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The Aggregation of Hydrophobically Modified Polysaccharides

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采用UVISEL相调制型椭圆偏振光谱仪对ZrO2 Thin Films on Glass Substrates样品进行分析,研究其膜层厚度和相应光学性质。

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SpectroscopicEllipsometry Ellipsometric Study of the Aggregation ofHydrophobically Modified Polysaccharidesin Solution at the Air / Water Interface UVISEL Michel Stchakovsky -Application Scientist - Thin Film Division Pullulan is a natural, water-soluble polysaccharide used in the production of foods, pharmaceuticals andcosmetics. From the consumer side it is popular as it is of non-animal origin being manufactured fromcorn, and from the technical side it is easily formed into films suitable for use in capsules. In this study, we have compared the physico-chemical properties of two ionic pullulan derivatives (CMP)modified by 10% and 35% Cg chains in aqueous solutions. These derivatives exhibit an associative behav-iour which stems from intra and intermolecular interactions between the hydrophobic C; groups graftedonto the molecules. Characterisation of the CMP polymer solutions The work was performed using a Jobin Yvon UVISEL Visible Spectroscopic Phase Modulated Ellipsome-ter. To make meaningful measurements of ellipsometric spectra requires the ultimate sensitivity for the tech-nique as the contrast in refractive index between the solvent and polymer molecules is extremely weak.The measurements described here were made at an incident angle close to 53° (which is the Brewsterangle for the system under consideration), across the spectral range 250-800 nm. Moreover, such transparent ultrathin layered systems generate a A angle near 0 [180]. When com-pared to conventional ellipsometers, the phase modulated ellipsometer configuration is unique inthat it allows the highest sensitivity and precision of the A angle across the full [0°, 360°] range, evenwhen A is close to 0°. Explore the future HORIBAGROUP SpectroscopicElipsometry The figure shows three spectra of the ellipsometric angles W and ▲showing how the signals changewithin 10 minutes after perturbation of the air/liquid interface. The effect can be observed on themolecules modified by 10% C; chains only. Change in surface properties measured 3 timesduring a 10 minute interval for 10% modified. Stable surface for 35% modified measured3 times. -360.000 -340.000 -320.000 -300.000 -280.000 A() -260.000 -240.000 -220.000 -200.000 -180.000 Conclusion This interpretation has been supported by both surface tension measurement for the liquid phase and fluorescence spec-troscopy for bulk behaviour. From this study there is clear evidence that increasing the substitution rate from 10% to 35% induces a reinforcement ofthe hydrophobic interactions and thus the formation of more compact and stable aggregates which can complex hydro-phobic compounds. The use of CMP 35% C; could be envisaged in drug formulations where dispersion of a hydrophobicdrug in an aqueous phase is required. The authors would like to thank Veronique Rosilio from Paris-Sud University for her support in this work. USA: Jobin Yvon S.A.S.Jobin Yvon Inc.Z.A. De la Vigne aux Loups3880 Park AvenueJY Germany:+49 (0)894623 17-05, Avenue AragoEdison, NJ 08820-3012JY Italy: +39 0 2 5760 305091380Chilly MazarinToll-Free:1-866-jobinyvonJY Japan: +81 (0)33861 8231Tel: +33 (0) 1 64 54 13 00Tel:+1-732-494-8660JY UK:+44 (0) 20 8204 8142Fax: +33(0) 1 69 74 88 61Fax:+1-732-549-5125JY China: +86 (0) 10 6849 2216Email: tfd-sales@jobinyvon.frEmail: info@jobinyvon.comJY Korea:+82 2 576 8650 France: EMISSION·FLUORESCENCE·FORENSICS· GRATINGSG OEM·OPTICAL SPECTROSCOPY·RAMAN·THIN FILM

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HORIBA(中国)为您提供《The Aggregation of Hydrophobically Modified Polysaccharides》,该方案主要用于薄膜材料中null检测,参考标准《暂无》,《The Aggregation of Hydrophobically Modified Polysaccharides》用到的仪器有HORIBA Auto SE一键式全自动快速椭偏仪 、HORIBA UVISEL Plus研究级经典型椭偏仪 。

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