Thin nanoporous metal-insulator-metal membranes


Autoria(s): Aramesh, Morteza; Djalalian-Assl, Amir; Aghili Yajadda, Mir Massoud; Prawer, Steven; Ostrikov, Kostya
Data(s)

05/02/2016

Resumo

Insulating nanoporous materials are promising platforms for soft-ionizing membranes; however, improvement in fabrication processes and the quality and high breakdown resistance of the thin insulator layers are needed for high integration and performance. Here, scalable fabrication of highly porous, thin, silicon dioxide membranes with controlled thickness is demonstrated using plasma-enhanced chemical-vapor-deposition. The fabricated membranes exhibit good insulating properties with a breakdown voltage of 1 × 107 V/cm. Our calculations suggest that the average electric field inside a nanopore of the membranes can be as high as 1 × 106 V/cm; sufficient for ionization of wide range of molecules. These metal–insulator–metal nanoporous arrays are promising for applications such soft ionizing membranes for mass spectroscopy.

Identificador

http://eprints.qut.edu.au/93882/

Publicador

American Chemical Society

Relação

DOI:10.1021/acsami.5b11182

Aramesh, Morteza, Djalalian-Assl, Amir, Aghili Yajadda, Mir Massoud, Prawer, Steven, & Ostrikov, Kostya (2016) Thin nanoporous metal-insulator-metal membranes. ACS applied materials & interfaces, 8(7), pp. 4292-4297.

Fonte

School of Chemistry, Physics & Mechanical Engineering; Institute for Future Environments; Science & Engineering Faculty

Palavras-Chave #nanoporous materials #soft ionizing membrane (SIM) #plasma-enhanced chemical-vapor-deposition #thin films #dielectric breakdown;
Tipo

Journal Article