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Lasers at the Interface of 
  Chemistry and Physics 
  Chemistry and Physics
 (Biology? Engineering?)
  Cather Simpson
        Department of Physics
        D    t   t f Ph i
        School of Chemical Sciences
        c.simpson@auckland.ac.nz
             p @




      photonfactory.auckland.ac.nz
The Photon Factory
 Using short and ultrashort laser
   pulses ...


...to probe chemistry physics
   to       chemistry,




                                    ... to machine on the μ to nanoscale
Important events happens on ultrashort time scales
Laser Interactions with Matter




            35 fs pulses
           100 fs pulses
          10 ns pulses
Laser Micro‐ and Nanomachining       "Research-grade" femtosecond system
                                         ⇒ 800 nm (tunable)
                                         ⇒ 100 fs (or 35 fs or ps scale)
                                                         fs, ps-scale)
                                         ⇒ up to 3.5 mJ/pulse (λ dependent)
                                         ⇒ 6 μm feature size
                                         ⇒ 100 nm limit (Ag on glass λ/8)




   "Standard" nanosecond system
       ⇒ 248 nm; ~10 ns
       ⇒ up t 10 mJ/pulse
             to    J/ l
       ⇒ 2 μm feature size
       ⇒ 300 nm limit feature size
Enabling Technology
   Basic, Targeted‐Basic and Applied Research



                           Engender Technologies, Ltd.
500 μm




         1-3 μm
The Photon Factory                                                         James Tour 
                                                                           & coworkers




                                                          P=P photochemistry – a new 
                                                              twist on an old tale
                                                              twist on an old tale




The Photon Factory ‐ Enabling Technology
     •    robust, reliable source of pulsed laser light
     •    pulses from nano‐ to femtoseconds
     •    wavelengths from ultraviolet to infrared
                   g f                        f
     •    low to high pulse energies
New photoactive electronic materials




                                                                            Prof. John 
                                                                            Protasiewicz
                                                                      Transparent
                                                                      Protective Film
                                                                      P t ti Fil
              Dr. John Payton




                     Light Emitting Polymer Film


                                          Dr. Brian Alberding
  Dr. Huo‐Lei Peng                        Dr. Nicole  Dickson   Protective Film
Expanding the toolbox



                            phospha-PPVs …
                                   polymer OLEDs
                                   photoactive polymers (photonics)
                                   solar energy harvesting?
                                                                      Prof. John 
                                                                      Protasiewicz


                           PA                            P
               n


                           PPV                                   n
                   n

                                                     P
                           PPE                           P
                       n
                                                                 n
Photochemistry and the periodic table




   “… it is rather the heavy
   elements which behave
   normally and not the
          ll     d   t th
   more familiar elements
   of the first row”

   -- W. Kutzelnigg (1984) Angew. Chem. Int. Ed. Engl. 23:272-295
Photochemistry and Photophysics of Diphosphenes


                                                                                             Mes


                                                                                       Mes    P    P     Mes
                                                                                                         M
                    But

       But
                                                         Prof. John Protasiewicz                   Mes


 But     P   P      But                            j
                              Prof. Masaaki Yoshifuji
             But

 But




                                                               Dmp = 2,6-Mes2C6H3
                          Mes* = 2,4,6-tri-t-butylphenyl             Urzenius E., Protasiewicz,J.D. (1996)
                                                                                 Main Group Chem. 1:369.
                 Yoshifuji, M. et al. (1981) JACS 103:4587.
Photochemistry and Photophysics of Diphosphenes
 What excited states are involved?
         What pathways between states are important?
                   What structural features influence photobehaviour?



                                            P
                                        P
                                      Inversion

               P
           P
                                  2             P                           P
                                                                        P

                                      Dissociative
                                                                            R            R
                                                                                 P   P
                                                P
                                            P                                    P   P
                                       Rotation                             R'           R'
Photochemistry and Photophysics of Diphosphenes
 What excited states are involved?
         What pathways between states are important?
                   What structural features influence photobehaviour?

