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single-walled carbon nanotubes (swcnts) synthesized from high-pressure carbon monoxide (hipco)  (Hipco Inc)

 
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    Hipco Inc single-walled carbon nanotubes (swcnts) synthesized from high-pressure carbon monoxide (hipco)
    Single Walled Carbon Nanotubes (Swcnts) Synthesized From High Pressure Carbon Monoxide (Hipco), supplied by Hipco Inc, 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/swcnts+hipco/carbon+nanotubes/pm40205498-226-1-9
    Average 90 stars, based on 1 article reviews
    single-walled carbon nanotubes (swcnts) synthesized from high-pressure carbon monoxide (hipco) - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Expressing:

    Article Title: Restricted adsorption of carbon dioxide gas in fluorinated single-walled carbon nanotubes
    Article Snippet: Single-walled carbon nanotubes were fluorinated between 298 and 473K using elemental F2, and their adsorption properties were investigated through N2 and CO2 adsorption measurements.. Interestingly, a low-pressure adsorption/desorption hysteresis phenomenon was observed for the CO2 adsorption/desorption isotherms of the fluorinated nanotubes.. This remarkable adsorption/ desorption hysteresis may be attributed to restricted access to the inner pores of the nanotubes due to the presence of fluorinated pore gates.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: SWCNTs (HiPco) were purified from Fe residues by using Sc-CO2 as a solvent [587].

    Article Title: Review of Sorted Metallic Single‐Walled Carbon Nanotubes
    Article Snippet: DOI: 10.1002/admi.202002106 applications, the bandgap dependence, so-called chirality of the nanotubes, often plays a key role; thus, studies on SWCNTs have been conducted to synthesize or purify the nanotubes with a focus on achieving monochirality.. Since the discovery of CNTs in 1991 by Iijima et al.,[10] significant progress has been achieved with regard to the growth of SWCNTs.. These include arc discharge, laser ablation, and chemical vapor deposition (CVD).

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separablity of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separability of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: Chlorination at 1000 °C was used to purify SWCNTs (HiPco) in order to utilize them as a platform to deliver therapeutics to pancreatic cancer cells.

    Article Title: Reductive dissolution of supergrowth carbon nanotubes for tougher nanocomposites by reactive coagulation spinning.
    Article Snippet: The result contrasts with the dissolution of typical micron-length SWCNTs (Tuball, Elicarb and HiPco) upon simple stirring overnight.

    Article Title: Physical modification of carbon nanotubes with a dendrimer bearing terminal mercaptoundecahydrododecaborates (Na 2 B 12 H 11 S)
    Article Snippet: Given the thickness of the pristine SWCNTs (HiPco) used in this study (0.8- 1.2 nm), it seems likely that individual nanotubes are wrapped by dendrimer(SB12)4 F I G U R E 1 A, Schematic illustration of the dendrimers used in this study.

    Produced:

    Article Title: Restricted adsorption of carbon dioxide gas in fluorinated single-walled carbon nanotubes
    Article Snippet: Single-walled carbon nanotubes were fluorinated between 298 and 473K using elemental F2, and their adsorption properties were investigated through N2 and CO2 adsorption measurements.. Interestingly, a low-pressure adsorption/desorption hysteresis phenomenon was observed for the CO2 adsorption/desorption isotherms of the fluorinated nanotubes.. This remarkable adsorption/ desorption hysteresis may be attributed to restricted access to the inner pores of the nanotubes due to the presence of fluorinated pore gates.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: SWCNTs (HiPco) were purified from Fe residues by using Sc-CO2 as a solvent [587].

    Article Title: Review of Sorted Metallic Single‐Walled Carbon Nanotubes
    Article Snippet: DOI: 10.1002/admi.202002106 applications, the bandgap dependence, so-called chirality of the nanotubes, often plays a key role; thus, studies on SWCNTs have been conducted to synthesize or purify the nanotubes with a focus on achieving monochirality.. Since the discovery of CNTs in 1991 by Iijima et al.,[10] significant progress has been achieved with regard to the growth of SWCNTs.. These include arc discharge, laser ablation, and chemical vapor deposition (CVD).

