24小时热门版块排行榜    

查看: 17726  |  回复: 576
本帖产生 1 个 MN-EPI ,点击这里进行查看
当前只显示满足指定条件的回帖,点击这里查看本话题的所有回帖

[资源] Science最新综述:太阳光合成---可见光光催化的前景展望

最新一期的Science杂志刊发了题为Solar Synthesis: Prospects in Visible Light Photocatalysis的综述,介绍了可见光光催化,尤其是有机物的光合成等领域近年来的研究进展,并对该领域进行了展望。文章9页,涉及的范围包括:Mechanisms of Visible Light Photocatalysis,Photogeneration of Organic Radicals,Photocatalytic Activation of Amines,Photogenerated Radical Ions以及Triplet Alkenes。
Background
Interest in photochemical synthesis has been motivated in part by the realization that sunlight is effectively an inexhaustible energy source.Chemists have also long recognized distinctive patterns of reactivity that are uniquely accessible via photochemical activation. However, most simple organic molecules absorb only ultraviolet (UV) light and cannot be activated by the visible wavelengths that comprise most of the solar energy that reaches Earth’s surface. Consequently, organic photochemistry has generally required the use of UV light sources.

Advances
Over the past several years, there has been a resurgence of interest in synthetic photochemistry, based on the recognition that the transition metal chromophores that have been so productively exploited in the design of technologies for solar energy conversion can also convert visible light energy into useful chemical potential for synthetic purposes. Visible light enables productive photoreactions of compounds possessing weak bonds that are sensitive toward UV photodegradation. Furthermore, visible light photoreactions can be conducted by using essentially any source of white light, including sunlight, which obviates the need for specialized UV photoreactors. This feature has expanded the accessibility of photochemical reactions to a broader range of synthetic organic chemists. A variety of reaction types have now been shown to be amenable to visible light photocatalysis via photoinduced electron transfer to or from the transition metal chromophore, as well as energy-transfer processes. The predictable reactivity of the intermediates generated and the tolerance of the reaction conditions to a wide range of functional groups have enabled the application of these reactions to the synthesis of increasingly complex target molecules.

Outlook
This general strategy for the use of visible light in organic synthesis is already being adopted by a growing community of synthetic chemists. Much of the current research in this emerging area is geared toward the discovery of photochemical solutions for increasingly ambitious synthetic goals. Visible light photocatalysis is also attracting the attention of researchers in chemical biology, materials science, and drug discovery, who recognize that these reactions offer opportunities for innovation in areas beyond traditional organic synthesis. The long-term goals of this emerging area are to continue to improve efficiency and synthetic utility and to realize the long-standing goal of performing chemical synthesis using the sun.

/Science最新综述:太阳光合成---可见光光催化的前景展望
F1.medium.gif
回复此楼

» 本帖附件资源列表

  • 欢迎监督和反馈:小木虫仅提供交流平台,不对该内容负责。
    本内容由用户自主发布,如果其内容涉及到知识产权问题,其责任在于用户本人,如对版权有异议,请联系邮箱:xiaomuchong@tal.com
  • 附件 1 : Solar_Synthesis:_Prospects_in_Visible_Light_Photocatalysis.pdf
  • 2014-02-28 08:41:38, 658.99 K

» 本帖已获得的红花(最新10朵)

» 猜你喜欢

已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

飞白

金虫 (正式写手)


LZ,打不开,请麻溜的重新上传一下呗
110楼2014-03-02 19:41:44
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
查看全部 577 个回答
简单回复
2014-02-28 08:53   回复  
五星好评  顶一下,感谢分享!
wkkkk3楼
2014-02-28 09:09   回复  
五星好评  顶一下,感谢分享!
2014-02-28 09:11   回复  
五星好评  顶一下,感谢分享!
shardowzx5楼
2014-02-28 09:25   回复  
五星好评  顶一下,感谢分享!
chonsliu6楼
2014-02-28 09:29   回复  
五星好评  顶一下,感谢分享!
wrzx7楼
2014-02-28 09:41   回复  
五星好评  顶一下,感谢分享!
iodo28楼
2014-02-28 10:13   回复  
五星好评  顶一下,感谢分享!
2014-02-28 10:18   回复  
五星好评  顶一下,感谢分享!
lulinsmann10楼
2014-02-28 10:33   回复  
五星好评  顶一下,感谢分享!
yuanye1211楼
2014-02-28 10:43   回复  
五星好评  顶一下,感谢分享!
langty220712楼
2014-02-28 10:53   回复  
五星好评  顶一下,感谢分享!
zhaocl13楼
2014-02-28 11:06   回复  
五星好评  顶一下,感谢分享!
wzwanglab14楼
2014-02-28 11:42   回复  
五星好评  顶一下,感谢分享!
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[考研] 材料与化工 322求调剂 +6 然11 2026-03-19 6/300 2026-03-25 18:37 by haxia
[考研] 材料277求调剂 +4 min3 2026-03-24 4/200 2026-03-25 15:29 by fch1983
[考研] 311求调剂 +3 冬十三 2026-03-24 3/150 2026-03-24 21:31 by peike
[考研] 300求调剂,材料科学英一数二 +5 leaflight 2026-03-24 5/250 2026-03-24 16:25 by laoshidan
[考研] 085404电子信息284分求调剂 +4 13659058978 2026-03-24 4/200 2026-03-24 12:15 by syl20081243
[考博] 26申博自荐 +3 whh869393 2026-03-24 3/150 2026-03-24 09:55 by 21018060
[考研] 求调剂材料学硕080500,总分289分 5+3 @taotao 2026-03-19 21/1050 2026-03-23 10:17 by 冠c哥
[考研] 275求调剂 +6 shansx 2026-03-22 8/400 2026-03-22 15:27 by barlinike
[考研] 求调剂 +5 Zhangbod 2026-03-21 7/350 2026-03-22 13:13 by Zhangbod
[考研] 材料与化工(0856)304求B区调剂 +3 邱gl 2026-03-20 7/350 2026-03-21 19:05 by 15709483992
[考研] 求调剂 +4 要好好无聊 2026-03-21 4/200 2026-03-21 18:57 by 学员8dgXkO
[考研] 求调剂 +3 白QF 2026-03-21 3/150 2026-03-21 13:12 by zhukairuo
[考研] 求调剂 +6 Mqqqqqq 2026-03-19 6/300 2026-03-21 08:04 by JourneyLucky
[考研] 南京大学化学376求调剂 +3 hisfailed 2026-03-19 6/300 2026-03-20 23:43 by hisfailed
[考研] 288求调剂 +16 于海海海海 2026-03-19 16/800 2026-03-20 22:28 by JourneyLucky
[考研] 一志愿苏州大学材料求调剂,总分315(英一) +5 sbdksD 2026-03-19 5/250 2026-03-20 22:10 by luoyongfeng
[考研] 材料学硕297已过四六级求调剂推荐 +11 adaie 2026-03-19 11/550 2026-03-20 21:30 by laoshidan
[考研] 一志愿西南交通 专硕 材料355 本科双非 求调剂 +5 西南交通专材355 2026-03-19 5/250 2026-03-20 21:10 by JourneyLucky
[考研] 295材料求调剂,一志愿武汉理工085601专硕 +5 Charlieyq 2026-03-19 5/250 2026-03-20 20:35 by JourneyLucky
[考研] 材料考研调剂 +3 xwt。 2026-03-19 3/150 2026-03-19 11:22 by w沐阳w
信息提示
请填处理意见