The structural and luminescent properties of nanocrystalline silicon produced by high-energy ball milling of Si single crystals have been investigated using transmission electron microscopy (TEM), x-ray diffraction (XRD) and cathodoluminescence (CL) in a scanning electron microscope. XRD measurements show that the average size of the nanocrystals in the milled samples is about 30 nm but TEM reveals a wide range of size distribution including crystallites with the dimension of few nanometres. Ball milling causes the appearance of a visible luminescence band at 1.61 eV, attributed to the presence of nanocrystals, and a near-infrared band peaked at about 0.79 eV which is suggested to be related to the high density of extended defects formed du...
Two sources of room temperature visible luminescence are identified from SiO2 films containing ion b...
Analysis of low-temperature photoluminescence measurements performed on single silicon nanocrystals ...
Amorphous silicon nanomaterial is isotropic on the macroscale and can effectively inhibit the expans...
Mechanical milling is a technique extensively used to prepare nanocrystalline metallic materials but...
The introduction of optically active defects (such as atomic clusters, dislocations, precipitates) i...
Near-edge and extended x-ray absorption fine structure measurements from a wide variety of H-passiva...
Silicon is the backbone of semiconductor industry. It is the building block of most of the modern s...
New characterization techniques based on the use of local luminescence probes enable to study the pr...
Si nanocrystals in thermal oxide films ( similar to 250 nm) were fabricated by 100 keV Si ion implan...
Silicon is an indirect band gap material and therefore its luminescent properties are poor. For very...
Luminescence emission of nanocrystalline silicon films has been studied by cathodoluminescence (CL) ...
International audienceWe present results on the photoluminescence PL properties of silicon nanocryst...
Luminescent silicon nanocrystals (SiNCs) have attracted scientific interest for their potential use ...
Commercially prepared (100) oriented silicon wafers were oxidized to produce SiO2 layers of 5 μm, 97...
Abstract. We investigated the optical properties of silicon clusters and Si nanocrystallites using p...
Two sources of room temperature visible luminescence are identified from SiO2 films containing ion b...
Analysis of low-temperature photoluminescence measurements performed on single silicon nanocrystals ...
Amorphous silicon nanomaterial is isotropic on the macroscale and can effectively inhibit the expans...
Mechanical milling is a technique extensively used to prepare nanocrystalline metallic materials but...
The introduction of optically active defects (such as atomic clusters, dislocations, precipitates) i...
Near-edge and extended x-ray absorption fine structure measurements from a wide variety of H-passiva...
Silicon is the backbone of semiconductor industry. It is the building block of most of the modern s...
New characterization techniques based on the use of local luminescence probes enable to study the pr...
Si nanocrystals in thermal oxide films ( similar to 250 nm) were fabricated by 100 keV Si ion implan...
Silicon is an indirect band gap material and therefore its luminescent properties are poor. For very...
Luminescence emission of nanocrystalline silicon films has been studied by cathodoluminescence (CL) ...
International audienceWe present results on the photoluminescence PL properties of silicon nanocryst...
Luminescent silicon nanocrystals (SiNCs) have attracted scientific interest for their potential use ...
Commercially prepared (100) oriented silicon wafers were oxidized to produce SiO2 layers of 5 μm, 97...
Abstract. We investigated the optical properties of silicon clusters and Si nanocrystallites using p...
Two sources of room temperature visible luminescence are identified from SiO2 films containing ion b...
Analysis of low-temperature photoluminescence measurements performed on single silicon nanocrystals ...
Amorphous silicon nanomaterial is isotropic on the macroscale and can effectively inhibit the expans...