全校師生:
我校定于2017年9月9日舉辦研究生靈犀學(xué)術(shù)殿堂——Harald Fuchs報(bào)告會(huì),現(xiàn)將有關(guān)事項(xiàng)通知如下:
1.報(bào)告會(huì)簡(jiǎn)介
報(bào)告人:Harald Fuchs 教授、院士
時(shí) 間:2017年9月9日(星期六) 上午9:30
地 點(diǎn):長(zhǎng)安校區(qū)數(shù)字化大樓二樓會(huì)議室
主 題: Bottom-up strategies for multilevel organic systems
- From molecules to devices -
內(nèi)容簡(jiǎn)介:Directed self-assembly on surfaces opened a vast variety of opportunities to control the functional properties of self-assembled molecular systems based on the spatial confinement of (nano-structured) surfaces and their catalytic properties. Thus, the bottom up strategy allows, in principle, to direct the formation of unique polymeric networks, local biomimetic interfaces and complex multilevel structures, such as organic sensors and transistors with unprecedented precision, while the conventional wet chemical treatment for their development leading to swelling effects is avoided. This basic nanotechnology strategy using direct non-energetic material deposition at predefined positions with atomic precision thus allows the generation of complex and functional 3D molecular hetero-structures with molecularly sharp interfacial boundaries.
We will discuss the following selected examples with three different levels of complexity:
- Selective surface chemistry for generating specific products as depending on the surface material and its crystallographic orientation [1] and 2D organic network formation [2]
- Formation of biomimetic surfaces for sensing [3] and capture of rare cells for medical diagnostics [4]
- High performance OFETs and integrated molecular electronics [5]
[1] H. J. Gao et al., Angew. Chem. Int. Ed., 55 (2016) 9777-9782
[2] H.Y. Gao et al., JACS, 136 (2014) 9658?9663
[3] S. Lenhert et al., Nature Nanotechnol., 5 (2010) 275
[4] F. Brinkmann et al., Scientific Reports | 5:15342 | (2015) DOI: 10.1038/srep15342
[5] D. Ji et al., J. Am. Chem. Soc. 139 (7) (2017) 2734–2740
2.歡迎各學(xué)院師生前來(lái)聽(tīng)報(bào)告。報(bào)告會(huì)期間請(qǐng)關(guān)閉手機(jī)或?qū)⑹謾C(jī)調(diào)至靜音模式。
黨委研究生工作部 理學(xué)院
2017年9月7日
報(bào)告人簡(jiǎn)介
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1、主要學(xué)術(shù)榮譽(yù) |
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德國(guó)科學(xué)院院士、德國(guó)工程院院士、歐洲科學(xué)院院士以及發(fā)展中國(guó)家科學(xué)院院士。因?yàn)榻艹龅膶W(xué)術(shù)成就,曾獲得“菲利普莫里斯獎(jiǎng)”、德國(guó)聯(lián)邦十字勛章等榮譽(yù)。 |
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2、主要學(xué)術(shù)兼職 |
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重要學(xué)術(shù)機(jī)構(gòu)委員/成員
學(xué)術(shù)機(jī)構(gòu)和期刊主編、編委、顧問(wèn) |
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3、主要學(xué)術(shù)成就 |
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Harald Fuchs教授現(xiàn)任德國(guó)明斯特大學(xué)物理研究所所長(zhǎng)、德國(guó)科學(xué)院院士、德國(guó)工程院院士、歐洲科學(xué)院院士及發(fā)展中國(guó)家科學(xué)院院士。他于1985在IBM研究實(shí)驗(yàn)室從事博士后的研究工作,1985年至1993年擔(dān)任德國(guó)BASF公司項(xiàng)目主管,1993年至今在德國(guó)明斯特大學(xué)從事研究工作。Harald Fuchs教授是明斯特大學(xué)納米技術(shù)研究中心的創(chuàng)始人,曾任納米技術(shù)研究中心科學(xué)主任。Harald Fuchs教授長(zhǎng)期從事表面化學(xué)反應(yīng)及納米生物領(lǐng)域的研究工作并作出了重要貢獻(xiàn)。迄今已在Nature、 Science、Nature Nanotech.、Nature Mat.、JACS、Angew. Chem. Int. Ed.、Adv. Mater.等重要期刊發(fā)表論文500余篇,擁有33個(gè)專(zhuān)利申請(qǐng)。 |