22% bpy

[Ru(bpy)2(pytrzph(OMe)2)]+

Page 16: Towards Practical Molecular Devices Noel O’Boyle Han Vos Research Group X246

Acknowledgements Prof. Han Vos Han Vos Research Group

Enterprise Ireland

For more information see:http://www.dcu.ie/~chemist/Staffpages/han_vos.htm