毕业论文

打赏
当前位置: 毕业论文 > 任务书 >

TCNQ@Mn-BTC主客体复合材料的制备任务书(2)

时间:2022-08-20 21:23来源:毕业论文
[2] Stock N,Biswas S。 Synthesis of metal-organic frameworks (MOFs): routes to various MOF topologies,morphologies, and coniposites。 Chemical reviews。 2011,112(2): 933-969 [3] Li Z Q,Qiu L Q Xu T

[2] Stock N,Biswas S。 Synthesis of metal-organic frameworks (MOFs): routes to various MOF topologies,morphologies, and coniposites。

Chemical reviews。 2011,112(2): 933-969

[3] Li Z Q,Qiu L Q Xu T,et al。 Ultrasonic synthesis of the microporous

 

 

metal-organic framework Cu3(BTC)2 at ambient temperature and pressure: An efficient and environmentally friendly metiiod。 Materials Letters。 2009,63(1):78-80

[4] Qiu L G, Li Z Q, Wu Y,et al。 Facile synthesis of nanocrystals of a microporous metal-organic framework by an ultrasonic method and selective sensing of organoamines。 Chemical Commimications。 2008 (31): 3642-3644

[5] Haque E,Khan N A,Park J H,et al。 Synthesis of a metal-organic framework material,iron terephthalate, by ultrasound, microwave,and conventional electric heating: a kinetic study 。 Chemistry-A European Journal。 2010, 16(3):1046-1052

[6] Khan N A,Jhung S H。 Facile syntheses of metal-organic framework Cu3(BTC)2(H2O)3 under iiltrasouiid。 Kor。 Chem。  Soc。   2009,30:

2921-2926

[7] Kim J,Yang S T,Choi S B,et al。 Control of catenation in CuTATB-n metal-organic frameworks by sonochemical synthesis and its effect on CO2 adsoiption。 Journal of Materials Chemistry。 2011,21(9): 3070-3076 [8] Cao M, Hu C, Wang Y, et al。 A controllable synthetic route to Cu, Cu2O, and CuO nanotubes and nanorods。 Chemical Communications。2003 (15):1884-1885

 

[9] Tian Y, Cong J Z, Shen S P, et al。 Electric control of magnetism in a multiferroic  metal-organic  framework。  Journal  of the Americal Chemical


TCNQ@Mn-BTC主客体复合材料的制备任务书(2):http://www.youerw.com/renwushu/lunwen_98123.html
------分隔线----------------------------
推荐内容