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  <title><![CDATA[Ph.D. Defense by Xiaodan Zhang]]></title>
  <body><![CDATA[<p>PTFE PhD Defense—<strong>Xiaodan Zhang</strong></p><p>Title: <strong>Fabrication of Electronic Devices For Energy Storage And Harvest</strong> <br />Using Microfibrillated Cellulose<br />Date: Wednesday, November 5, 2014<br />Time: 3pm<br />Location: IPST Room 521</p><p>Committee:<br />Dr. Yulin Deng, CHBE (advisor)<br />Dr. Youngjiang Wang, MSE (co-advisor)<br />Dr. Zhiqun Lin, CHBE<br />Dr. Preet Singh, MSE<br />Dr. James Carson Meredith, CHBE</p><p><strong>Abstract</strong>:<br />Cellulose is the most abundant biopolymer in the world and the main <br />component of paper. Modern society requires electronic devices to be more <br />flexible and environmental friendly, which makes cellulose as a good <br />candidate for the next generation of green electronics. However, lots of <br />researches employed “paper-like” petroleum-based polymers to fabricate <br />electronics rather than using real cellulose paper. Cellulose, as a <br />representative of environmental friendly materials, caught into people’s <br />attention because of its sustainable nature, ease of functionality, <br />flexibility and tunable surface properties, etc. There are some general <br />challenges about using cellulose for electronics, such as its <br />non-conductivity, porosity and roughness, but these features can be taken <br />advantages of on certain occasions. This thesis focuses on the study of <br />cellulose-based electronic devices by chemical or physical modification of <br />microfibrillated cellulose (MFC). Particularly, three electronic devices <br />were fabricated, including ionic diodes, electric double layer <br />supercapacitors, pseudocapacitors. In addition, a rational design of <br />dye-sensitized solar cell was investigated, although it was not directly <br />cellulose-based, it led the way to the next generation of cellulose-based <br />solar cells. The extraordinary physical and chemical properties of MFC were <br />successfully leveled in those devices, in addition, inspiring and effective <br />fabrication methods were proposed and carried out to solve the major <br />problems faced by paper-based electronics, such as conductivity, <br />flexibility, packaging and designs.</p><p>&nbsp;</p>]]></body>
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