您好, 欢迎来到化工仪器网

| 注册| 产品展厅| 收藏该商铺

400-630-2202

news

首页   >>   公司动态   >>   每周分享2.19

麦克默瑞提克(上海)仪器...

立即询价

您提交后,专属客服将第一时间为您服务

每周分享2.19

阅读:706      发布时间:2016-2-19
分享:

今天给大家分享的是20158月份《RSC Advances》上发表的一篇名为:L-asparagine-assisted synthesis of flower-like -Bi2O3 and its photocatalytic performance for degradation of 4-phenylphenol under visible-light irradiation

文章摘要如下:

Synthesis of nanosized -Bi2O3 on a large-scale is a great challenge due to its metastable state. A facile L-asparagine-assisted reflux-calcination route was successfully developed for the large-scale preparation of -Bi2O3 micro/nanostructures under mild conditions (low temperature, atmospheric pressure, and wide temperature window). The composition, phase structure, morphology, surface area, and photoabsorption properties of as-synthesized -Bi2O3 and its precursor were systematically characterized. The phase transformation conditions and possible formation mechanism of flower-like -Bi2O3 were discussed. It is found that with a simple reflux process at 100 C under atmospheric pressure, uniform monodisperse bismuth-asparagine complex microspheres with average diameters of ~500 nm were produced, then flower-like -Bi2O3 micro/nanostructures were conveniently obtained after calcining the precursor at temperatures ranging from 340 to 420 C. A surface CO32- coordination effect introduced from L-asparagine was explained the formation of stabilized -Bi2O3 at low temperature (up to 420 C). The as-synthesized -Bi2O3 shows excellent photocatalytic activity toward the degradation of 4-phenylphenol under visible-light irradiation, which is 3.7 and 21.4 times faster than the removal rates of -Bi2O3 nanospheres and a commercial -Bi2O3, respectively, and allows for the elimination of 93.2% total organic carbon after 60 min of irradiation. In addition, the photogenerated reactive species were identified by radical scavenger experiments and electron paramagnetic resonance spectroscopy, then a possible visible-light-induced photocatalytic mechanisms was proposed.

该文章中材料表征采用的是美国麦克仪器ASAP 2460

详情可参考下面链接:

http://pubs.rsc.org/en/content/articlelanding/2015/ra/c5ra13985f#!divAbstract

产品展示

会员登录

请输入账号

请输入密码

=

请输验证码

收藏该商铺

标签:
保存成功

(空格分隔,最多3个,单个标签最多10个字符)

常用:

提示

您的留言已提交成功!我们将在第一时间回复您~
在线留言