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1)  Microwave-assisted high temperature method
微波高温固相法
2)  solid-state reaction under microwave
微波固相法
1.
Precursor of La-Sr-Ni complex oxides nanometer powder was synthesized by solid-state reaction under microwave by using La(NO3)3·6H2O、 Sr(CH3COO)2·1/2H2O、 Ni(CH3COO)2·4H2O.
以硝酸镧、乙酸锶和乙酸镍为原料,应用微波固相法制备了纳米镧锶镍复合氧化物前驱体。
3)  solid-state reaction
高温固相法
1.
A red-emitting KGd(WO4)2: Sm3+ was synthesized by solid-state reaction.
采用高温固相法合成KGd(WO4)2:Sm3+荧光粉,样品在近紫外区404nm光激发下发射出Sm3+的特征光谱。
2.
The phosphor yttrium aluminum garnet Y3Al5O12(YAG),activated with tr ivalent cerium(Ce3+)and gadolinium(Gd3+)Y3Al5O12:Ce,Gd(YAG:Ce,Gd)was synthesized through ultrasonic decentralization technology and solid-state reaction(SS).
采用超声波分散技术结合高温固相法合成了小颗粒铈钆激活的钇铝石榴石Y3Al5O12:Ce,Gd(YAG:Ce,Gd)荧光粉材料,并对其作了后处理,主要讨论了YAG:Ce,Gd的制备工艺条件,掺杂稀土离子等因素对其发光性能的影响,并且通过X射线对其进行了晶体分析,用扫描电镜进行了形貌分析,用荧光光度计F-4500测量了其激发光谱与发射光谱,用SPR-9200荧光粉光色参数综合分析系统对荧光粉光色参数分析测试。
3.
It can be synthesized by different methods: solid-state reaction, combustion, co-precipitation, sol-gel, spray prolysis, et al.
Ce 3+激活的钇铝石榴石Y3 Al5 O1 2(YAG)荧光粉是一种光致发光材料,可以通过各种方法制备获得,如:高温固相法、燃烧法、共沉淀法、溶胶-凝胶法、喷雾热解法等,而且通过掺杂其它元素,如用镓取代铝、用钆取代钇等方式改变YAG:Ce荧光粉的基质结构,或者掺杂不同的激活剂,来达到改变其发光特性的目的。
4)  high temperature solid state method
高温固相法
1.
In the paper,photo-stimulated luminescence material SrS∶Eu,Sm was prepared by high temperature solid state method.
采用高温固相法制备了SrS∶Eu,Sm光激励发光材料。
5)  high temperature solid-state method
高温固相法
1.
The layered cathode materials LiNi1/3Co1/3Mn1/3O2 for Li-ion battery were synthesized by high temperature solid-state method,sol-gel method and carbonate co-precipitation method,respectively.
采用高温固相法、溶胶-凝胶法和碳酸盐共沉淀法分别制备了锂离子电池层状正极材料LiNi1/3Co1/3Mn1/3O2。
2.
Based on this subject, carbon-coated LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2 cathode materials synthesized via high temperature solid-state method was firstly discussed in detail.
本文首次对高温固相法碳包覆改性LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2进行了系统的研究。
3.
V5+ doped titanium-bearing blast furnace slag as a kind of antibacterial materials based on photocatalysis was prepared by high temperature solid-state method.
采用高温固相法制备了V5+掺杂含钛高炉渣光催化抗菌材料。
6)  solid sintering technology
高温固相法
1.
The SrAl_2O_4∶Eu~(2+),Dy~(3+) luminous materials with high brightness and long persistence have been synthesized by solid sintering technology using carbon as reductant.
采用高温固相法,在碳粉还原条件下制备了发光亮度高、余辉时间长的SrAl2O4∶Eu2+,Dy3+长余辉发光材料,对其发光性能进行了研究。
2.
The Sr2MgSi2O7∶Eu2+,Dy3+ luminous materials were synthesized by solid sintering technology at the presence of carbon as reductant.
在碳粉还原条件下,采用高温固相法制备出了亮度高、余辉时间长的Sr2MgSi2O7∶Eu2+,Dy3+长余辉发光材料,并对其性能以及影响其发光性能的因素进行了研究。
3.
CaTiO3:Pr3+ luminous materials with high brightness and long persistence were synthesized by solid sintering technology.
采用稀土直接掺杂工艺和高温固相法,制备出发光亮度较高、余辉性能较为优良的红色长余辉发光材料CaTiO3:Pr3+,并对其发光性能进行了研究。
补充资料:固相萃取法
分子式:
CAS号:

性质:根据被萃取组分与样品基质及其他成分在固定相填料上作用力强弱的不同,使之彼此分离的技术。首先用适当的溶剂将固相萃取吸附剂润湿,然后加入一定体积的被处理样品溶液,使其完全通过吸附剂,让溶液中被测组分保留在吸附剂上,而大量的溶剂和其他不易保留在固相萃取吸附剂上的组分完全流出,再加入适当的洗涤剂从固相萃取吸附剂上除去其他不需要的组分,最后用洗脱液把保留在固相萃取吸附剂上需要测定的组分洗脱下来,直接供测定使用。具有快速、高效、重复性好、选择性好等优点。固相萃取装置主要有柱型和盘状薄膜型,通常是一次性使用,此技术在环境样品前处理的应用主要是对水样的处理,也可用于大气样品的前处理。此法与色谱分析的在线联用越来越广泛,如柱型固相萃取-高效液相色谱的在线联用、固相萃取-气相色谱的在线检测联用等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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