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Chirped-Pulse Microwave Spectroscopy in the Undergraduate Chemistry Curriculum Sydney Gaster, Taylor Hall, Sean Arnold, Deondre Parks, Gordon Brown Department.

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Presentation on theme: "Chirped-Pulse Microwave Spectroscopy in the Undergraduate Chemistry Curriculum Sydney Gaster, Taylor Hall, Sean Arnold, Deondre Parks, Gordon Brown Department."— Presentation transcript:

1 Chirped-Pulse Microwave Spectroscopy in the Undergraduate Chemistry Curriculum Sydney Gaster, Taylor Hall, Sean Arnold, Deondre Parks, Gordon Brown Department of Science and Mathematics Coker College, Hartsville, SC, USARC07

2 Microwave Spectroscopy at Coker College Coker College’s CP-FTMW spectrometer FTMW spectroscopy in a teaching laboratory FTMW spectroscopy in undergraduate research 2

3 3 Spectrometer Diagram 1 GHz Chirped Pulse Analog Devices 9914 2 frequency ranges (4 - 8 and 8 - 18 GHz) MW Synthesizer (4 GHz ref) 10 W

4 4 Chirped Pulse Microwave Spectrometer

5 DDS vs. AFG Tektronix AFG3251 Analog Devices 9914 Bandwidth240 MHz2000 MHz Price$8,230$600 ISMS 2013 WH07: Ian Finneran, Daniel Holland, Brandon Carroll, Geoffrey Blake, California Institute of Technology, Rev. Sci. Instrum. 84, 083104 (2013)

6 6 Tektronix AFG3251 : Analog Devices 9914 :

7 MULTI-PULSE EXPERIMENTS

8

9 Room-Temp Spectrometer 9

10 Microwave Spectroscopy at Coker College Coker College’s CP-FTMW spectrometer FTMW spectroscopy in a teaching laboratory FTMW spectroscopy in undergraduate research 10

11 Step 1: ab initio Calculation 11

12 Step 2: Measure Spectrum 12

13 Step 3: Assign Spectrum 13 ISMS 2013 WH06: A.J. Minei, S.A. Cooke, Pure Rotational Spectroscopy of Asymmetric Tops in the Undergraduate Classroom or Laboratory. (2013);

14 Step 3: Assign Spectrum 14

15 Step 3: Assign Spectrum 15

16 Microwave Spectroscopy at Coker College Coker College’s CP-FTMW spectrometer FTMW spectroscopy in a teaching laboratory FTMW spectroscopy in undergraduate research 16

17 17 Objectives for this Research: Measure and assign the rotational spectrum of 3-iodopyridine Test case: Does the Coker CP-FTMW spectrometer have sufficient resolution to measure two quadrupolar nuclei? 3-iodopyridine

18 18 Experimental Spectrum of 3-iodopyridine Measured with AFG3252 – 43 x 250 MHz steps 10,000 signal averages (approximately 40 hours of measurement time) Valve Conditions: Backing Pressure set to 60 psi Nozzle heated to ~95° C

19 19 Experimental Spectrum of 3-iodopyridine Measured with AFG3252 – 43 x 250 MHz steps 10,000 signal averages (approximately 40 hours of measurement time) Valve Conditions: Backing Pressure set to 60 psi Nozzle heated to ~95° C

20 20 Experimental Spectrum of 3-iodopyridine Measured with ad9914 11 x 1000MHz steps 10,000 signal averages (approximately 10 hours of measurement time) Valve Conditions: Backing Pressure set to 50 psi Nozzle heated to ~95° C

21 21 Experimental Spectrum of 3-iodopyridine Measured with ad9914 11 x 1000MHz steps- 10 MW pulses for each valve pulse 10,000 signal averages (approximately 1.5 hours of measurement time) Valve Conditions: Backing Pressure set to 50 psi Nozzle heated to ~95° C

22 22 Experimental Spectrum of 3-iodopyridine (Low Frequency Graph) 10,000 signal averages (approximately 7 hours of measurement time) Nozzle Conditions: Backing Pressure set to 50 psi Nozzle heated to ~95° C

23 23 Line Assignments using AABS Software: Z.Kisiel, in: J.Demaison et al. (Eds.), Spectroscopy from Space, Kluwer Academic Publishers, Dordrecht, 2001, pp.91-106.

24 24 Line Assignments using AABS Software:

25 Table 1: Experimental Rotational Constants Rotational Parameters 3-iodopyridine B3LYP/ 6 ‑ 311++g(d,p) Experimental A (MHz) 5868.17395837.9252(2) B (MHz) 740.24615754.96934(8) C (MHz) 657.32703668.45087(6) 3/2 Χ aa N(MHz) 0.248712530.04(1) ¼ Χ bb – Χ cc N(MHz) -1.8917591-1.726(2) Χ ab N(MHz) -2.9605646-2.64(2) 3/2 Χ aa I(MHz) -2838.4914 -2897.63(1) ¼ Χ bb – Χ cc I(MHz) 17.90631614.592(2) Χ ab I(MHz) 35.77061941.37(2) Number of Assigned Lines N/A213 OMC (MHz) N/A0.0073 Inertial Defect (amu*A 2 ) 0.0000022 0.074(1) Rotational and Quadrupole Coupling Constants 25

26 Conclusions: Developed CP-FTMW instrumentation for undergraduate institution Implemented microwave spectroscopy in a classroom setting Measured and assigned 4-18.5 GHz spectrum of 3-iodopyridine 3-iodopyridine 26

27 Acknowledgements South Carolina Independent Colleges and Universities Student-Faculty Research Program National Science Foundation (CHE-1213560) Coker College 27

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