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鄭州大學2017年研究生國際暑期學?!瘜W分校招生簡章

發布時間:2017年06月23日 信息來源:化學與分子工程學院

鄭州大學2017年研究生國際暑期學?!瘜W分校招生簡章

鄭州大學2017年研究生國際暑期學?!瘜W分校招生簡章

發布人:楊明 信息來源:化學與分子工程學院 發布日期:2017.06.23 閱讀次數:22906

為提升我校研究生課程體系國際化程度,加快我校研究生教育國際化進程,增強研究生創新意識與創新能力,培養具有國際視野的高質量人才,由鄭州大學研究生院主辦、化學與分子工程學院承辦的2017年研究生國際暑期學?!瘜W分校于2017年8月13日至16日在鄭州大學新校區化學館化學與分子工程學院學術報告廳(208室)舉行。通過聘請國內外知名學者講授(全英授課)學術前沿課程和專業基礎課程,實現優質教學資源共享,為研究生搭建夯實專業基礎、提高研究水平、培養創新能力的國際交流平臺。

一、招生對象及要求

國內外學校相關專業在校研究生、本院研究生及本校相關專業在校研究生;準備第一志愿報考我院碩士研究生的全日制本科三年級在校生(化學專業學生,其中一本高校的學生專業排名在年級前20%,二本高校的學生專業排名在年級前10%。);因全程采用英語授課,要求學員英語功底好,原則上要求本科生英語通過CET4以上,研究生英語通過CET6以上,且具有英語聽課的適應能力。

二、招生計劃

本次暑期學校,計劃招收學生80-100人,其中本科生20-40名,研究生40-60名。

三、教學安排:

1.2017年8月13日學生報到,8月14日上午開學典禮,8月16日結業。

2.邀請加拿大皇家科學院院士、加拿大McGill University, Chao-Jun Li 教授, 日本京都大學副校長Hiroshi KITAGAWA教授,中科院上海有機所丁奎嶺 院士 和 北京大學 席振峰 院士為學員授課。授課內容如下(暫定):

Prof. Chao-Jun Li

Title:Green Chemistry towards Future Sustainability

Chemistry plays the central role in modern sciences and technologies. The efficient transformation of matters is vital in any new products in the pharmaceutical, materials science, microelectronics, energy and biotech industries. On the other hand, chemical manufacturing and chemical products have also affected us adversely from personal, local, national, and international scales. As a new philosophy over the last two decades, Green Chemistry through the 12 principles of green chemistry has emerged to develop the next generation of chemical science and technologies, as well as chemical products to meet such challenges in a proactive manner both environmentally and economically, ideally from readily available natural resources directly in a benign solvent with renewable energy. This talk will discuss the fundamental principles of green chemistry and our own laboratory’s exploration of various unconventional chemical reactivity to simplify protection-deprotections, halogenation-dehalogenation as well as the possibility of chemical transformations beyond functionalization and defunctionalization in syntheses, and for solar energy conversions. Many of these new reactions can also be used to functionalize biomass directly.

Prof. Zhenfeng Xi

Title: Chemistry of Organo-di-Metallic Reagents Cooperative Effects and Applications

1)The development of organometallic reagents remains one of the most important frontiers in synthetic chemistry. Commonly used organometallic reagents (such as RLi and RMgBr) are typically monometallic compounds, although they aggregate in many cases. When two carbon–metal bonds are in the same molecule in close proximity, however, these two carbon–metal moieties may exhibit novel reactivity. In this course, new reactions and synthetic applications of the organo-di-metallic reagents, with focus on 1,4-dilithio-1,3-butadienes, will be outlined.

2)The dimetallic 1,4-dilithio-1,3-butadienes and their transmetallated derivatives provide unique synthetic organometallic reagents that are very different from monometallic reagents, both in terms of reactivity and synthetic application. These organo-dimetallic reagents provide access to interesting and useful compounds that are not available by other means. Moreover, given the possibilities afforded, the study of organo-dimetallic and organo-polymetallic compounds should yield further synthetic applications in the near future.