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separablity of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separability of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: Chlorination at 1000 °C was used to purify SWCNTs (HiPco) in order to utilize them as a platform to deliver therapeutics to pancreatic cancer cells.

    Article Title: Reductive dissolution of supergrowth carbon nanotubes for tougher nanocomposites by reactive coagulation spinning.
    Article Snippet: The result contrasts with the dissolution of typical micron-length SWCNTs (Tuball, Elicarb and HiPco) upon simple stirring overnight.

    Article Title: Physical modification of carbon nanotubes with a dendrimer bearing terminal mercaptoundecahydrododecaborates (Na 2 B 12 H 11 S)
    Article Snippet: Given the thickness of the pristine SWCNTs (HiPco) used in this study (0.8- 1.2 nm), it seems likely that individual nanotubes are wrapped by dendrimer(SB12)4 F I G U R E 1 A, Schematic illustration of the dendrimers used in this study.

    Injection:

    Article Title: Restricted adsorption of carbon dioxide gas in fluorinated single-walled carbon nanotubes
    Article Snippet: Single-walled carbon nanotubes were fluorinated between 298 and 473K using elemental F2, and their adsorption properties were investigated through N2 and CO2 adsorption measurements.. Interestingly, a low-pressure adsorption/desorption hysteresis phenomenon was observed for the CO2 adsorption/desorption isotherms of the fluorinated nanotubes.. This remarkable adsorption/ desorption hysteresis may be attributed to restricted access to the inner pores of the nanotubes due to the presence of fluorinated pore gates.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: SWCNTs (HiPco) were purified from Fe residues by using Sc-CO2 as a solvent [587].

    Article Title: Review of Sorted Metallic Single‐Walled Carbon Nanotubes
    Article Snippet: DOI: 10.1002/admi.202002106 applications, the bandgap dependence, so-called chirality of the nanotubes, often plays a key role; thus, studies on SWCNTs have been conducted to synthesize or purify the nanotubes with a focus on achieving monochirality.. Since the discovery of CNTs in 1991 by Iijima et al.,[10] significant progress has been achieved with regard to the growth of SWCNTs.. These include arc discharge, laser ablation, and chemical vapor deposition (CVD).

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separablity of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separability of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: Chlorination at 1000 °C was used to purify SWCNTs (HiPco) in order to utilize them as a platform to deliver therapeutics to pancreatic cancer cells.

    Article Title: Reductive dissolution of supergrowth carbon nanotubes for tougher nanocomposites by reactive coagulation spinning.
    Article Snippet: The result contrasts with the dissolution of typical micron-length SWCNTs (Tuball, Elicarb and HiPco) upon simple stirring overnight.

    Article Title: Physical modification of carbon nanotubes with a dendrimer bearing terminal mercaptoundecahydrododecaborates (Na 2 B 12 H 11 S)
    Article Snippet: Given the thickness of the pristine SWCNTs (HiPco) used in this study (0.8- 1.2 nm), it seems likely that individual nanotubes are wrapped by dendrimer(SB12)4 F I G U R E 1 A, Schematic illustration of the dendrimers used in this study.

    Purification:

    Article Title: Restricted adsorption of carbon dioxide gas in fluorinated single-walled carbon nanotubes
    Article Snippet: Single-walled carbon nanotubes were fluorinated between 298 and 473K using elemental F2, and their adsorption properties were investigated through N2 and CO2 adsorption measurements.. Interestingly, a low-pressure adsorption/desorption hysteresis phenomenon was observed for the CO2 adsorption/desorption isotherms of the fluorinated nanotubes.. This remarkable adsorption/ desorption hysteresis may be attributed to restricted access to the inner pores of the nanotubes due to the presence of fluorinated pore gates.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: SWCNTs (HiPco) were purified from Fe residues by using Sc-CO2 as a solvent [587].

    Article Title: Review of Sorted Metallic Single‐Walled Carbon Nanotubes
    Article Snippet: DOI: 10.1002/admi.202002106 applications, the bandgap dependence, so-called chirality of the nanotubes, often plays a key role; thus, studies on SWCNTs have been conducted to synthesize or purify the nanotubes with a focus on achieving monochirality.. Since the discovery of CNTs in 1991 by Iijima et al.,[10] significant progress has been achieved with regard to the growth of SWCNTs.. These include arc discharge, laser ablation, and chemical vapor deposition (CVD).

