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异山梨醇及其在生物基聚碳酸酯应用研究进展 被引量:1
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作者 高卿伟 韩志群 +6 位作者 殷鹏刚 任春晓 李锦山 赵梓贺 李传玺 陈华祥 牛晓辉 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2023年第10期150-161,共12页
异山梨醇是一种新型生物基材料,是唯一在工业上实现了大批量生产的糖类二醇。目前,将异山梨醇作为单体用于聚碳酸酯(PC)的合成及改性已成为研究热点。文中简单介绍了生物基聚碳酸酯合成的主要单体异山梨醇的结构、性能、合成方法及应用... 异山梨醇是一种新型生物基材料,是唯一在工业上实现了大批量生产的糖类二醇。目前,将异山梨醇作为单体用于聚碳酸酯(PC)的合成及改性已成为研究热点。文中简单介绍了生物基聚碳酸酯合成的主要单体异山梨醇的结构、性能、合成方法及应用情况;综述了生物基PC的合成工艺及催化体系,阐明了非光气熔融酯交换法是工业化发展的主要方向,并对改善生物基PC性能的共聚改性方法及研究成果进行了总结,同时对生物基PC的发展前景进行了展望,最后对我国生物基PC产业化提出了几点建议。 展开更多
关键词 异山梨醇 生物基聚碳酸酯 催化剂 共聚改性
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Comparison in phytoplankton diversity-productivity-community stability between river-type reservoir and lake-type reservoir
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作者 Qiong WU Qiuhua LI +4 位作者 Huan LUO Qian chen huaxiang chen Yanjun DONG Shenghua LI 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2022年第4期1485-1507,共23页
Relationship between biodiversity and ecosystem function is one of the core issues in ecological research.Phytoplankton,as the main producer of aquatic ecosystem,its diversity,productivity,and community stability are ... Relationship between biodiversity and ecosystem function is one of the core issues in ecological research.Phytoplankton,as the main producer of aquatic ecosystem,its diversity,productivity,and community stability are of great signifi cance to reveal ecosystem function.There are signifi cant diff erences in hydrodynamics,water retention time,and phytoplankton community structure between river-type reservoir and newly built lake-type reservoir.The comparative analysis of phytoplankton community stability between the two types of reservoir has not been reported.Jiuquwan Reservoir(river-type)and Taihu Reservoir(lake-type),the two reservoirs in the Dongjiang River source area of Zhujiang(Pearl)River Basin,were selected for comparison in terms of multi-year operation vs.new impoundment,river-type vs.lake-type,and shallow water vs.sub-deep water reservoirs.Samples were collected in dry season(December 2019),normal season(March 2020),and wet season(August 2020),on which the phytoplankton diversity and productivity of the two reservoirs,and the relationship and diff erence of community stability were examined.Results show that(1)the number of phytoplankton species in Jiuquwan Reservoir decreased comparing that before algal bloom and the restoration treatment,while that in Taihu Reservoir increased compared with that before the impoundment of the reservoir.There was no signifi cant diff erence in functional groups and species number between the two reservoirs(P>0.05);(2)the biological stability,diversity,productivity,and resource utilization effi ciency of newly built lake-type reservoir were higher than those of multi-year river-type reservoir.In addition,the utilization effi ciency of phytoplankton resources was the highest in wet season in both reservoirs.The increases in biodiversity,richness,and evenness promoted the stability of the community,while increases in productivity and resource utilization effi ciency weakened the stability of the community;(3)community stability was aff ected by both biotic and abiotic factors,and hydrodynamic index was the main factor.This study is helpful to understand the relationship and diff erences in phytoplankton diversity,productivity and community stability in diff erent types of reservoirs,and provides a guidance for maintaining the stability of reservoir water ecosystem and protecting the biodiversity.The relationships between phytoplankton diversity,productivity,and community stability will be investigated in depth,for which a long-term observation will be conducted on the impact of environmental factors and diversity on the local biostability in diff erent types of reservoirs. 展开更多
关键词 community stability functional group stability phytoplankton diversity resource utilization effi ciency RESERVOIR
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湿度响应纳米复合材料的组装及其SERS传感器应用(英文) 被引量:1
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作者 陈华祥 尤汀汀 +4 位作者 徐更 高宇坤 张晨萌 杨楠 殷鹏刚 《Science China Materials》 SCIE EI CSCD 2018年第9期1201-1208,共8页
本文报道了一种湿度响应纳米SERS传感器.通过原子转移自由基聚合技术在银片表面嫁接了具有湿度响应性能的聚丙烯酰胺分子刷,并组装金纳米颗粒形成复合结构.该分子刷湿度响应灵敏,而且可有效抓取金纳米颗粒,构成均匀分布的SERS"热点... 本文报道了一种湿度响应纳米SERS传感器.通过原子转移自由基聚合技术在银片表面嫁接了具有湿度响应性能的聚丙烯酰胺分子刷,并组装金纳米颗粒形成复合结构.该分子刷湿度响应灵敏,而且可有效抓取金纳米颗粒,构成均匀分布的SERS"热点".通过调节湿度,实现了SERS"热点"的可逆调控,并通过拉曼光谱快速捕捉探针分子特征峰的SERS信号强度变化,实现湿度响应的SERS传感功能.湿度低于50%时,分子刷收缩,金纳米颗粒间距降至纳米级,形成大量热点,使得SERS增强因子达到2×108;湿度高于50%时,分子刷舒张,金纳米颗粒间距变大,当湿度大于90%时,SERS"热点"最少,SERS信号最低.可逆调控湿度变化,得到可逆的SERS信号变化,因此该复合材料实现了高效灵敏的湿度响应SERS传感. 展开更多
关键词 纳米复合材料 传感器应用 SERS 湿度变化 组装 金纳米颗粒 原子转移自由基 探针分子
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