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co2-laser-based pipette puller p-2000  (Sutter Instrument Company)


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    Sutter Instrument Company co2-laser-based pipette puller p-2000
    Co2 Laser Based Pipette Puller P 2000, supplied by Sutter Instrument Company, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/co2+laser-based+pipette+puller+p-2000/micropipette+puller+p+97/pm39257382__nn4c09848_si_001-14-27-31
    Average 90 stars, based on 1 article reviews
    co2-laser-based pipette puller p-2000 - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Concentration Assay:

    Article Title: Nonlinear dependence of the ion current rectification factor on bias voltage in conical nanopipettes
    Article Snippet: Article history: Received 25 February 2016 Received in revised form 8 April 2016 Accepted 15 April 2016 Available online xxxx Ion current rectification (ICR), which is the departure of the experimentally measured current-voltage curves from ohmic behavior, has recently drawn intensive interests from both a fundamental point of view and microfluidic-based applications.. In this case, the rectification factor (RF), which is defined as the absolute value of the quotient between the currents recorded for one voltage polarity and the currents recorded for the same absolute value of voltage at the opposite polarity, is one of the most important parameters to describe the rectification behavior.. Herein, we interestingly observed that RF is strongly dependent on the bias voltage from both the experimental and theoretically simulated results, and this dependence exhibits nonlinear deviation with increasing the rectification degree.

    Article Title: Measurement of ion currents through porous membranes with scanning ion conductance microscopy.
    Article Snippet: Scanning ion conductance microscopy (SICM) was used to interrogate ion currents emanating from nanometerscale pores of a polymer membrane.. The transport activity of individual pores was measured by examining ion current images and corresponding topographic images recorded simultaneously.. Localized ion currents over individual nanopores were generated by introducing a concentration difference between the upper and lower chambers of a diffusion cell.

    Article Title: Nanopipettes: probes for local sample analysis †Electronic supplementary information (ESI) available. See DOI: 10.1039/c5sc00668f Click here for additional data file.
    Article Snippet: Quartz capillaries with 0.7-mm inner diameter (I.D.) and 1.0-mm outer diameter (O.D.) were used to fabricate ~150 nm and ~250 nm pipettes with a CO2 laser-based pipette puller (P-2000, Sutter Instrument, Novato, CA).

    Article Title: A covalent organic framework nanosheet-nanochannel composite with signal amplification strategy for electrochemical enantioselective recognition.
    Article Snippet: Recognition and separation of chiral isomers are of great importance in both industrial and biological applications.. However, owing to identical molecular formulas and chemical properties of enantiomers, signal transduction and amplification are still two major challenges in chiral sensing.. In this study, we developed an enantioselective device by integrating chiral covalent organic framework nanosheets (CONs) with nanochannels for sensitive identification and quantification of enantiomers.

    Transferring:

    Article Title: Nonlinear dependence of the ion current rectification factor on bias voltage in conical nanopipettes
    Article Snippet: Article history: Received 25 February 2016 Received in revised form 8 April 2016 Accepted 15 April 2016 Available online xxxx Ion current rectification (ICR), which is the departure of the experimentally measured current-voltage curves from ohmic behavior, has recently drawn intensive interests from both a fundamental point of view and microfluidic-based applications.. In this case, the rectification factor (RF), which is defined as the absolute value of the quotient between the currents recorded for one voltage polarity and the currents recorded for the same absolute value of voltage at the opposite polarity, is one of the most important parameters to describe the rectification behavior.. Herein, we interestingly observed that RF is strongly dependent on the bias voltage from both the experimental and theoretically simulated results, and this dependence exhibits nonlinear deviation with increasing the rectification degree.

    Article Title: Measurement of ion currents through porous membranes with scanning ion conductance microscopy.
    Article Snippet: Scanning ion conductance microscopy (SICM) was used to interrogate ion currents emanating from nanometerscale pores of a polymer membrane.. The transport activity of individual pores was measured by examining ion current images and corresponding topographic images recorded simultaneously.. Localized ion currents over individual nanopores were generated by introducing a concentration difference between the upper and lower chambers of a diffusion cell.

    Article Title: Nanopipettes: probes for local sample analysis †Electronic supplementary information (ESI) available. See DOI: 10.1039/c5sc00668f Click here for additional data file.
    Article Snippet: Quartz capillaries with 0.7-mm inner diameter (I.D.) and 1.0-mm outer diameter (O.D.) were used to fabricate ~150 nm and ~250 nm pipettes with a CO2 laser-based pipette puller (P-2000, Sutter Instrument, Novato, CA).

    Article Title: A covalent organic framework nanosheet-nanochannel composite with signal amplification strategy for electrochemical enantioselective recognition.
    Article Snippet: Recognition and separation of chiral isomers are of great importance in both industrial and biological applications.. However, owing to identical molecular formulas and chemical properties of enantiomers, signal transduction and amplification are still two major challenges in chiral sensing.. In this study, we developed an enantioselective device by integrating chiral covalent organic framework nanosheets (CONs) with nanochannels for sensitive identification and quantification of enantiomers.



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