期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
建筑围护结构热阻检测装置及其影响因素分析
1
作者 高慧挥 邹钺 刘赟 《建筑热能通风空调》 2016年第8期84-87,共4页
通过总结现有的建筑围护结构热阻现场测试方法,将热箱法和热流计法进行有效的结合给出一种新型的现场测试方法。以试验方法为指导进行了建筑围护结构热阻现场检测装置的试制。对某墙体进行现场检测,得到了不同加热功率下的测试热阻,对... 通过总结现有的建筑围护结构热阻现场测试方法,将热箱法和热流计法进行有效的结合给出一种新型的现场测试方法。以试验方法为指导进行了建筑围护结构热阻现场检测装置的试制。对某墙体进行现场检测,得到了不同加热功率下的测试热阻,对于加热功率这一影响因素进行分析讨论,得出在加热壁面温度不高于60℃的情况下本测试方法可行性的结论,将测试结果与热箱法所测热阻进行比较,进一步验证了本测试方法。 展开更多
关键词 节能 围护结构 测试方法 热阻检测 检测装置
下载PDF
Ultra-low charge transfer resistance carbons by onepot hydrothermal method for glucose sensing
2
作者 胡博韬 刘仁材 +3 位作者 陈靖容 赵湛 张淑真 康沛伦 《Science China Materials》 SCIE EI CSCD 2017年第12期1234-1244,共11页
Hydrothermal carbon (HTC) is typically well- dispersed, but it remains a great challenge for HTC to become conductive. Co-doping with heteroatoms has been confirmed to be an effective strategy to significantly promo... Hydrothermal carbon (HTC) is typically well- dispersed, but it remains a great challenge for HTC to become conductive. Co-doping with heteroatoms has been confirmed to be an effective strategy to significantly promote the electrical conductivity of carbon. Moreover, there is no simple and green method to construct sensitive HTC based electro- chemical biosensors until now. In this paper, N and S dual-doped carbon (NS-C) with ultra-low charge transfer resistance is easily synthesized from L-cysteine and glucose in a hydrothermal reaction system. The morphology, structural prop- erties and electrochemical properties of the as-prepared NS-C are analyzed. In comparison with the undoped hydrothermal (UC) modified glassy carbon electrode (GCE), the charge transfer resistance of UC (476 Ω) is ten times the value of NS- C (46 Ω). The developed biosensor shows a better performance to detect glucose in a wide concentration range (50-2500 μmol L^-1) with the detection limit of 1.77 μmol L^-1 (S/N-3) and a high sensitivity (0.0554 μA cm^-2μmol^-1 L). The apparent Michaelis-Menten constant value of GCE/NS-C/GOx/nafion modified electrode is 0.769 mmol L^-1, indicating a high affinity of glucose oxidase to glucose. These results demonstrate that the hydrothermal method is an effective way for prepar- ing high electrical conductivity carbon with excellent performances in biosensor application. 展开更多
关键词 hydrothermal method glucose biosensor charge transfer resistance heteroatom doped carbon electrochemical behavior
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部