Micro-Raman spectroscopy of tissue samples for oral pathology follow-up monitoring

Author(s):  
I. Delfino ◽  
C. Camerlingo ◽  
F. Zenone ◽  
G. Perna ◽  
V. Capozzi ◽  
...  
2014 ◽  
Author(s):  
Carlo Camerlingo ◽  
Fabrizia d'Apuzzo ◽  
V. Grassia ◽  
L. Perillo ◽  
Maria Lepore

2007 ◽  
Author(s):  
F. Zenone ◽  
M. Lepore ◽  
G. Perna ◽  
P. Carmone ◽  
I. Delfino ◽  
...  

Sensors ◽  
2011 ◽  
Vol 11 (9) ◽  
pp. 8309-8322 ◽  
Author(s):  
Carlo Camerlingo ◽  
Ines Delfino ◽  
Giuseppe Perna ◽  
Vito Capozzi ◽  
Maria Lepore

1998 ◽  
Author(s):  
I. De Wolf ◽  
G. Groeseneken ◽  
H.E. Maes ◽  
M. Bolt ◽  
K. Barla ◽  
...  

Abstract It is shown, using micro-Raman spectroscopy, that Shallow Trench Isolation introduces high stresses in the active area of silicon devices when wet oxidation steps are used. These stresses result in defect formation in the active area, leading to high diode leakage currents. The stress levels are highest near the outer edges of line structures and at square structures. They also increase with decreasing active area dimensions.


2021 ◽  
Vol 37 ◽  
pp. 102910
Author(s):  
Jhih-Huei Liu ◽  
Weiying Ke ◽  
Ming-chorng Hwang ◽  
Kuang Yu Chen

Author(s):  
D. J. Bailey ◽  
M. C. Stennett ◽  
J. Heo ◽  
N. C. Hyatt

AbstractSEM–EDX and Raman spectroscopy analysis of radioactive compounds is often restricted to dedicated instrumentation, within radiological working areas, to manage the hazard and risk of contamination. Here, we demonstrate application of WetSEM® capsules for containment of technetium powder materials, enabling routine multimodal characterisation with general user instrumentation, outside of a controlled radiological working area. The electron transparent membrane of WetSEM® capsules enables SEM imaging of submicron non-conducting technetium powders and acquisition of Tc Lα X-ray emission, using a low cost desktop SEM–EDX system, as well as acquisition of good quality μ-Raman spectra using a 532 nm laser.


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