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<title cf:type="text"><![CDATA[ -->Cellulose-based Friction Nanogenerator]]></title>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[Papermaking Process Micro/Nano-power Harvesting and Self-powered Sensor]]></title>
<link><![CDATA[http://zgzz.ijournals.cn/zgzzen/ch/reader/view_abstract.aspx?file_no=202305001&flag=1]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[In this study， a triboelectric nanogenerator was utilized to harvest mechanical energy generated from pulp fluids. The contact electrification of different concentrations of nanocellulose suspensions with solids was investigated. The mechanism of conversion of micro/nano-power to electrical energy was elucidated. The liquid concentration was found to be negatively correlated with the output performance， and a two-electrode liquid-solid triboelectric nanogenerator was designed accordingly， where the specific difference in voltage output could be used as a feedback signal for the concentration. The results showed that the self-powered sensor had excellent sensitivity （the linear fitting degree of surfactants， lignin， calcium carbonate and their mixtures to the sensitivity of the sensor remained above 0.96）， outstanding stability， and millisecond response time （the pulping signal could be sensed within 40 ms， and the linear fit was 0.99）. This study aims to provide a sustainable energy solution for the era of smart paper-making in the context of carbon peaking and carbon neutrality goals.]]></description>
<pubDate>2024/5/31 19:29:56</pubDate>
<category><![CDATA[Cellulose-based Friction Nanogenerator]]></category>
<author><![CDATA[LUO Bin,SHAO Yuzheng,LIU Tao,CAI Chenchen,LIU Yanhua,LIU Zhaomeng,WANG Jinlong,ZHANG Song,CHI Mingchao,WANG Shuangfei,NIE Shuangxi]]></author>
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<atom:name>LUO Bin,SHAO Yuzheng,LIU Tao,CAI Chenchen,LIU Yanhua,LIU Zhaomeng,WANG Jinlong,ZHANG Song,CHI Mingchao,WANG Shuangfei,NIE Shuangxi</atom:name>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[Research Progress on Application of Cellulose-based Triboelectric Nanogenerator]]></title>
<link><![CDATA[http://zgzz.ijournals.cn/zgzzen/ch/reader/view_abstract.aspx?file_no=202305002&flag=1]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[Triboelectric nanogenerator （TENG） and the roles of different cellulose materials used in TENG were briefly introduced. The advantages and optimization strategies of cellulose-based TENG were summarized. The cellulose-based TENG applications in energy collection， sensors， environmental monitoring， sterilization， air purification， and metal protection were systematically elaborated.]]></description>
<pubDate>2024/5/31 19:29:57</pubDate>
<category><![CDATA[Cellulose-based Friction Nanogenerator]]></category>
<author><![CDATA[ZHUANG Yuntang,YANG Zhengbang,HU Yaru,WANG Ying,JI Xingxiang,YANG Guihua,HE Ming]]></author>
<atom:author xmlns:atom="http://www.w3.org/2005/Atom">
<atom:name>ZHUANG Yuntang,YANG Zhengbang,HU Yaru,WANG Ying,JI Xingxiang,YANG Guihua,HE Ming</atom:name>
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<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[Performance Optimization and Application Research Progress of Conductive Hydrogel-based Triboelectric Nanogenerator]]></title>
<link><![CDATA[http://zgzz.ijournals.cn/zgzzen/ch/reader/view_abstract.aspx?file_no=202305003&flag=1]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[Triboelectric nanogenerator （TENG） as an emerging energy supply equipment have attracted wide attention. Hydrogels as a multifunctional material with the properties of transparency， flexibility， conductivity， and self-healing， have become a popular material for the preparation of TENG. The basic principle of TENG was introduced in this paper， and recent reports on hot topics such as output performance， environmental adaptation performance and self-healing performance of hydrogel-based TENG were systematically summarized. Its applications in self-powered sensors， energy harvesting devices， biomedicine， and human-computer interaction were detailed descripted. The current main challenges of hydrogel-based TENG were discussed and their potential development direction was prospected.]]></description>
<pubDate>2024/5/31 19:29:59</pubDate>
<category><![CDATA[Cellulose-based Friction Nanogenerator]]></category>
<author><![CDATA[YANG Yu,WANG Yang,LIU Guolong,WU Chen,LIU Yu,JIANG Weikun]]></author>
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<atom:name>YANG Yu,WANG Yang,LIU Guolong,WU Chen,LIU Yu,JIANG Weikun</atom:name>
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