Quantum chemistry calculations
 Density functional theory
                                            P
 CASPT2//CASSCF                         P
                                      Inversion

               P
           P
                                  2             P                           P
                                                                        P




                                                                                 ??
                                      Dissociative
Ultrafast Spectroscopy
                                                                            R            R
 fs-Transient Absorption
                                                                                 P   P
   impact of                                    P
     - ligands                              P                                    P   P
     - excitation λ                    Rotation                             R'           R'
     - solvent
                   fs-Time resolved Raman
Ultrafast Transient Absorption & CASPT2//CASSCF
Ultrafast Transient Absorption & CASPT2//CASSCF
                                                               π– π∗
                       400 nm excitation                    ε ∼ 5 − 12,000




                                                 rbance
                              S2


                                                                        n+ – π∗




                                             Absor
                                    ππ* (S2) singlet state            ε ∼ 300 − 1500
                                      τrise = 130 fs
                                      τ1 = 275 fs 300 350 400 450
                                                250                          500
                                       τ2 = 20 ps     Wavelength (nm)


                       480 nm excitation
                              e citation
                              S1
                                                          Mes

                                    n+π* (T1) triplet state P
                                                    Mes         P     Mes
                                          τrise = 230 fs
                                           τ1 = 16 ps           Mes
                                           τ2 = 200 ps
                                                          DmpP=PDmp
Ultrafast Transient Absorption & CASPT2//CASSCF
The Photon Factory
 Using short and ultrashort laser
   pulses ...


...to probe chemistry physics
   to       chemistry,




                                    ... to machine on the μ to nanoscale
Current Photon Factory Group
  Dr. Chuck Rohde (Physics)
  Sarah Th
  S h Thompson (Chemistry – PhD student)
                   (Ch i t            t d t)
  Julie Kho (Chemistry – PhD student)
  Christiaan Hougaard (BSc Hons Physics)
  S o s o
  Simon Ashforth (BTech Physics)
                  ( ec     ys cs)            Past Members
  Sean Liew (BTech Physics)                    Laura Harvey (MSc Physics graduate)
  Edward Woon Wei An (BTech Physics)           Kaidi Liang (BTech Physics)
  Jessica Hendy (BA Hons Anthropology)         Ling Yan Pang (BTech Physics)
  James Park (BSc H
  J       P k (BS Hons Ch i t )
                         Chemistry)            Amy Lin (MSc. Physics)
                                                        (MSc
  Josh Bradfield (Mechatronics Engineering)    Emma Simpson (Physics exchange)
                                                                                    Center for
  Fraser MacMillan (Engineering Science)       Hafizah Rahim
                                                                           Chemical Dynamics
  Peter Hosking (Mechatronics Engineering)
               g(                 g      g)
  Mona Xin Zhu (Biomedical Engineering)      Current Collaborators
  Hayley Ware (Mechanical Engineering)         Prof. David Williams
  Matthew Edmond (Engineering Science)         Dr. Bryon Wright
  Isaac Hamling (Engineering Science)          Dr.
                                               Dr Charles Unsworth
  Geran Zhang (Biomedical Engineering)         Prof. Larry Chamley
                                               Prof. John Protasiewicz
                                               Prof. Terry Gustafson
Vice Chancellor’s Strategic Development Fund
     Chancellor s
Vice Chancellor's MIRE Program
Faculty of Science
School of Chemical Science & Department of
     Physics
Auckland UniServices




National Science Foundation (USA) National
                              (USA),
      Institutes of Health (USA), Department
      of Education (USA)

