#  Experimental techniques -- calorimetry  

 



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198\. H.G. Zolla and F. Spaepen, "Calorimetric and magnetic determination of the interfacial enthalpy and heat of mixing in Ag(Ni) alloys," Acta Materialia, 47:2391-2400 (1999). \[B11,CM25\]  
  
153\. L.C. Chen and F. Spaepen, "Grain growth in microcrystalline materials studied by calorimetry," Nanostructured Materials 1:59-64 (1992). \[B8,CM19\]

152\. S. Roorda, J.S. Custer, W.C. Sinke, J.M. Poate, D.C. Jacobson, A. Polman and F. Spaepen, "Structural relaxation in amorphous silicon and the role of network defects," Nuclear Instruments and Methods B59/60:344-352 (1991). \[CM19\]

151\. L.C. Chen and F. Spaepen, "A comment on the use of calorimetry for the determination of the structure of amorphous materials," Philosophical Magazine B 63:585-586 (1991). \[C19,B8,J\]

149\. S. Roorda, W.C. Sinke, J.M. Poate, D.C. Jacobson, S. Dierker, B.S. Dennis, D.J. Eaglesham, F. Spaepen and P. Fuoss, "Structural relaxation and defect annihilation in pure amorphous silicon," Physical Review B 44:3702-3725 (1991). \[CM19\]

142\. L.C. Chen and F. Spaepen, "How to use calorimetry to distinguish a microcrystalline structure from an amorphous structure," Proceedings of the Seventh International Conference on Rapidly Quenched Metals, Materials Science and Engineering, A133:342-345 (1991). \[C19,B8,J\]

139\. L.C. Chen and F. Spaepen, "Analysis of calorimetric measurements of grain growth," Journal of Applied Physics 69:679-688 (1991). \[C19,B8,J\]  
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135\. S. Roorda, J.M. Poate, D.C. Jacobson, D.J. Eaglesham, B.S. Dennis, S. Dierker, W.C. Sinke and F. Spaepen, "Point defect populations in amorphous and crystalline silicon," Solid State Communications 75:197-200 (1990). \[C19\]

123\. L.C. Chen, F. Spaepen, J.L. Robertson, S.C. Moss, and K. Hiraga, "A structural and calorimetric study of the transformations in sputtered Al-Mn and Al-Mn-Si films," Journal of Materials Research 5:1871-1879 (1990). \[C19\]

122\. E.P. Donovan, F. Spaepen, J.M. Poate and D.C. Jacobson, "Homogeneous and interfacial heat releases in amorphous silicon," Applied Physics Letters 55:1516-1518 (1989). \[C19\]

121\. F. Spaepen and C.V. Thompson, "Calorimetric studies of reactions in thin films and multilayers," Applied Surface Science 38:1-12 (1989). \[B8,C19\]

116\. F. Spaepen, "A new look at amorphous vs. microcrystalline structure," Materials Research Society Symposia Proceedings (Pittsburgh, PA: Materials Research Society, 1989) 132:127-136. \[B8,C19\]

111\. L.C. Chen and F. Spaepen, "Calorimetric evidence for the micro-quasicrystalline structure of 'amorphous' Al-transition metal alloys," Nature 336:366-368 (1988). \[C19,J\]

61\. E.P. Donovan, F. Spaepen, D. Turnbull, J.M. Poate and D.C. Jacobson, "Calorimetric studies of crystallization and relaxation of amorphous Si and Ge prepared by ion implantation," Journal of Applied Physics 57:1795-1804 (1985). \[C15\]

48\. E.P. Donovan, F. Spaepen, D. Turnbull, J.M. Poate and D.C. Jacobson, "Heat of crystallization and melting point of amorphous silicon," Applied Physics Letters 42:698-700 (1983). \[C15\]