Nanonics SPM Probes
Nanonics probes
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Presentation
AFM Topography (left) & Transmission NSOM (right) of 30 nm gold balls (Scansize: 1x1 m)
AFM / NSOM Probes(transmission mode)
AFM / NSOM probe
Nanonics probes
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Polarized NSOM
Simultaneous polarized confocal/AFM/ Polarized NSOM of polyethylene thin film
AFM / NSOM Probes(reflection mode)
AFM / NSOM probe
5 m 5 m 5 m
Nanonics probes
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Collage AFM topography & Light Distribution of a
fiber lens
AFM / NSOM Probes (collection mode)
AFM / NSOM probe
Collage AFM topography & Light Distribution of a
diode laser
Nanonics probes
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AFM / NSOM Probes (reflection mode)Electrical Probes ( Resistance)
AFM (left) reflection NSOM (middle) & simultaneous spreading resistance image (right) of a chemically mechanically polished SRAM
AFM / Resistance probeAFM / NSOM probe
Nanonics probes
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AFM Topography of DNAImage size 900x900 nm,
z-range 2.5 nm
Glass AFM Probes
AFM / NSOM probe
AFM Topography of a Carbon nanotubeImage size 1600x9 1400 nm,
z-range 15 nm
Nanonics probes
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Deep Trench AFM Probes
Deep Trench AFM / NSOM probe
Schematic of deep trench AFM image
10 x 10 m AFM image of a 10 m deep/2 m wide trench
(Z-range 10 m)
1 x 1 m AFM image of the bottom of the deep trench
(Z-range 100 nm)
5 x 5 m X-Z scan of the sidewall of the deep trench
(Y-range 150 nm)
Schematic of side wall AFM image
X
Z
Nanonics probes
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Nanopipette Probes(chemical delivery)
Nanopipette probe
4x4 mm image o protein dots printed using a Nanopipette
34x34 mm image o protein lines printed using a
Nanopipette
Nanonics probes
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Defect before and after repair using laser ablation
Polished Nanopipette Probes(laser ablation)
Nanonics probes
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Glass Insulated Nanowire Probes
Single wire Nanoelectrode
Coaxial Nanoelectrode
Dual wire Nanoelectrode
Nanonics probes
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Thermal Probes(Thermocouple or Thermal Resistance)
AFM / Thermoresistive probe
AFM / Thermocouple probe
Thermal image of cleaved multimode fiber (IR light was
colupled into the fiber)
1 x 4 m AFM (top) and thermal (bottom) image of
500 nm spheres.
Nanonics probes
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Optical Access to the sample
Nanonics Probe Standard Silicon Probe
Nanonics probes allow free optical access to the sample where it is imaged with AFM.
Standard Silicon probes shadow the exact space on the sample where an AFM image is taken.
Nanonics probes
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Liquid cell operation
Schematic view of liquid environment use of Nanonics probes.
Nanonics probes are suitable for use in a liquid environment using:
•Contact mode imaging
• Tapping mode imaging
7x7 m images of GFP labeled yeast cells. (AFM/ NSOM/ fluorescence)
Nanonics probes
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Probe Characteristics
All probes are available either cantilevered or straight.
Dimensions of the cantilevered probes:
All probes are available as Contact Mode or Intermittent Contact Mode probes
All probes are available as Deep Trench probes.
Custom made probes are also available.
300 – 1000 m
30 – 500 m50 – 1500 m
•Material: glass / Quartz glass •Frequency range:50 – 390 kHz (20 – 350kHz for AFM probes)• Wavelength range for NSOM probes: 200 – 1500 nm• Aperture size for NSOM probes: 50 – 5000 nm• Aperture size for Nanopipettes: >20 nm• Metal cores for electrical probes: Pt, Au, Ag• Thermal resistors sensitivity: <10 milli-degree (up to 700°C)
Nanonics probes
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