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separablity of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separability of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: Chlorination at 1000 °C was used to purify SWCNTs (HiPco) in order to utilize them as a platform to deliver therapeutics to pancreatic cancer cells.

    Article Title: Reductive dissolution of supergrowth carbon nanotubes for tougher nanocomposites by reactive coagulation spinning.
    Article Snippet: The result contrasts with the dissolution of typical micron-length SWCNTs (Tuball, Elicarb and HiPco) upon simple stirring overnight.

    Article Title: Physical modification of carbon nanotubes with a dendrimer bearing terminal mercaptoundecahydrododecaborates (Na 2 B 12 H 11 S)
    Article Snippet: Given the thickness of the pristine SWCNTs (HiPco) used in this study (0.8- 1.2 nm), it seems likely that individual nanotubes are wrapped by dendrimer(SB12)4 F I G U R E 1 A, Schematic illustration of the dendrimers used in this study.

    Solvent:

    Article Title: Restricted adsorption of carbon dioxide gas in fluorinated single-walled carbon nanotubes
    Article Snippet: Single-walled carbon nanotubes were fluorinated between 298 and 473K using elemental F2, and their adsorption properties were investigated through N2 and CO2 adsorption measurements.. Interestingly, a low-pressure adsorption/desorption hysteresis phenomenon was observed for the CO2 adsorption/desorption isotherms of the fluorinated nanotubes.. This remarkable adsorption/ desorption hysteresis may be attributed to restricted access to the inner pores of the nanotubes due to the presence of fluorinated pore gates.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: SWCNTs (HiPco) were purified from Fe residues by using Sc-CO2 as a solvent [587].

    Article Title: Review of Sorted Metallic Single‐Walled Carbon Nanotubes
    Article Snippet: DOI: 10.1002/admi.202002106 applications, the bandgap dependence, so-called chirality of the nanotubes, often plays a key role; thus, studies on SWCNTs have been conducted to synthesize or purify the nanotubes with a focus on achieving monochirality.. Since the discovery of CNTs in 1991 by Iijima et al.,[10] significant progress has been achieved with regard to the growth of SWCNTs.. These include arc discharge, laser ablation, and chemical vapor deposition (CVD).

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separablity of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separability of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: Chlorination at 1000 °C was used to purify SWCNTs (HiPco) in order to utilize them as a platform to deliver therapeutics to pancreatic cancer cells.

    Article Title: Reductive dissolution of supergrowth carbon nanotubes for tougher nanocomposites by reactive coagulation spinning.
    Article Snippet: The result contrasts with the dissolution of typical micron-length SWCNTs (Tuball, Elicarb and HiPco) upon simple stirring overnight.

    Article Title: Physical modification of carbon nanotubes with a dendrimer bearing terminal mercaptoundecahydrododecaborates (Na 2 B 12 H 11 S)
    Article Snippet: Given the thickness of the pristine SWCNTs (HiPco) used in this study (0.8- 1.2 nm), it seems likely that individual nanotubes are wrapped by dendrimer(SB12)4 F I G U R E 1 A, Schematic illustration of the dendrimers used in this study.

    In Vivo:

    Article Title: Restricted adsorption of carbon dioxide gas in fluorinated single-walled carbon nanotubes
    Article Snippet: Single-walled carbon nanotubes were fluorinated between 298 and 473K using elemental F2, and their adsorption properties were investigated through N2 and CO2 adsorption measurements.. Interestingly, a low-pressure adsorption/desorption hysteresis phenomenon was observed for the CO2 adsorption/desorption isotherms of the fluorinated nanotubes.. This remarkable adsorption/ desorption hysteresis may be attributed to restricted access to the inner pores of the nanotubes due to the presence of fluorinated pore gates.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: SWCNTs (HiPco) were purified from Fe residues by using Sc-CO2 as a solvent [587].

