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同轴湿纺炭黑-硅胶复合内涂层柔性纤维应变传感器 被引量:7
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作者 陈娟 盛斌 +2 位作者 陈上碧 肖杰俣 熊岩 《传感器与微系统》 CSCD 北大核心 2021年第4期4-7,共4页
通过同轴湿纺技术制备了一种多层中空结构的柔性纤维应变传感器。外层是由硅胶(Ecoflex)材料制成的弹性基底层,内层是由炭黑/聚二甲基硅氧烷(CB/PDMS)复合材料制成的导电层。中空结构由CB/PDMS/CHCl 3混合物受热时CHCl 3挥发所致。同时... 通过同轴湿纺技术制备了一种多层中空结构的柔性纤维应变传感器。外层是由硅胶(Ecoflex)材料制成的弹性基底层,内层是由炭黑/聚二甲基硅氧烷(CB/PDMS)复合材料制成的导电层。中空结构由CB/PDMS/CHCl 3混合物受热时CHCl 3挥发所致。同时由于CB/PDMS复合材料涂层产生了裂纹结构,增强了该中空纤维的应变灵敏度(GF),内涂层随拉伸出现了明显的断开-回复现象。实验表明:当加入的CHCl 3与PDMS体积比为3︰1时,CB-Ecoflex纤维具有最高的灵敏度,GF值为7.14,与无裂纹CB-Ecoflex纤维相比提高了约6倍。并对人体运动监测方面进行了研究,发现CB-Ecoflex纤维对人体的运动显示了良好的响应特性。此方法为可穿戴电子器件的制备提供了一种新路径。 展开更多
关键词 同轴湿纺技术 炭黑-硅胶(cb-ecoflex) CHCl 3 裂纹结构 柔性应变传感器
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Determination of Trace Non Rare Earth Elements in High Purity Rare Earth Oxides by ICP-AES with Microcolumn Preconcentration in a Flow Injection System 被引量:1
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作者 吉红念 廖振环 +1 位作者 江祖成 谢金娥 《Journal of Rare Earths》 SCIE EI CAS CSCD 1995年第2期119-124,共6页
A new method for the determination of trace non-rare earth elements in high purity rare earth oxides by ICP-AES with preconcentration on an active carbon-silica gel microcolumn in a flow injection system is described ... A new method for the determination of trace non-rare earth elements in high purity rare earth oxides by ICP-AES with preconcentration on an active carbon-silica gel microcolumn in a flow injection system is described in this paper. Experimental parameters such as pH, flow rate,reagent concentration,length of reaction coil,eluent acidity,etc. were optimized. In the buffer solution of NH3. H2O/NH4Cl at pH 4. 6,Al,Cr,Cu,Fe, Pb, V and Zn can be preconcentrated and then eluted with 4. 5 mol/L nitric acid utilizing stop-flow technique. The enrichment factors were in range of 8. 1 ̄12. 6 with detection limits of μg/m level ,and the RSD with metals at μg/g level were 2. 3 ̄5. 0% (n= 7). The method proposed can reduce the matrix interference effectively , and has been applied to the determination of non-rare earth metals atμg/g level in high purity Eu2O3 with satisfactory results. 展开更多
关键词 Flow injection ICP-AES Active carbon-silica gel Sodium diethyldithiocarbamate Stop-flow technique Microcolumn preconcentration High purity Eu_2O_3
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