APA (7th ed.) Citation

Akil-Jradi, S., Jradi, S., Plain, J., Bijeon, J., Sanchez, C., Bachelot, R., & Royer, P. (2011). Biopolymers phase separation monitored by a plasmonic sensorExperimental.Most BLG/AG mixed dispersions were prepared by adding AG to BLG dispersion at a protein (Pr)  polysaccharide (Pol) weight ratio of 2  1, the ratio corresponding to the maximum strength of interactions between BLG and AG.24The blend was gently stirred for 30 min at room temperature. The pH of the blend was at 7.30 at the end of the stirring period. Mixed dispersions were filtered through a 0.22 μm syringe filter (Millipore, Bedford, USA). 0.11 wt% of glucono-δ-lactone (GDL) was then added to the mixed dispersion and dissolved under stirring for 5 min. In the aqueous medium, GDL is hydrolyzed until equilibrium is reached between gluconic acid and GDL. Gluconic acid releases protons and gluconate in the medium. This proton release leads to a slow medium acidification. At a given pH, aliquots were taken from dispersions and deposited on the surface of nanopatterned silver nanoparticles in order to study the binding be. Chemical Communications, 47(8), 2444. https://doi.org/10.1039/c0cc05212d

Chicago Style (17th ed.) Citation

Akil-Jradi, Suzanna, Safi Jradi, Jérôme Plain, Jean-Louis Bijeon, Christian Sanchez, Renaud Bachelot, and Pascal Royer. "Biopolymers Phase Separation Monitored by a Plasmonic SensorExperimental.Most BLG/AG Mixed Dispersions Were Prepared by Adding AG to BLG Dispersion at a Protein (Pr)  polysaccharide (Pol) Weight Ratio of 2  1, the Ratio Corresponding to the Maximum Strength of Interactions Between BLG and AG.24The Blend Was Gently Stirred for 30 Min at Room Temperature. The PH of the Blend Was at 7.30 at the End of the Stirring Period. Mixed Dispersions Were Filtered Through a 0.22 μm Syringe Filter (Millipore, Bedford, USA). 0.11 Wt% of Glucono-δ-lactone (GDL) Was Then Added to the Mixed Dispersion and Dissolved Under Stirring for 5 Min. In the Aqueous Medium, GDL Is Hydrolyzed Until Equilibrium Is Reached Between Gluconic Acid and GDL. Gluconic Acid Releases Protons and Gluconate in the Medium. This Proton Release Leads to a Slow Medium Acidification. At a Given PH, Aliquots Were Taken from Dispersions and Deposited on the Surface of Nanopatterned Silver Nanoparticles in Order to Study the Binding Be." Chemical Communications 47, no. 8 (2011): 2444. https://doi.org/10.1039/c0cc05212d.

MLA (9th ed.) Citation

Akil-Jradi, Suzanna, et al. "Biopolymers Phase Separation Monitored by a Plasmonic SensorExperimental.Most BLG/AG Mixed Dispersions Were Prepared by Adding AG to BLG Dispersion at a Protein (Pr)  polysaccharide (Pol) Weight Ratio of 2  1, the Ratio Corresponding to the Maximum Strength of Interactions Between BLG and AG.24The Blend Was Gently Stirred for 30 Min at Room Temperature. The PH of the Blend Was at 7.30 at the End of the Stirring Period. Mixed Dispersions Were Filtered Through a 0.22 μm Syringe Filter (Millipore, Bedford, USA). 0.11 Wt% of Glucono-δ-lactone (GDL) Was Then Added to the Mixed Dispersion and Dissolved Under Stirring for 5 Min. In the Aqueous Medium, GDL Is Hydrolyzed Until Equilibrium Is Reached Between Gluconic Acid and GDL. Gluconic Acid Releases Protons and Gluconate in the Medium. This Proton Release Leads to a Slow Medium Acidification. At a Given PH, Aliquots Were Taken from Dispersions and Deposited on the Surface of Nanopatterned Silver Nanoparticles in Order to Study the Binding Be." Chemical Communications, vol. 47, no. 8, 2011, p. 2444, https://doi.org/10.1039/c0cc05212d.

Warning: These citations may not always be 100% accurate.