Dissertation > Excellent graduate degree dissertation topics show
Novel Polymers Containing Short Fluoroalkyl Chains: Synthesis and Applications on Cotton Fabrics
Author: HouZaiJian
Tutor: MengWeiDong
School: Donghua University
Course: Applied Chemistry
Keywords: short fluoroalkyl chain fluorinated polyurethane fluorinated polyacrylate water repellency oil repellency cotton fabric treatment
CLC: TS195.1
Type: Master's thesis
Year: 2008
Downloads: 257
Quote: 3
Read: Download Dissertation
Abstract
|
Fluorocarbons especially those with long perfluoroalkyl chains (CnF2n+1,n=6-10) are widely used as the most important class of water and oil repellent finishing agents for textiles due to their optimum performance in lowering the surface free energy and improving both hydrophobicity and oleophobicity. In recent years, the fluorocarbons containing long perfluoroalkyl chains are facing the problems such as the persistence, bioaccumulation, and/or toxicity in the environment. The use of perfluorooctyl contained surfactants such as PFOS and PFOA have been restricted in the international community. Sooner or later, fluorocarbons with long perfluoroalkyl chains will face the same problems. So it is important to find the alternatives to replace the present long perfluoroalkyl-contained fluorocarbons. As reported that compounds with short perfluoroalkyl group can be decomposed in the environment with low toxicity. In this paper, we have designed and synthesized two types functional polymers containing short perfluorocarbon chains and studied their applications on cotton fabrics.Firstly, starting from tribromoneopentylglycol, the readily available cheap material, the bromomethylated oxetane was obtained under basic condition, which was converted to fluoroalkyl-contained oxetane 2 by treatment with trifluoroethanol or pentafluoropropanol in the presence of base and phase transfer catalyst respectively. In the presence of BF3·Et2O and neopentylglycol or methanol, the monomers 2 were polymerized to give two novel fluorinated polyether diol 4 or polyether semiol 3 respectively. The hydroxyl values were measured as 39.14 and 20-25 mgKOH/g. Polyether diol 4 was then condensed with isophorone diisocyanate (IPDI) to form prepolymer 9, which was extended by compounds diethylentriamine (DETA) and 2,2-dihydroxymethylpropanoic acid (DMPA) to form polyurethanes 5 and 8 respectively. Polyurethanes 5 and 8 were then grafted by perfluoropolyether acyl fluoride 6 and fluorinated polyether semiol 3 to form fluorinated polyether grafted polyurethanes CFPU and AFPU.Secondly, tris(3-prefluorohexylpropyl) pentaerythritol (TFPE) was synthesized from triallyl pentaerythritol (APE) and perfluorohexyliodide via radical addition initiated by sodium hyposulfite followed by reduction with lithium aluminium hydride. It was used to synthesize the emulsions of fluorinated polyacrylate (FPA) and fluorinated polyurethane (SiFPU).Finally, these emulsions of CFPU, AFPU, FPA and SiFPU were diluted with water, and applied on cotton fabrics by pad-dry-cure process. The fabrics treated with SiFPU and AFPU possessed good water repellent properties, and their contact angles were 153°and 148°respectively. The fabrics treated with CFPU and FPA possessed moderate water repellent properties, and their contact angles were 125°和135°. But only the fabrics treated with SiFPU showed a little oil repellent property at grade 2 level. On the other hand, the tear strength, durable washing property, static hydraulic pressure and white index of treated cotton fabrics were also examined, and the effects of cross-linking agent, baking temperature and densities of finishing agents on water repellent property were also discussed. The surface properties of treated cotton fabrics were examined by XPS and SEM. Accordingly, it was found that SiFPU showed the best performance on the cotton fabrics, AFPU possessed good water repellent property and CFPU and FPA only had general effect on cotton fabrics.
|
Related Dissertations
- Synthesis and Properties of Functional Waterborne Polyurethane Coatings,TQ633
- Preparation of Novel Acrylic Polymer and Its Application on Cotton Fabric,TS195.2
- Experimental Study on the Movement of Soil Water in Layered Water Repellent Soils,S152.7
- Research on Knitting Process and Wet Comfort of Gradient Wicking Knitted Fabric,TS186.2
- Synthesis and Properties of Nano-SiO2 /Fluorinated Polyacrylate Composite Emulsion,TQ320.1
- The Synthesis of Novel Fluorinated Acrylate Co-Polymers and Their Applications on Cotton Fabrics,TS195.2
- Preparation and Study on Liquid Repellent Properties of Novel Fluorinated Polyacrylates,TS195.2
- Synthesis and Application of Polysiloxane-urethane Water Dispersion as Textile Finishing Agent,TS195.2
- Experimental Study on the Movement of Soil Water and Soil Salt for Soils under Perforated Plastic Mulch,S152
- The Influence of Wetting Agents on Physical and Chemical Properties and Plant Growth Status of Water-repellent Medium,S317
- Synthesis and Properties of Silicone Modified Polyurethane Coating Agent for Synthetic Leather,TS529.5
- Preparation and Characterization of Fluorinated Acrylate Copolymer Latex,TQ316.334
- Soil Biophysical Processes Involved in Decomposition of Rice Straw Incorporated in Upland Soils under Wetting and Drying Cycles for Stabilization of Soil Carbon Pools and Soil Structure,S156
- Study of F-containing Textile Finishing Agents of Poly-acrylate Species,TS195.2
- Study on Cellulose’s Degradation of One-Single Used Paper-Based Container,X384
- Novel Waterborne Polyurethanes Containing Short Fluoroalkyl Chains: Synthesis, Characterization and Their Applications on Cotton Fabrics,TS195.2
- Water-based silicone - polyurethane block copolymers and their use as textile finishing agent research,TS195.2
- Mechanism Research on Water Repellency of Sewage Irrigated Soil,S152.7
- Studies on the Synthesis, Structure and Properties of Novel Biomedical Polyurethanes,TQ323
- The Research about the Processing and Performance of Waterproof Breathable Laminated Fabrics,TS195.6
- Research on PSA/Cotton Blend Fabric of Coatinging of Water Resistance and Moisture Permeability,TS195.6
CLC: > Industrial Technology > Light industry,handicrafts > Textile industry,dyeing and finishing industry > Dyeing and finishing industry > Finishing > Finishing theory
© 2012 www.DissertationTopic.Net Mobile
|