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Salt Lake Regional Medical Center

United States

1 paper here18 citations across 1
fields
  • cond-mat.mtrl-sci1
ROR 01jhj1k54OpenAlex

affiliations via OpenAlex

most citedPerdeuteration of poly[2-methoxy-5-(2'-ethylhexyloxy)-1,4-phenylenevinylene] (d-MEHPPV): control of microscopic charge-carrier spin-spin coupling and of magnetic-field effects in optoelectronic devices

18 citations

researchers with a paper here
  • A. Leung1 · h 4
  • A. Nahlawi1 · h 2
  • C. Boehme1 · h 26
  • Dani M. Stoltzfus1 · h 10
  • G. Joshi1 · h 9
  • H. Malissa1 · h 18
  • H. Popli1 · h 7
  • J. Lupton1 · h 57
  • M. Kavand1 · h 10
  • M. Y. Teferi1 · h 5
  • P. Burn1 · h 73
  • S. Atwood1 · h 1
collaborating institutions
  • Applied Photonics (United Kingdom)GB1 paper
  • Australian Nuclear Science and Technology OrganisationAU1 paper
  • Brisbane School of TheologyAU1 paper
  • Institut für Technische und Angewandte Physik (Germany)DE1 paper
  • National Deuteration FacilityAU1 paper
  • The University of QueenslandAU1 paper
  • University of RegensburgDE1 paper
  • University of UtahUS1 paper

1 paper

cond-mat.mtrl-sci2019★ 18 cited

Perdeuteration of poly[2-methoxy-5-(2'-ethylhexyloxy)-1,4-phenylenevinylene] (d-MEHPPV): control of microscopic charge-carrier spin-spin coupling and of magnetic-field effects in optoelectronic devices

Dani M. Stoltzfus, Gajadhar Joshi, Henna Popli +14

Control of the effective local hyperfine fields in a conjugated polymer, poly[2-methoxy-5-(2'-ethylhexyloxy)-1,4-phenylenevinylene] (MEHPPV), by isotopic engineering is reported. T…

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