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National Research Council Canada cnc
Cumulative AFM distribution plots for <t>CNC</t> height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated <t>sample</t> <t>(CNCD-1)</t> and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height
Cnc, supplied by National Research Council Canada, used in various techniques. Bioz Stars score: 90/100, based on 19 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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1) Product Images from "Characterization of Size and Aggregation for Cellulose Nanocrystal Dispersions Separated by Asymmetrical-Flow Field-Flow Fractionation"

Article Title: Characterization of Size and Aggregation for Cellulose Nanocrystal Dispersions Separated by Asymmetrical-Flow Field-Flow Fractionation

Journal: Cellulose (London, England)

doi:

Cumulative AFM distribution plots for CNC height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated sample (CNCD-1) and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height
Figure Legend Snippet: Cumulative AFM distribution plots for CNC height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated sample (CNCD-1) and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height

Techniques Used: Fractionation

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Article Title: Separation and characterization of cellulose nanocrystals by multi-detector asymmetrical-flow field-flow fractionation
Article Snippet: 24 , 39 Briefly, a probe sonicator (Sonifier 450, Branson Ultrasonics, Danbury, CT) with a 1⁄4” diameter solid titanium immersion probe was used.

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Article Title: AFM characterization of cellulose nanocrystal height and width using internal calibration standards
Article Snippet: A variety of models have been suggested for the cross-sectional shape and dimensions of cellulose nanocrystals (CNCs).. Although many studies report measurements of CNC width (from transmission electron microscopy, TEM) and height (from atomic force microscopy, AFM), few have measured both cross-sectional dimensions for the same CNC sample and the same particles.. Previous work has demonstrated that the TEM width is approximately twice the AFM height, a result that was explained by lateral aggregation of CNCs.

Microscopy:

Article Title: AFM characterization of cellulose nanocrystal height and width using internal calibration standards
Article Snippet: A variety of models have been suggested for the cross-sectional shape and dimensions of cellulose nanocrystals (CNCs).. Although many studies report measurements of CNC width (from transmission electron microscopy, TEM) and height (from atomic force microscopy, AFM), few have measured both cross-sectional dimensions for the same CNC sample and the same particles.. Previous work has demonstrated that the TEM width is approximately twice the AFM height, a result that was explained by lateral aggregation of CNCs.

Transmission Assay:

Article Title: AFM characterization of cellulose nanocrystal height and width using internal calibration standards
Article Snippet: A variety of models have been suggested for the cross-sectional shape and dimensions of cellulose nanocrystals (CNCs).. Although many studies report measurements of CNC width (from transmission electron microscopy, TEM) and height (from atomic force microscopy, AFM), few have measured both cross-sectional dimensions for the same CNC sample and the same particles.. Previous work has demonstrated that the TEM width is approximately twice the AFM height, a result that was explained by lateral aggregation of CNCs.

Electron Microscopy:

Article Title: AFM characterization of cellulose nanocrystal height and width using internal calibration standards
Article Snippet: A variety of models have been suggested for the cross-sectional shape and dimensions of cellulose nanocrystals (CNCs).. Although many studies report measurements of CNC width (from transmission electron microscopy, TEM) and height (from atomic force microscopy, AFM), few have measured both cross-sectional dimensions for the same CNC sample and the same particles.. Previous work has demonstrated that the TEM width is approximately twice the AFM height, a result that was explained by lateral aggregation of CNCs.

Transmission Electron Microscopy:

Article Title: AFM characterization of cellulose nanocrystal height and width using internal calibration standards
Article Snippet: A variety of models have been suggested for the cross-sectional shape and dimensions of cellulose nanocrystals (CNCs).. Although many studies report measurements of CNC width (from transmission electron microscopy, TEM) and height (from atomic force microscopy, AFM), few have measured both cross-sectional dimensions for the same CNC sample and the same particles.. Previous work has demonstrated that the TEM width is approximately twice the AFM height, a result that was explained by lateral aggregation of CNCs.



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National Research Council Canada cnc
Cumulative AFM distribution plots for <t>CNC</t> height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated <t>sample</t> <t>(CNCD-1)</t> and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height
Cnc, supplied by National Research Council Canada, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Cumulative AFM distribution plots for <t>CNC</t> height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated <t>sample</t> <t>(CNCD-1)</t> and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height
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Cumulative AFM distribution plots for <t>CNC</t> height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated <t>sample</t> <t>(CNCD-1)</t> and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height
Cnc Certified Reference Material, supplied by National Research Council Canada, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Cumulative AFM distribution plots for <t>CNC</t> height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated <t>sample</t> <t>(CNCD-1)</t> and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height
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Cumulative AFM distribution plots for CNC height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated sample (CNCD-1) and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height

Journal: Cellulose (London, England)

Article Title: Characterization of Size and Aggregation for Cellulose Nanocrystal Dispersions Separated by Asymmetrical-Flow Field-Flow Fractionation

doi:

Figure Lengend Snippet: Cumulative AFM distribution plots for CNC height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated sample (CNCD-1) and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height

Article Snippet: CNC is a National Research Council Canada certified reference material (CNCD-1, www.nrc.ca/crm ).

Techniques: Fractionation

Cumulative AFM distribution plots for CNC height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated sample (CNCD-1) and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height

Journal: Cellulose (London, England)

Article Title: Characterization of Size and Aggregation for Cellulose Nanocrystal Dispersions Separated by Asymmetrical-Flow Field-Flow Fractionation

doi:

Figure Lengend Snippet: Cumulative AFM distribution plots for CNC height (A) and length (B) for fractions F1, F2 and F3 from AF4 fractionation of sample B3. The distributions for the unfractionated sample (CNCD-1) and the combined (F1+F2+F3) data are also shown for comparison. The 3 fractions have different lengths and heights in all cases, except for height for F2 and F3. The combined data set (F1+F2+F3) differs from CNCD-1 for both length and height

Article Snippet: Materials CNC is a National Research Council Canada certified reference material (CNCD-1, www.nrc.ca/crm ).

Techniques: Fractionation