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Light-emitting MXene quantum dots


200077, Researchers led by Professor Jeongyong Kim at the Department of Energy Science, Sungkyunkwan University, Suwon, Republic of Korea review light-emitting MXene quantum dots.
MXenes have found wide-ranging applications in energy storage devices, sensors, catalysis, etc. owing to their high electronic conductivity and wide range of optical absorption. However, the absence of semiconducting MXenes has limited their applications related to light emission.
Extensively reviewing current relevant research, the authors summarise recent advances in MXene quantum dot (MQD) research on the synthesis, optical properties and applications of MQDs as light emitting quantum materials. Research has shown that quantum dots (QDs) derived from MXene (MQDs) not only retain the properties of the parent MXene but also demonstrate significant improvement on light emission and quantum yield. ....

South Korea , Cheju Do , Republic Of Korea , Jeongyong Kim , Mxene Mqds , Sungkyunkwan University , Department Of Energy Science , Institute Of Optics , Chinese Academy Of Sciences , Opto Electronic Advances , Professor Jeongyong Kim , Energy Science , Electron Adv , Electronic Advances , Chinese Academy , Science Citation Index Expanded , Citation Report , Impact Factor , தெற்கு கொரியா , செஜு செய் , குடியரசு ஆஃப் கொரியா , துறை ஆஃப் ஆற்றல் அறிவியல் , நிறுவனம் ஆஃப் ஒளியியல் , சீன கலைக்கழகம் ஆஃப் அறிவியல் , ஆற்றல் அறிவியல் , சீன கலைக்கழகம் ,

Generation of super-resolved optical needle and multifocal array using graphene oxide metalenses


200031, Researchers led by Professor Baohua Jia at Swinburne University of Technology, Victoria, Australia, Professor Cheng-Wei Qiu at National University of Singapore, Singapore and Professor Tian Lan at Beijing Institute of Technology, Beijing, China considered the generation of super-resolved optical needle and multifocal array using graphene oxide metalenses.
Ultrathin and lightweight, metalenses are becoming increasingly significant for their use in photonic chips, biosensors and micro imaging systems such as smart phone cameras.
Compared to conventional lenses, metalenses can improve the image quality of current cameras, by enhancing resolution and removing spherical and chromatic aberrations. A single ultrathin (less than the thickness of 1/100 of a human hair) metalens element can be used instead of the multiple element imaging systems required by conventional lenses. Due to the unique light-matter interaction in a confined 2D plane, 2D materials are ideal for use ....

Chengwei Qiu , Chenglong Hao , Hongtao Wang , Yongtian Wang , Baohua Jia , Chan Lin , Centre For Translational Atomaterials , Swinburne University Of Technology , Institute Of Optics , Chinese Academy Of Sciences , Opto Electronic Advances , Professor Baohua Jia , Swinburne University , Professor Cheng Wei Qiu , National University , Professor Tian Lan , Beijing Institute , Tian Lan , Translational Atomaterials , Electronic Advances , Chinese Academy , Science Citation Index Expanded , Citation Report , Impact Factor , Technology Engineering Computer Science , Technology Transfer ,