详细信息

Artificial molecular machines that can perform work    

文献类型:期刊文献

中文题名:Artificial molecular machines that can perform work

英文题名:Artificial molecular machines that can perform work

作者:Qiaochun Wang[1];Dizhi Chen[1];He Tian[1]

机构:[1]Key Laboratory for Advanced Materials and Institute of Fine Chemicals, School of Chemistry and Molecular Engineering, East China University of Science and Technology

年份:2018

卷号:61

期号:10

起止页码:1261

中文期刊名:Science China Chemistry

外文期刊名:中国科学(化学英文版)

收录:Scopus;CSCD:【CSCD2017_2018】;

基金:financially supported by the National Natural Science Foundation of China (21572063, 21372076);the Science Fund for Creative Research Groups (21421004);the Programme of Introducing Talents of Discipline to Universities (B16017);the Fundamental Research Funds for the Central Universities (222201717003)

语种:英文

中文关键词:molecular machines;molecular motors;rotaxanes;catenanes;switches

外文关键词:分子;机器;人工;机械运动;应用程序;电子设备;工作周期;排水量

摘要:An artificial molecular machine consists of molecule or substituent components jointed together in a specific way so that their mutual displacements could be initiated using appropriate outside stimuli. Such an ability of performing mechanical motions by consuming external energy has endowed these tiny machines with vast fascinating potential applications in areas such as actuators, manipulating atoms/molecules, drug delivery, molecular electronic devices, etc. To date, although vast kinds of molecular machine archetypes have been synthesized in facile ways, they are inclined to be defined as switches but not true machines in most cases because no useful work has been done during a working cycle. More efforts need to be devoted on the utilization and amplification of the nanoscale mechanical motions among synthetic molecular machines to accomplish useful tasks. Here we highlight some of the recent advances relating to molecular machines that can perform work on different length scales, ranging from microscopic levels to macroscopic ones.
An artificial molecular machine consists of molecule or substituent components jointed together in a specific way so that their mutual displacements could be initiated using appropriate outside stimuli. Such an ability of performing mechanical motions by consuming external energy has endowed these tiny machines with vast fascinating potential applications in areas such as actuators, manipulating atoms/molecules, drug delivery, molecular electronic devices, etc. To date, although vast kinds of molecular machine archetypes have been synthesized in facile ways, they are inclined to be defined as switches but not true machines in most cases because no useful work has been done during a working cycle. More efforts need to be devoted on the utilization and amplification of the nanoscale mechanical motions among synthetic molecular machines to accomplish useful tasks. Here we highlight some of the recent advances relating to molecular machines that can perform work on different length scales, ranging from microscopic levels to macroscopic ones.

参考文献:

正在载入数据...

版权所有©华东理工大学 重庆维普资讯有限公司 渝B2-20050021-7 
渝公网安备 50019002500408号 违法和不良信息举报中心