A combination of two methods of chemical vapor deposition (CVD) of diamond films, microwave plasma–assisted (MW CVD) and hot filament (HF CVD), was used for the growth of 100 µm-thick polycrystalline diamond (PCD) layers on Si substrates. The bow of HF CVD and MW CVD films showed opposite convex\concave trends; thus, the combined material allowed reducing the overall bow by a factor of 2–3. Using MW CVD for the growth of the initial 25 µm-thick PCD layer allowed achieving much higher thermal conductivity of the combined 110 µm-thick film at 210 W/m·K in comparison to 130 W/m·K for the 93 µm-thick pure HF CVD film
{100} Facet-terminated nanocrystalline and {100} textured large-grained polycrystalline diamond (PCD...
Diamond films have been synthesized on Si (100) substrate by hot-filamet chimical vapor deposition (...
Multi-layered polycrystalline diamond (PCD) films were synthesized using microwave plasma-assisted c...
Polycrystalline diamond (PCD) films have been grown on silicon substrates by thermally activated (ho...
A diamond film was synthesized by chemical vapor deposition, where a hot graphite plate was used to ...
© 2021 Elsevier LtdA diamond film was synthesized by chemical vapor deposition, where a hot graphite...
In the field of activated chemical vapor deposition (CVD) of polycrystalline diamond films, hot-fila...
One of the key issues for market introduction of CVD diamond technology is the economic fabrication ...
Includes bibliographical references (pages [124]-128)Chemical vapor deposition (CVD) techniques to g...
Diamond growth was carried out using various kinds of substrates and substrate holders in convention...
Diamond growth was carried out using various kinds of substrates and substrate holders in convention...
Deposition of diamond thin films on non-diamond substrates at low pressures ( \u3c 760 torr) and low...
Deposition of diamond thin films on non-diamond substrates at low pressures ( \u3c 760 torr) and low...
Deposition of diamond thin films on non-diamond substrates at low pressures ( \u3c 760 torr) and low...
In this paper, we report on microwave CVD deposition of high quality polycrystalline diamond and on ...
{100} Facet-terminated nanocrystalline and {100} textured large-grained polycrystalline diamond (PCD...
Diamond films have been synthesized on Si (100) substrate by hot-filamet chimical vapor deposition (...
Multi-layered polycrystalline diamond (PCD) films were synthesized using microwave plasma-assisted c...
Polycrystalline diamond (PCD) films have been grown on silicon substrates by thermally activated (ho...
A diamond film was synthesized by chemical vapor deposition, where a hot graphite plate was used to ...
© 2021 Elsevier LtdA diamond film was synthesized by chemical vapor deposition, where a hot graphite...
In the field of activated chemical vapor deposition (CVD) of polycrystalline diamond films, hot-fila...
One of the key issues for market introduction of CVD diamond technology is the economic fabrication ...
Includes bibliographical references (pages [124]-128)Chemical vapor deposition (CVD) techniques to g...
Diamond growth was carried out using various kinds of substrates and substrate holders in convention...
Diamond growth was carried out using various kinds of substrates and substrate holders in convention...
Deposition of diamond thin films on non-diamond substrates at low pressures ( \u3c 760 torr) and low...
Deposition of diamond thin films on non-diamond substrates at low pressures ( \u3c 760 torr) and low...
Deposition of diamond thin films on non-diamond substrates at low pressures ( \u3c 760 torr) and low...
In this paper, we report on microwave CVD deposition of high quality polycrystalline diamond and on ...
{100} Facet-terminated nanocrystalline and {100} textured large-grained polycrystalline diamond (PCD...
Diamond films have been synthesized on Si (100) substrate by hot-filamet chimical vapor deposition (...
Multi-layered polycrystalline diamond (PCD) films were synthesized using microwave plasma-assisted c...