13
DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi , Dr. S.R. Naidoo

DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Embed Size (px)

Citation preview

Page 1: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials

Implantation of N-O in Diamond

T.Matindi, Dr. S.R. Naidoo

Page 2: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Outline

• Introduction• Aim and objectives • Experimental techniques• Characterization techniques• Summary and conclusions

Page 3: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Introduction

• Properties of diamond :

Large energy gap around 5.5 eV. High carrier mobilities. High breakdown field strength. Highest thermal conductivity. Low dielectric constant. Broad optical transparency from UV to IR

Page 4: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Some potential application of diamond

Function Field of application

High temperature semiconductor Automobile and aircraft engines

High frequency/high power transistors High speed transistors, High speed data process

High voltage transistors Electric power control

X-ray windows IR windows

X-ray lithography masks and IR windows

Light emission LEDs and laser in UV region, white luminescence and light source for printers.

Pressure sensing Pressure sensor at high temperature

Page 5: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Conditions for manufacturing diamond-based electronic devices

P-type doping diamond (achieved using boron as an acceptor impurity)

N-type doping diamond (achieved using phosphorus)

Shallow dopants (both are substitutional dopants and are deep lying acceptor and donor states.)

Page 6: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Activation energies for some impurities in diamond.

The doping of diamond

N-dopingPhosphorusNitrogen

P-dopingBoron

Page 7: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

• Substitution of N-O into the diamond lattice is suggested to induce a shallow defect level below the conduction band edge which leads to n-type conductivity [1].

[1]. J. Lowther, “Substitutional oxygen-nitrogen pair in diamond,” Physical Review B, vol. 67, no. 11, p. 115206, 2003.

Theoretical work

Page 8: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Aim and objectives

• To explore the possibility of achieving n-type conductivity in diamond.

• To do the implantation of N-O into the diamond lattice.

• To investigate the interaction between nitrogen and oxygen in the diamond as well the related defects.

Page 9: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Experimental techniques

Ion implantation:

The 200-20A2F ion implanter (iThemba LABS, Gauteng)

Ions : Nitrogen and Oxygen.

Energy range : from 10 keV to 170 keV.

Fluences ranging: from ions/ to ions/.

Page 10: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

• Optical spectroscopy.

• Electronic measurements.

Characterization techniques

Page 11: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Summary and conclusions

• To explore the possibility of achieving n-type conductivity in diamond.

• To do the implantation of N-O into the diamond lattice.

• To investigate the interaction between nitrogen and oxygen in the diamond as well the related defects.

• Optical spectroscopy and electronic measurements

Page 12: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Thank you

Merci

Page 13: DST-NRF Centre of Excellence in Strong Materials Diamond, Thin Hard Films & Related Materials Implantation of N-O in Diamond T.Matindi, Dr. S.R. Naidoo

Setup for the generation of the VUV laser light