3)Three major topics will be discussed in this course. Part I: Synthesis and Structural Characterization of Organo-di-Metallic Reagents; Part II: Semibullvalene and Diazasemibullvalene: Recent Advances in the Synthesis, Reaction Chemistry, and Synthetic Applications; Part III: Metalla-aromatics and Spiro Metalla-aromatics.

Prof. Hiroshi KITAGAWA

Title:

1. Low-dimensional electron systems situated on dimensional crossover region.

2. Solid-state protonics using MOFs and SurMOFs, and nano-ionics using nanomaterials.

3. Creation of Novel Solid-Solution Alloy Nanoparticles on the Basis of Density-of-States Engineering by Interelement Fusion.

4. Molecular conductors and conducting MOFs.

Prof. Kuiling Ding

Title:Chiral Catalyst Evolution: Rational Design and Serendipity

1) Development of practical methods for asymmetric synthesis of optically active compounds represents a great challenge in the area of chiral chemistry, in which chiral ligand and catalyst design plays a critically important role. As our continuing effort to develop highly efficient chiral catalysts for homogeneous asymmetric reactions, the first part of presentation will focus on the stories of chiral catalyst evolution based on the mechanistic understanding and serendipity.

2) The second part will present a conceptually new strategy, i.e. “self-supporting” approach, for the immobilization of homogeneous catalysts through self-assembly of chiral multi-topic ligands and metal ions, without using any support. In addition to the simple recovery and convenient recycle commonly associated with heterogeneous catalysts, such kind of homochiral metal-organic assemblies may also exhibit advantages of facile preparation, robust chiral structures and excellent enantioselectivities. These remarkable features coupled with the versatile methods for rational design and synthesis of the multitopic chiral ligand, suggest a considerable scope of application of this “self-supporting” strategy in the development of new, efficient, and practical catalysts for the heterogeneous asymmetric catalysis.

3.主講教授與學員座談、交流;組織參觀學科實驗室、我院實驗中心儀器共享平臺及與學科相關老師進行座談。

四、報名與錄取

1.報名時間:即日起至2017年6月29日止

2.申請報名

(1)下載填寫報名申請表:

下載地址:鄭州大學化學與分子工程學院主頁——學院公告——2017暑期學校報名表

(2)請將填寫完整的申請表、學生證和身份證電子版于6月29日前發送到如下電子郵箱:hxyb@zzu.edu.cn

收件人:劉晨湘, 聯系電話:0371-67781815

(3)錄取

鄭州大學化學與分子工程學院將聘請相關領域專家,根據申請人提供的材料對其進行綜合評價,并作為主要錄取依據。錄取結果擬于7月3日前在鄭州大學化學與分子工程學院主頁上公布。入選學生需在7月5日前確認是否參加,逾期未確認視為放棄此資格。

(4)報到地點:鄭州大學化學與分子工程學院研究生辦

五、食宿及交通費:我院將為入選學生提供學習期間在校的食宿(學校或家庭所在地是鄭州的學生原則上不安排住宿)。外地學生請自行預定往返車票,我院將資助外地學生往返鄭州的火車硬座票或汽車票費用,學生須提供往返車票票據。另外為學員提供自習地點(化203教室)和電子閱覽室(化205室)進行自習和互聯網檢索。

六、注意事項:

1.學生報到時需攜帶身份證、學生證。

2.暑期學校舉辦期間,要求學生全程遵守暑期學校相關規定。

3.學員須具有健康的身體和良好的心理素質,如發生醫療費用及個人行為導致的意外事故由個人承擔。

以上學生經考核合格,順利結業的學生可獲暑期學校結業證書,本校研究生并獲得2個學分,沖抵相關選修課學分。對于參加暑期學校的本科生第一志愿報考我校并被錄取后,在統招生中優先享受學業全額獎學金(第一學年),并獲得一次性獎勵5000元。

歡迎廣大在讀本科生、碩士研究生、博士研究生積極報名參加本次暑期學校!

鄭州大學研究生院

鄭州大學化學與分子工程學院

2017年6月22日鄭州大學版權所有,禁止非法轉載!2020-10-16 17:48:57

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