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1)  Silicon carbide nanostructures
碳化硅纳米材料
2)  SiC 1D nanomaterials
碳化硅一维纳米材料
3)  silicon carbon nanocomposite
硅碳纳米复合材料
1.
A core-shell silicon carbon nanocomposite is prepared through thermolysis of Si@poly (cyclotriphosphazene-4,4\'-sulfonyldiphenol)(PZS) precursor,which is synthesized via in situ polycondensation of Hexachlorocyclotriphosphazenes(HCCP) and 4,4\'-Sulfonyldiphenol(BPS) under ultrasonic irradiation.
以三聚膦腈(HCCP)和4,4\'-二羟基二苯砜(BPS)为单体,通过原位聚合制备了硅@聚(三聚膦腈-4,4\'-二羟基二苯砜)无机-有机复合前驱体,进一步热解后得到核壳结构的硅碳纳米复合材料。
4)  silicon nano-materials
硅纳米材料
5)  carbon nano-material
碳纳米材料
1.
To explore the applications of carbon nano-materials in electromagnetic wave passive jamming field,the 8-12 GHz microwave attenuation performances of carbon nano-powder,carbon nanotubes,and carbon nanofibers were studied based on the static measuring method.
为了探索碳纳米材料在电磁波无源干扰领域中的应用,采用静态测试方法,研究了纳米碳粉、碳纳米管、纳米碳纤维七种不同结构和尺寸的碳纳米材料在8~12 GHz波段内的微波衰减性能,并对其衰减机理进行了分析。
2.
Several carbon nano-materials,such as nano-graphite, nano-carbon and nano-carbon tube, were used to measure chlorine isotope ratios as an emitter.
本文主要从测定时间、样品带的电流强度、观测到的目标离子流强度和得到结果的精度等几个方面出发 ,比较了使用几种不同的碳纳米材料 ,如纳米石墨、纳米碳黑和纳米碳管等测定氯同位素的情况 ,并把这些与使用普通石墨测定氯同位素得到的结果做了比较。
6)  carbon nanomaterials
碳纳米材料
1.
Pressure influence on hydrogen adsorption in carbon nanomaterials;
平衡压力对碳纳米材料储氢的影响
2.
The progress in research on the growth mechanism, preparation process, application fields of carbon nanomaterials based on coal were introduced by the examples of carbon nanotubes and activated carbon.
以煤基碳纳米管和煤基活性炭为代表,介绍了煤基碳纳米材料在生长机理、制备工艺和应用领域等方面的研究进展。
3.
As a new type of catalyst and/or catalyst supports,carbon nanomaterials (including zero-dimensional,one-dimensional,two-dimensional carbon nanomaterials and nanoporous carbon materials) have potential applications in fields of heterogeneous catalysis,such as oxidative dehydrogenation,selective hydrogenation,ammonia synthesis and decomposition,and electrocatalysis in fuel cell.
碳纳米材料(包括零维、一维、二维碳纳米材料以及碳纳米孔材料)是一类新型的催化剂或催化剂载体材料,在氧化脱氢、选择加氢、合成氨、氨分解制氢以及燃料电池等多相催化领域具有广阔的应用前景。
补充资料:碳化
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性质:又称碳化。固体燃料的热化学加工方法。将煤、木材、油页岩等在隔绝空气下加热,使分解为气体(如煤气)、液体(如焦油)和固体(如焦炭)产物。干馏设备一般为工业炉窑,煤气由炉窑逸出,并带有焦油蒸气,可以回收。焦炭则残留在炉窑中。根据加热的最终温度,一般可分为高温干馏(约900~1100℃)、中温干馏(约660~750℃)和低温干馏(约500~580℃)。此外,还有成堆干馏或煤堆干馏等。

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