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Abstract   Thermionic electron emission from low work-function phosphorus doped diamond films  
Paper   Koeck FAM, Nemanich RJ, Lazea A and Haenen K  
    DIAMOND AND RELATED MATERIALS in press  
    Digital Object Identifier 10.1016/j.diamond.2009.01.024  

Abstract   Low temperature onset for thermionic emitters based on nitrogen incorporated UNCD films  
Paper   Koeck FAM and Nemanich RJ  
    DIAMOND AND RELATED MATERIALS 18 (2009) 232–234  
    Digital Object Identifier 10.1016/j.diamond.2008.11.023  

AbstractPaper   Field penetration and its contribution to field enhanced thermionic electron emission from nanocrystalline diamond films  
    Koeck FAM and Nemanich RJ  
    DIAMOND AND RELATED MATERIALS, 15 (11-12): 2006-2009 NOV-DEC 2006  
    Digital Object Identifier 10.1016/j.diamond.2006.08.002  

Abstract  

Electron emission microscopy of nano-crystal graphitic films as high current density electron sources

 
Paper  

Koeck FAM, Obraztsov AN and Nemanich RJ

 
   

DIAMOND AND RELATED MATERIALS, 15 (4-8): 875-879 APR-AUG 2006

 
    Digital Object Identifier 10.1016/j.diamond.2005.12.051  

Abstract  

Photo and field electron emission microscopy, from sulfur doped nanocrystalline diamond films

 
Paper  

Koeck FAM, Zumer M, Nemanic V and Nemanich RJ

 
   

DIAMOND AND RELATED MATERIALS, 15 (4-8): 880-883 APR-AUG 2006

 
    Digital Object Identifier 10.1016/j.diamond.2006.01.008  

Abstract  

Emission characterization from nitrogen-doped diamond with respect to energy conversion

 
Paper  

Koeck FAM and Nemanich RJ

 
   

DIAMOND AND RELATED MATERIALS, 15 (2-3): 217-220 FEB-MAR 2006 

 
   

Digital Object Identifier 10.1016/j.diamond.2005.08.045

 

AbstractPaper  

Sulfur doped nanocrystalline diamond films as field enhancement based thermionic emitters and their role in energy conversion

 
   

Koeck FAM and Nemanich RJ

 
   

DIAMOND AND RELATED MATERIALS, 14 (11-12): 2051-2054 NOV-DEC 2005

 
    Digital Object Identifier 10.1016/j.diamond.2005.09.001  

Abstract  

Field enhanced thermionic electron emission from sulfur doped nanocrystalline diamond films

 
Paper  

Koeck FAM, Garguilo JM and Nemanich RJ

 
   

DIAMOND AND RELATED MATERIALS, 14 (3-7): 704-708 MAR-JUL 2005

 
    Digital Object Identifier 10.1016/j.diamond.2004.12.056  

Abstract  

On the thermionic emission from nitrogen-doped diamond films with respect to energy conversion

 
Paper  

Koeck FAM, Garguilo JM and Nemanich RJ

 
   

DIAMOND AND RELATED MATERIALS 13 (11-12): 2052-2055 NOV-DEC 2004

 
  Digital Object Identifier 10.1016/j.diamond.2004.06.027  

Abstract  

Spatial distribution of electron emission sites for sulfur doped and intrinsic nanocrystalline diamond films

 
Paper  

Koeck FAM, Garguilo JM, Nemanich RJ, et al.

 
   

DIAMOND AND RELATED MATERIALS 12 (3-7): 474-480 MAR-JUL 2003

 
    Digital Object Identifier 10.1016/S0925-9635(02)00365-5  

Abstract  

Enhanced low-temperature thermionic field emission from surface-treated N-doped diamond films

 
Paper  

Koeck FAM, Garguilo JM, Brown B, Nemanich RJ, et al.

 
   

DIAMOND AND RELATED MATERIALS 11 (3-6): 774-779 Sp. Iss. SI MAR-JUN 2002

 
    Digital Object Identifier 10.1016/S0925-9635(02)00006-7  

Abstract  

Imaging electron emission from diamond film surfaces: N-doped diamond vs. nanostructured diamond

 
Paper  

Koeck FAM, Garguilo JM and Nemanich RJ

 
   

DIAMOND AND RELATED MATERIALS 10 (9-10): 1714-1718 SEP-OCT 2001

 
    Digital Object Identifier 10.1016/S0925-9635(01)00401-0  
   

 
   
   
   
   
   
   
   
   
   
   
   
   
   
   
   
   
   
   
   
   
   

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