Food Packaging material requires an excellent barrier ability to humidity and oxygen.SiOx barrier thin film deposited on high polymer substrate can compare beauty with aluminum foil in the barrier quality,even more SiOx barrier thin film is obviously allowing microwave permeating directly and it also provide a chance for merchant to vision their production in shelf life.SiOx film as barrier packaging material is becoming a high light.The current status and research progress of new type high barrier thin film packaging material were overviewed and production technology was introduced. The various influencing factors were discussed, including background vacuum, reactive gases, and pretreatment of the substrate surface and properties.
Silicon oxide thin films have many excellent properties such as hardness, optical,dielectric properties,wear-resistance and corrosion-resistance. It has been widely used in optical and microelectronic applications. The preparation methods mainly include phsical vapor deposition and chemical vapor deposition.The paper reviews a few preparation methods of silicon oxide thin films, and compares advantages and disadvantages w ith each other. On the other hand,it point out the tendency of development.
Nano-micropore latex particles (multi-hole and hollow) were applied to all kinds of sorbent, heterogeneous catalysis, carrier or other field, because of its function of adsorption and carry. Because of its cavum inside the particles, nano-micropore latex particles take on virtue of low density and great effective area, and have special character of optical and substance transmission at the same time. So make its broad application in catalyst, solar materials, photons crystal, low dielectric constant materials, sound insulation materials, message record and so on. In this paper, hydrophilic AA was chosen as polymerization monomer, and core-cell P(St-BA-AA) system were synthesized by emulsion polymerization with P(St-BA) as seed. Nano-micropore latex particles were obtained by the stepwise acid/alkali method at high temperature. The configuration of nano-micropore inside the latex particles were observed by TEM. The effects of treatment time of alkali and acid on hole forming were discussed.
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