1) edge-plane pyrolytic graphite
热解石墨电极
1.
Direct electrochemisty immobilized of hemoglobin at hydroxyapatite modified by edge-plane pyrolytic graphite graphite electrode;
血红蛋白在纳米羟基磷灰石修饰的热解石墨电极上的直接电化学
2) graphite anode electrolytic cell
石墨阳极电解槽
3) heated graphite cylindrical electrodes
热石墨柱电极
1.
Electrically heated graphite cylindrical electrodes(HGCEs) have been used to perform electrochemical behavior studies and adsorptive stripping square wave voltammetric(SWV) measurements of flavin adenine dinucleotide(FAD).
研究了黄素腺嘌呤二核苷酸(FAD)在热石墨柱电极上的电化学行为。
4) pyrolytic graphite
热解石墨
1.
Because selected engineering ceramics is not conductive, the resistance components can be heated by pyrolytic graphite and high-strength graphite to form current loop.
所选工程陶瓷具有不导电的特点,加热电阻元件可由热解石墨和高强石墨联合承担以形成电流回路。
2.
The surface appearance and cross-sectional of the pyrolytic graphite was observed by using scanning electron miroscopy.
通过扫描电子显微镜观察了热解石墨的表面和断面形貌及显微组织结构 ,分析了热解石墨中各种缺陷形成的原因 ,探讨了沉积工艺参数对热解石墨显微组织结构的影响。
3.
This paper discusses property of the pyrolytic graphite firstly, analyzes its application on the high power and supper high power’s electric tubes and points out the prevalence of the pyrolytic graphite used for grid’s material.
本文首先对热解石墨材料的性能进行了讨论,并就其在大功率、超大功率电子管中的应用作了分析,指出了热解石墨作为栅极材料的优越性能;然后通过试验研究和讨论,获得了优化的石墨栅极毛坯沉积工艺,完成了课题目标。
5) Graphite electrode
石墨电极
1.
Research on adaptability between graphite electrode electromachining process and EDM machine tools;
石墨电极电火花加工工艺与电火花机床的适应性研究
2.
The graphite electrode bakes to burn the article short seller reason study and solves measure once;
石墨电极一次焙烧品空头原因探讨及解决措施
3.
Abnormal consumption of graphite electrodes in electric furnace for production of phosphorus;
黄磷炉石墨电极的异常消耗
补充资料:高序热解石墨
分子式:
CAS号:
性质: 由含碳气体(如甲烷)经>1200℃热解并气相沉积于石墨或其他基体,再经>3000℃加压退火制取的性质与单晶石墨极为相似的多晶薄膜或片状石墨材料。成功地用作X射线及中子衍射的单色仪。在电化学领域,它是研究对比石墨晶体基面与边沿特性的良好碳电极材料,常用作液相色谱的成分分析指示电极。
CAS号:
性质: 由含碳气体(如甲烷)经>1200℃热解并气相沉积于石墨或其他基体,再经>3000℃加压退火制取的性质与单晶石墨极为相似的多晶薄膜或片状石墨材料。成功地用作X射线及中子衍射的单色仪。在电化学领域,它是研究对比石墨晶体基面与边沿特性的良好碳电极材料,常用作液相色谱的成分分析指示电极。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条