2019
DOI: 10.1116/1.5088050
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Low temperature chemical vapor deposition of superconducting vanadium nitride thin films

Abstract: Superconducting thin films of vanadium nitride have been grown by low temperature (250–300 °C) chemical vapor deposition from tetrakis(dimethylamido)vanadium (TDMAV) and ammonia. For example, films grown from TDMAV (1 sccm Ar as carrier gas) and 7 mTorr ammonia at 300 °C are nanocrystalline (cubic δ-phase) with an average crystal size of 20 nm, have relatively low room temperature resistivities of 250 μΩ cm, and are superconducting with critical temperatures as high as 7.6 K (versus a bulk value of 9 K). The f… Show more

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Cited by 11 publications
(6 citation statements)
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“…A remote microwave plasma source consisting of a 9.5 mm i.d. Pyrex tube with a 2.45 GHz Evenson cavity located outside of the chamber 132 was used to generate atomic oxygen from research grade dioxygen gas (99.999%). For these experiments, the flow of O 2 was regulated with a mass flow controller to establish a partial pressure in the chamber of 1.5 mTorr.…”
Section: = P K M T T M (D /D ) /mentioning
confidence: 99%
“…A remote microwave plasma source consisting of a 9.5 mm i.d. Pyrex tube with a 2.45 GHz Evenson cavity located outside of the chamber 132 was used to generate atomic oxygen from research grade dioxygen gas (99.999%). For these experiments, the flow of O 2 was regulated with a mass flow controller to establish a partial pressure in the chamber of 1.5 mTorr.…”
Section: = P K M T T M (D /D ) /mentioning
confidence: 99%
“…6 TMNs also have been studied as potential superconducting materials 10,11 with considerable interest for electronic applications, such as integrated circuits and electromagnets. 12 In particular, VN offers a relatively high transition temperature that is experimentally shown to range from 2 to 9 K. 10…”
Section: Introductionmentioning
confidence: 99%
“…6 TMNs also have been studied as potential superconducting materials 10,11 with considerable interest for electronic applications, such as integrated circuits and electromagnets. 12 In particular, VN offers a relatively high transition temperature that is experimentally shown to range from 2 to 9 K. 10 A further growing application of TMNs is that of heterogeneous catalysis, in the search for new reaction systems with increased selectivity. In this respect, the majority of industrially relevant chemical processes still rely on catalysts based on noble metals for the synthesis of added-value chemical products.…”
Section: Introductionmentioning
confidence: 99%
“…VN holds excellent properties such as higher hardness, better wear resistance, good thermal and electrical conductivity, superior corrosion-and abrasion-resistant, perfect catalytic activity, and higher thermal and chemical stability. [106][107][108][109][110] A peculiar property of the VN films is that their oxidation makes them act like a solid lubricant. [111]…”
Section: Vnmentioning
confidence: 99%