久久国产人妖系列,missav|免费高清av在线看,欧美日精品一区视频,欧美激情综合色综合啪啪五月

加載中...

點擊這里給我發消息

QQ群:417857029

新產品·新技術信息

研究人員開發自交聯水凝膠來用于例如工業密封膠的潛在工業應用上

來源:林中祥膠粘劑技術信息網2012年03月06日

閱讀次數:

Researchers Develop Self-healing Hydrogel for Potential Applications Like Industrial Sealants

SAN DIEGO, Calif. -- University of California, San Diego bioengineers have developed a self-healing hydrogel that binds in seconds, as easily as Velcro, and forms a bond strong enough to withstand repeated stretching. The material has numerous potential applications, including medical sutures, targeted drug delivery, industrial sealants and self-healing plastics, a team of UC San Diego Jacobs School of Engineering researchers reported in the online Early Edition of the Proceedings of the National Academy of Sciences.

Hydrogels are made of linked chains of polymer molecules that form a flexible, jello-like material similar to soft-tissues. Until now, researchers have been unable to develop hydrogels that can rapidly repair themselves when a cut was introduced, limiting their potential applications. The team, led by Shyni Varghese, overcame this challenge with the use of "dangling side chain" molecules that extend like fingers on a hand from the primary structure of the hydrogel network and enable them to grasp one another.

"Self-healing is one of the most fundamental properties of living tissues that allows them to sustain repeated damage," says Varghese. "Being bioengineers, one question that repeatedly appeared before us was if one could mimic self-healing in synthetic, tissue-like materials such as hydrogels. The benefits of creating such an aqueous self-healing material would be far-reaching in medicine and engineering."

To design the side chain molecules of the hydrogel that would enable rapid self-healing, Varghese and her collaborators performed computer simulations of the hydrogel network. The simulations revealed that the ability of the hydrogel to self-heal depended critically on the length of the side chain molecules, or fingers, and that hydrogels having an optimal length of side chain molecules exhibited the strongest self-healing. When two cylindrical pieces of gels featuring these optimized fingers were placed together in an acidic solution, they stuck together instantly. Vargheses lab further found that by simply adjusting the solutions pH levels up or down, the pieces weld (low pH) and separate (high pH) very easily. The process was successfully repeated numerous times without any reduction in the weld strength.

Ameya Phadke, a fourth year PhD student in Vargheses lab said the hydrogels strength and flexibility in an acidic environment - similar to that of the stomach - makes it ideal as an adhesive to heal stomach perforations or for controlled drug delivery to ulcers.

Such healing material could also be useful in the field of energy conservation and recycling where self-healing materials could help reduce industrial and consumer waste, according to Varghese. Additionally, the rapidity of self-healing in response to acids makes the material a promising candidate to seal leakages from containers containing corrosive acids. To test this theory, her lab cut a hole in the bottom of a plastic container, "healed" it by sealing the hole with the hydrogel and demonstrated that it prevented any leakage.

Moving forward, Varghese and her lab hope to test the material in its envisioned applications on a larger scale. The team also hopes to engineer other varieties of hydrogels that self-heal at different pH values, thereby extending the applications of such hydrogels beyond acidic conditions.

About the UCSD Jacobs School of Engineering

The UCSD Jacobs School of Engineering is a premier research school set apart by our entrepreneurial culture and integrative engineering approach. They are the youngest and fastest rising among the nations top 15 engineering schools, and the largest engineering school in the renown University of California system. The Jacobs Schools mission is to educate tomorrows technology leaders and to seek discoveries that fuel economic prosperity of the nation, and enhance the quality of life for people everywhere. Bioengineering; earthquake and renewal engineering; communications, security and networks; materials; and systems and controls are among their strengths.

  • 標簽:
相關閱讀

本站所有信息與內容,版權歸原作者所有。網站中部分新聞、文章來源于網絡或會員供稿,如讀者對作品版權有疑議,請及時與我們聯系,電話:025-85303363 QQ:2402955403。文章僅代表作者本人的觀點,與本網站立場無關。轉載本站的內容,請務必注明"來源:林中祥膠粘劑技術信息網(www.m.jwmov.com)".

網友評論

©2015 南京愛德福信息科技有限公司   蘇ICP備10201337 | 技術支持:南京聯眾網絡科技有限公司

客服

客服
電話

1

電話:025-85303363

手機:13675143372

客服
郵箱

2402955403@qq.com

若您需要幫助,您也可以留下聯系方式

發送郵箱

掃二
維碼

微信二維碼
主站蜘蛛池模板: 新郑市| 乌拉特中旗| 辛集市| 桐城市| 汽车| 陆丰市| 岳普湖县| 大英县| 陇西县| 遵义县| 南昌县| 河曲县| 凤庆县| 磐安县| 海宁市| 龙口市| 沁阳市| 德钦县| 沭阳县| 塘沽区| 板桥市| 澎湖县| 祁阳县| 清水河县| 平塘县| 沐川县| 唐山市| 南宁市| 基隆市| 东平县| 舒兰市| 邵阳县| 成都市| 鞍山市| 吴旗县| 阆中市| 个旧市| 冀州市| 海口市| 文化| 团风县|