皇冠网社区-皇冠网足球足球投注平台

4月18日 Wies?aw Stanis?aw Str?k教授學術報告(物理與電子工程學院)

來源:物電學院作者:時間:2024-04-15瀏覽:178設置

報 告 人:Wies?aw Stanis?aw Str?k 教授

報告題目:Laser-Induced Hydrogen Generation from alcohols and water using Graphene as a Target

報告時間:2024年4月18日(周四)上午9:00-10:00

報告地點:物理與電子工程學院428會議室

主辦單位:物理與電子工程學院、科學技術研究院

報告人簡介:

He received a PhD degree in at the Institute of Low Temperature and Structure Research, Polish Academy of Sciences in Wroclaw in 1979 and Full Professor title in 1991. Employed at the Institute of Low Temperature and Structure Research, Polish Academy of Sciences in Wroclaw since 1971. His research activity covers laser spectroscopy, luminescence properties of rare earth and transition metal ions in crystal, glasses and nanostructures, theory of electronic relaxation (f-f and d-d radiationless transitions, multiphoton transitions in rare earth complexes, cooperative interactions) in metal complexes, nonlinear optics, sol-gel materials, nanotechnology, size-effects in nanomaterials, nanomaterials for fuel cells, nanophosphors, optical nanoceramics, optical sensors, biophysics (photodynamical therapy, bioimaging, cryotherapy). Author/co-author of around 800 papers with more than 13000 citations (without self-citations), Hirsch index-57. Co-author of more than 35 patents and patent applications in optical security, nanotechnology, cryotherapy, laser therapy, sol-gel technology, phosphors, thermal insulation porous materials, magnetic materials. Visiting professor at institutes and universities in France, Denmark, Brazil, Israel, Belarus, Russia, Vietnam, Italy, Germany.

Member of editorial boards of Journal of Alloys and Compounds (Elsevier), Journal of Rare Earth (Elsevier), Reports in Physics (Elsevier), Polish Materials Science, ISRN Spectroscopy, Acta Bio-Optica et Informatica Medica.

報告摘要:

The present work demonstrates a new concept of the efficient generation of hydrogen from alcohols by the continuous wave laser diode irradiation of an immersed graphene aerogel (GA) scaffold as target. It was observed that the process occurred very intensively when it was assisted by bright white light emission in the spot of laser irradiated GA scaffold. The yield of hydrogen emission increased exponentially with the applied laser power. The light emission was assisted by the intense production of H2, CH4 and CO gases. It was found that with increasing excitation laser power, the H2 generation increased at the expense of CO. It is shown that the volume of CO decreases due to the formation of C2 molecules and CO2 gases. The mechanism of the laser driven dissociation of methanol was discussed in terms of the violent ejection of hot electrons from the GA surface as a result of the laser induced light emission of the graphene target.

返回原圖
/

娱乐城彩金| 百家乐里面的奥妙| 大发888开户注册首选| 百家乐论坛白菜| 大发888娱乐场下载英皇国际| bet365高尔夫娱乐场| 澳门百家乐官网加盟| 菲律宾卡卡湾| 淘宝博百家乐官网的玩法技巧和规则| 现场百家乐能赢吗| 札达县| 做生意门朝哪个方向好| 赌球| 百家乐官网怎样做弊| 属狗与属猪能做生意吗| 怎样看百家乐官网牌| 澳门百家乐群代理| 百家乐官网赢钱公式1| 粤港澳百家乐赌场娱乐网规则 | 云霄县| 宝博百家乐娱乐城| 司法| 找查百家乐玩法技巧| 大渡口区| 大发888游戏客服电话| 皇冠百家乐官网的玩法技巧和规则 | 澳门百家乐官网技巧皇冠网| 新皇冠现金网| 百家乐官网骗局视频| 百家乐开户过的路纸| 百家乐官网赌神| 大发888娱 太阳城| 百家乐完美一对| 百家乐实时路单| 三国百家乐官网的玩法技巧和规则| 芒康县| 百家乐群的微博| 百家乐如何稳赢| 百家乐视频免费下载| 百家乐官网视频游戏网址| 百家乐官网假在哪里|