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14.00 o2 m simpson

  • 1. Lasers at the Interface of  Chemistry and Physics  Chemistry and Physics (Biology? Engineering?) Cather Simpson Department of Physics D t t f Ph i School of Chemical Sciences c.simpson@auckland.ac.nz p @ photonfactory.auckland.ac.nz
  • 2. The Photon Factory Using short and ultrashort laser pulses ... ...to probe chemistry physics to chemistry, ... to machine on the μ to nanoscale
  • 3. Important events happens on ultrashort time scales
  • 4. Laser Interactions with Matter 35 fs pulses 100 fs pulses 10 ns pulses
  • 5. Laser Micro‐ and Nanomachining "Research-grade" femtosecond system ⇒ 800 nm (tunable) ⇒ 100 fs (or 35 fs or ps scale) fs, ps-scale) ⇒ up to 3.5 mJ/pulse (λ dependent) ⇒ 6 μm feature size ⇒ 100 nm limit (Ag on glass λ/8) "Standard" nanosecond system ⇒ 248 nm; ~10 ns ⇒ up t 10 mJ/pulse to J/ l ⇒ 2 μm feature size ⇒ 300 nm limit feature size
  • 6. Enabling Technology Basic, Targeted‐Basic and Applied Research Engender Technologies, Ltd.
  • 7. 500 μm 1-3 μm
  • 8. The Photon Factory James Tour  & coworkers P=P photochemistry – a new  twist on an old tale twist on an old tale The Photon Factory ‐ Enabling Technology • robust, reliable source of pulsed laser light • pulses from nano‐ to femtoseconds • wavelengths from ultraviolet to infrared g f f • low to high pulse energies
  • 9. New photoactive electronic materials Prof. John  Protasiewicz Transparent Protective Film P t ti Fil Dr. John Payton Light Emitting Polymer Film Dr. Brian Alberding Dr. Huo‐Lei Peng Dr. Nicole  Dickson Protective Film
  • 10. Expanding the toolbox phospha-PPVs … polymer OLEDs photoactive polymers (photonics) solar energy harvesting? Prof. John  Protasiewicz PA P n PPV n n P PPE P n n
  • 11. Photochemistry and the periodic table “… it is rather the heavy elements which behave normally and not the ll d t th more familiar elements of the first row” -- W. Kutzelnigg (1984) Angew. Chem. Int. Ed. Engl. 23:272-295
  • 12. Photochemistry and Photophysics of Diphosphenes Mes Mes P P Mes M But But Prof. John Protasiewicz Mes But P P But j Prof. Masaaki Yoshifuji But But Dmp = 2,6-Mes2C6H3 Mes* = 2,4,6-tri-t-butylphenyl Urzenius E., Protasiewicz,J.D. (1996) Main Group Chem. 1:369. Yoshifuji, M. et al. (1981) JACS 103:4587.
  • 13. Photochemistry and Photophysics of Diphosphenes What excited states are involved? What pathways between states are important? What structural features influence photobehaviour? P P Inversion P P 2 P P P Dissociative R R P P P P P P Rotation R' R'
  • 14. Photochemistry and Photophysics of Diphosphenes What excited states are involved? What pathways between states are important? What structural features influence photobehaviour? Quantum chemistry calculations Density functional theory P CASPT2//CASSCF P Inversion P P 2 P P P ?? Dissociative Ultrafast Spectroscopy R R fs-Transient Absorption P P impact of P - ligands P P P - excitation λ Rotation R' R' - solvent fs-Time resolved Raman
  • 16. Ultrafast Transient Absorption & CASPT2//CASSCF π– π∗ 400 nm excitation ε ∼ 5 − 12,000 rbance S2 n+ – π∗ Absor ππ* (S2) singlet state ε ∼ 300 − 1500 τrise = 130 fs τ1 = 275 fs 300 350 400 450 250 500 τ2 = 20 ps Wavelength (nm) 480 nm excitation e citation S1 Mes n+π* (T1) triplet state P Mes P Mes τrise = 230 fs τ1 = 16 ps Mes τ2 = 200 ps DmpP=PDmp
  • 18. The Photon Factory Using short and ultrashort laser pulses ... ...to probe chemistry physics to chemistry, ... to machine on the μ to nanoscale
  • 19.
  • 20. Current Photon Factory Group Dr. Chuck Rohde (Physics) Sarah Th S h Thompson (Chemistry – PhD student) (Ch i t t d t) Julie Kho (Chemistry – PhD student) Christiaan Hougaard (BSc Hons Physics) S o s o Simon Ashforth (BTech Physics) ( ec ys cs) Past Members Sean Liew (BTech Physics) Laura Harvey (MSc Physics graduate) Edward Woon Wei An (BTech Physics) Kaidi Liang (BTech Physics) Jessica Hendy (BA Hons Anthropology) Ling Yan Pang (BTech Physics) James Park (BSc H J P k (BS Hons Ch i t ) Chemistry) Amy Lin (MSc. Physics) (MSc Josh Bradfield (Mechatronics Engineering) Emma Simpson (Physics exchange) Center for Fraser MacMillan (Engineering Science) Hafizah Rahim Chemical Dynamics Peter Hosking (Mechatronics Engineering) g( g g) Mona Xin Zhu (Biomedical Engineering) Current Collaborators Hayley Ware (Mechanical Engineering) Prof. David Williams Matthew Edmond (Engineering Science) Dr. Bryon Wright Isaac Hamling (Engineering Science) Dr. Dr Charles Unsworth Geran Zhang (Biomedical Engineering) Prof. Larry Chamley Prof. John Protasiewicz Prof. Terry Gustafson
  • 21. Vice Chancellor’s Strategic Development Fund Chancellor s Vice Chancellor's MIRE Program Faculty of Science School of Chemical Science & Department of Physics Auckland UniServices National Science Foundation (USA) National (USA), Institutes of Health (USA), Department of Education (USA)