    Article Title: Review of Sorted Metallic Single‐Walled Carbon Nanotubes
    Article Snippet: DOI: 10.1002/admi.202002106 applications, the bandgap dependence, so-called chirality of the nanotubes, often plays a key role; thus, studies on SWCNTs have been conducted to synthesize or purify the nanotubes with a focus on achieving monochirality.. Since the discovery of CNTs in 1991 by Iijima et al.,[10] significant progress has been achieved with regard to the growth of SWCNTs.. These include arc discharge, laser ablation, and chemical vapor deposition (CVD).

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separablity of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separability of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: Chlorination at 1000 °C was used to purify SWCNTs (HiPco) in order to utilize them as a platform to deliver therapeutics to pancreatic cancer cells.

    Article Title: Reductive dissolution of supergrowth carbon nanotubes for tougher nanocomposites by reactive coagulation spinning.
    Article Snippet: The result contrasts with the dissolution of typical micron-length SWCNTs (Tuball, Elicarb and HiPco) upon simple stirring overnight.

    Article Title: Physical modification of carbon nanotubes with a dendrimer bearing terminal mercaptoundecahydrododecaborates (Na 2 B 12 H 11 S)
    Article Snippet: Given the thickness of the pristine SWCNTs (HiPco) used in this study (0.8- 1.2 nm), it seems likely that individual nanotubes are wrapped by dendrimer(SB12)4 F I G U R E 1 A, Schematic illustration of the dendrimers used in this study.

    Modification:

    Article Title: Restricted adsorption of carbon dioxide gas in fluorinated single-walled carbon nanotubes
    Article Snippet: Single-walled carbon nanotubes were fluorinated between 298 and 473K using elemental F2, and their adsorption properties were investigated through N2 and CO2 adsorption measurements.. Interestingly, a low-pressure adsorption/desorption hysteresis phenomenon was observed for the CO2 adsorption/desorption isotherms of the fluorinated nanotubes.. This remarkable adsorption/ desorption hysteresis may be attributed to restricted access to the inner pores of the nanotubes due to the presence of fluorinated pore gates.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: SWCNTs (HiPco) were purified from Fe residues by using Sc-CO2 as a solvent [587].

    Article Title: Review of Sorted Metallic Single‐Walled Carbon Nanotubes
    Article Snippet: DOI: 10.1002/admi.202002106 applications, the bandgap dependence, so-called chirality of the nanotubes, often plays a key role; thus, studies on SWCNTs have been conducted to synthesize or purify the nanotubes with a focus on achieving monochirality.. Since the discovery of CNTs in 1991 by Iijima et al.,[10] significant progress has been achieved with regard to the growth of SWCNTs.. These include arc discharge, laser ablation, and chemical vapor deposition (CVD).

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separablity of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Method for producing semiconducting single-walled carbon nanotube dispersion
    Article Snippet: I S ( peak intensity of absorption wavelength specific to semiconducting SWCNTs ) I M ( peak intensity of absorption wavelength specific to metallic SWCNTs ) = Separability of semiconducting SWCNTs [ Numerical Expression 2 ] The SWCNTs (HIPCO) used have an intrinsic wavelength of the semiconducting SWCNTs at around 730 nm and an intrinsic wavelength of the metallic SWCNTs at around 480 nm.

    Article Title: Transition metal impurities in carbon-based materials: Pitfalls, artifacts and deleterious effects
    Article Snippet: Chlorination at 1000 °C was used to purify SWCNTs (HiPco) in order to utilize them as a platform to deliver therapeutics to pancreatic cancer cells.

    Article Title: Reductive dissolution of supergrowth carbon nanotubes for tougher nanocomposites by reactive coagulation spinning.
    Article Snippet: The result contrasts with the dissolution of typical micron-length SWCNTs (Tuball, Elicarb and HiPco) upon simple stirring overnight.

    Article Title: Physical modification of carbon nanotubes with a dendrimer bearing terminal mercaptoundecahydrododecaborates (Na 2 B 12 H 11 S)
    Article Snippet: Given the thickness of the pristine SWCNTs (HiPco) used in this study (0.8- 1.2 nm), it seems likely that individual nanotubes are wrapped by dendrimer(SB12)4 F I G U R E 1 A, Schematic illustration of the dendrimers used in this study.



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