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Home Cell Biology Products Clark Capillary Glass Aluminosilicate Clark Capillary Glass with Filament


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Aluminosilicate Clark Capillary Glass with Filament

In recent years there has been a developing interest in fabricating micropipettes from aluminosilicate glass. Like silicon, aluminum combines with oxygen to form tetrhbedral networks and the Al-O bonds are very strong. In comparison with borosilicate glass, aluminosilicate provides increased hardness, improved chemical durability, reduced electrical conductivity and a lower coefficient of thermal expansion. Also, while the original ratio of a borosilicate capillary’s inner to outer diameter will remain unchanged over its total taper length, aluminosilicate glass demonstrates a marked tendency to thin out as it is drawn to a tip. This behavior allows extremely fine tips to be formed.
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Item Listing Full Description Specifications Journal Articles
Item# Description
300110 Aluminosilicate Capillaries with Filament, 1.0 mm OD, 0.53 mm ID, 75 mm L, Pkg. of 500
300108 Aluminosilicate Capillaries with Filament, 1.0 mm OD, 0.53 mm ID, 100 mm L, Pkg. of 500
300109 Aluminosilicate Capillaries with Filament, 1.0 mm OD, 0.53 mm ID, 150 mm L, Pkg. of 500

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Full Description Back to Top


In recent years there has been a developing interest in fabricating micropipettes from aluminosilicate glass. Like silicon, aluminum combines with oxygen to form tetrhbedral networks and the Al-O bonds are very strong. In comparison with borosilicate glass, aluminosilicate provides increased hardness, improved chemical durability, reduced electrical conductivity and a lower coefficient of thermal expansion. Also, while the original ratio of a borosilicate capillary’s inner to outer diameter will remain unchanged over its total taper length, aluminosilicate glass demonstrates a marked tendency to thin out as it is drawn to a tip. This behavior allows extremely fine tips to be formed.

For more information, see:
1. Na/H Exchange, Vaughan-Jones, RD.; Grinstein Press, Ch.1 p.8;
2. Effects of intracellular and extracellular pH on contraction in isolated
mammalian cardiac muscle, Bountra, C. & Vaughan-Jones, R.D.; Journal of Physiology Volume 418 (1989)


Specifications Back to Top

Specifications300110300108300109
Glass TypeAluminosilicateAluminosilicateAluminosilicate
Glass Composition51.9% SiO2, 22.0% Al2O3, 7.8% P2O5, 7.7% MgO, 6.9% CaO, 2.1% B2O3, 1.4% BaO and 0.2% As2O351.9% SiO2, 22.0% Al2O3, 7.8% P2O5, 7.7% MgO, 6.9% CaO, 2.1% B2O3, 1.4% BaO and 0.2% As2O351.9% SiO2, 22.0% Al2O3, 7.8% P2O5, 7.7% MgO, 6.9% CaO, 2.1% B2O3, 1.4% BaO and 0.2% As2O3
Glass Softening Temperature Metric950 °C950 °C950 °C
Dielectric Constant6.26.26.2
OD Metric1.0 mm1.0 mm1.0 mm
ID Metric0.53 mm0.53 mm0.53 mm
Length Metric75 mm100 mm150 mm

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Journal Articles Back to Top

Displaying 1 to 8 of 8results for Aluminosilicate Clark Capillary Glass with Filament  

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100% Login to view HB09 Two-Photon Imaging of Capillary Blood Flow in Olfactory Bulb Glomeruli.pdf
[989 KB]
Two-photon imaging of capillary blood flow in olfactory bulb golmeruli
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[1.1 MB]
Two-photon imaging of capillary blood flow in olfactory bulb golmeruli
38% Login to view PP46PR 1.PDF
[295 KB]
Union of capillary high-performance liquid chromatography
28% Login to view Presynaptic Calcium Stores Modulate Afferent Release.pdf
[764 KB]
Presynaptic Calcium Stores Modulate Afferent Release in Vestibular Hair Cells
28% Login to view Regulation of ROMK by Extracellular Cations.PDF
[712 KB]
Regulation of ROMK by Extracellular Cations
20% Login to view PP37 Model 11 Syringe Pump.pdf
[84 KB]
Analysis of Charged Cyclodextrin Derivatives
20% Login to view OT08 capillaries.pdf
[758 KB]
Presynaptic Calcium Stores Modulate Afferent Release in Vestibular Hair Cells
18% Login to view PP45 Precision Alignment Packaging for Microsystems with Multiple Fluid Connections.pdf
[301 KB]
Union of capillary high-performance liquid chromatography
   

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