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91探花
CMP
Credit: Jack Hobhouse

Dr. Brian Wieliczka

Senior Researcher

Sub department

  • Condensed Matter Physics

Research groups

  • Snaith group
brian.wieliczka@physics.ox.ac.uk
Robert Hooke Building
  • About
  • Publications

Cadmium Bis(phenyldithiocarbamate) as a Nanocrystal Shell-Growth Precursor.

Inorganic chemistry 56:21 (2017) 12920-12929

Authors:

Calynn E Morrison, Fudong Wang, Nigam P Rath, Brian M Wieliczka, Richard A Loomis, William E Buhro

Abstract:

Cadmium bis(phenyldithiocarbamate) [Cd(PTC)2] is prepared and structurally characterized. The compound crystallizes in the monoclinic space group P21/n. A one-dimensional polymeric structure is adopted in the solid state, having bridging PTC ligands and 6-coordinate pseudo-octahedral Cd atoms. The compound is soluble in DMSO, THF, and DMF and insoluble in EtOH, MeOH, CHCl3, CH2Cl2, and toluene. {CdSe[n-octylamine]0.53} quantum belts and Cd(PTC)2 react to deposit epitaxial CdS shells on the nanocrystals. With an excess of Cd(PTC)2, the resulting thick shells contain spiny CdS nodules grown in the Stranski-Krastanov mode. Stoichiometric control affords smooth, monolayer CdS shells. A base-catalyzed reaction pathway is elucidated for the conversion of Cd(PTC)2 to CdS, which includes phenylisothiocyanate and aniline as intermediates, and 1,3-diphenylthiourea as a final product.

Assessing the Opportunities of Spectral Shaping by Quantum Cutting for Perovskite/Silicon Tandem Solar Cells

ACS Energy Letters American Chemical Society

Authors:

Brian Wieliczka, Jakob M枚bs, Nakita Noel, Henry Snaith

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