Date of download: 9/17/2016 Copyright © 2016 SPIE. All rights reserved. SEM images (a) of a diamond polycrystalline film obtained by the technique of plasmochemical deposition on a silicon substrate and (b) of the same film after thermal oxidation in air. Figure Legend: From: Single-crystal diamond pyramids: synthesis and application for atomic force microscopy J. Nanophoton. 2015;10(1): doi: /1.JNP
Date of download: 9/17/2016 Copyright © 2016 SPIE. All rights reserved. The schemes (a) of electrostatic spraying installation: 1—direction of movement of the piston, 2—syringe with glue, 3—epoxy adhesive, 4—needle to spray, 5—spraying of the adhesive, 6—high-voltage power supply, 7—substrate, 8—cantilevers and (b) of attaching of the diamond needles to the beam probes. Figure Legend: From: Single-crystal diamond pyramids: synthesis and application for atomic force microscopy J. Nanophoton. 2015;10(1): doi: /1.JNP
Date of download: 9/17/2016 Copyright © 2016 SPIE. All rights reserved. Optical image of the cantilever with fixed diamond tip. Figure Legend: From: Single-crystal diamond pyramids: synthesis and application for atomic force microscopy J. Nanophoton. 2015;10(1): doi: /1.JNP
Date of download: 9/17/2016 Copyright © 2016 SPIE. All rights reserved. The TEM images of diamond tips. Figure Legend: From: Single-crystal diamond pyramids: synthesis and application for atomic force microscopy J. Nanophoton. 2015;10(1): doi: /1.JNP
Date of download: 9/17/2016 Copyright © 2016 SPIE. All rights reserved. AFM images (a) of the surface of highly oriented pyrolytic graphite, (b) of the surface of gallium selenide (GaSe) crystals having a layered structure obtained by the new manufactured diamond probes, and (c) of DNA of the same sample obtained with a standard silicon probe (a frame size of 1 μm×1 μm) and with a diamond probe we made (a frame size of 750 nm×750 nm). Figure Legend: From: Single-crystal diamond pyramids: synthesis and application for atomic force microscopy J. Nanophoton. 2015;10(1): doi: /1.JNP