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Journal of Research of the National Bureau of Standards. Section A, Physics and Chemistry|December 14, 2019
Energy Dependence of the D-D Reaction Cross Section at Low EnergiesJ G Brennan, J J CoyneInorganic Chemistry|January 17, 1996
Pyridineselenolate Complexes of Tin and Lead: Sn(2-SeNC(5)H(4))(2), Sn(2-SeNC(5)H(4))(4), Pb(2-SeNC(5)H(4))(2), and Pb(3-Me(3)Si-2-SeNC(5)H(3))(2). Volatile CVD Precursors to Group IV-Group VI SemiconductorsYifeng Cheng, T. J. Emge, J. G. BrennanInorganic Chemistry|December 4, 1996
Pyridineselenolate Complexes of Copper and Indium: Precursors to CuSe(x)() and In(2)Se(3)Y. Cheng, T. J. Emge, J. G. BrennanJournal of Texture Studies|April 4, 2017
SOME EXPERIENCES WITH THE GENERAL FOODS TEXTUROMETERJ G Brennan, R Jowitt, O A MughsiInorganic Chemistry|October 24, 2001
Octanuclear Lanthanide Sulfido Clusters: Synthesis, Structure, and Coordination ChemistryJonathan H. Melman, Thomas J. Emge, J. G. BrennanJournal of the American Chemical Society|November 29, 2001
Chalcogen-rich lanthanide clusters: cluster reactivity and the influence of ancillary ligands on structureA Y Kornienko, T J Emge, J G BrennanInorganic Chemistry|February 24, 2001
Heteroleptic lanthanide compounds with chalcogenolate ligands: reduction of PhNNPh/PhEEPh (E = Se or Te) mixtures with Ln (Ln = Ho, Er, Tm, Yb). Thermolysis can give LnN or LnEA Kornienko, D Freedman, T J Emge, et al.Inorganic Chemistry|January 16, 2003
Divalent samarium compounds with heavier chalcogenolate (EPh; E = Se, Te) ligandsD Freedman, A Kornienko, T J Emge, et al.Inorganic Chemistry|October 24, 2001
Early- and Late-Lanthanide Pyridinethiolates: Synthesis, Redox Stability, and StructureM. Berardini, Jongseong Lee, Deborah Freedman, et al.Pageof 1