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上海申得欧有限公司与复旦大学2016年联合招收博士后科研人员简章
2016年11月15日    硕博招聘网
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上海申得欧有限公司博士后科研工作站与复旦大学联合招收博士后研究人员。
2015年,经人力资源和社会保障部批准,上海申得欧有限公司正式设立博士后科研工作站。
上海申得欧有限公司是德国STO公司在中国的独资企业,也是一家高新技术企业和科技小巨人企业,专业从事建筑涂料和外墙外保温系统材料的生产和销售。
  本博士后科研工作站,采取产学研相结合的形式,把科研成果转化为建筑涂料和外墙外保温系统的新产品,不断提高企业竞争力,推动行业发展,服务社会。
  现将有关事项公告如下:
  一、招收条件
1.具有良好的政治素质和道德修养,遵纪守法,无不良记录;
2.近年在国内外获得博士学位(博士培养单位出具证明,进站前能获得博士学位);
3.年龄一般在35岁以下,身体健康,具有较强的研究能力和敬业精神;
4.在站期间全时从事博士后研究工作(在职人员须脱产);
5.具有与研究方向相关的专业学科背景,有科研工作经验人员优先考虑。
  二、研究方向与领域
  博士后研究人员研究方向为净化类科技成果在建筑涂料中应用。请报名人员结合上述研究方向和导师拟定研究计划题目。
   合作学校复旦大学, 合作导师徐华龙教授
  三、报名时间
2016年11月10日——2017年2月28日。
  四、报名方法
1.申请者请于2017年2月28日前向联系人电子邮箱提交下列申请材料:
  (1)《博士后申请表》,请下载后填写;
  (2)博士期间论文或与所申请的研究领域相关的公开发表学术论文(电子版);
  (3)2名本学科博士生专家推荐信(电子版);
  (4)其他能反映本人学术水平、科研能力的有关材料;
  (5) 属国家统招统分的博士研究生由培养单位的研究生院在申请表的有关栏目注明并加盖公章;属委培、定向、在职等攻读博士学位人员还需提供原单位人事部门同意本人做博士后的证明材料,同时注明对其出站后工作去向的意见;
  (6)留学博士需提供《中华人民共和国驻外使领馆教育处(组)推荐意见》或留学回国人员证明、户口注销证明(出国前已注销户口者提供);在国外获长期居留证的博士,需提交该证件的复印件。
  请优先采用电子版方式投递申请材料。纸质申请材料恕不退还。
2.工作站采取“公开招收,综合考核,择优录取”的原则,公开、公平、公正地招收博士后研究人员。
  五、联系方式
  联系人:朱明,林宣益
 电话:021-58972295-6198,6313 电子邮件 ming.zhu@stoap.com, xuanyi.lin@stoap.com
  (请注明:博士后申请+本人姓名+硕博招聘网
  通信地址:上海申得欧有限公司,上海市浦东新区庆达路288号,邮政编码:201201
  六、待遇及其它
  进站的博士后研究人员的日常经费、工资福利待遇和绩效奖金等参照国家有关规定执行,具体事宜双方面谈。

SHORT FORM POST-DOC PROPOSAL
  

1. Project Title

  
Photocatalytic paint product for the reduction of air pollution in China
  

2. Project Manager and Proposal Supporters

  
Dr. Ming Zhu, Sto SE & Co. KGaA, China
Professor Lin Xuanyi, Sto SE & Co. KGaA, China
Dr. Andreas Weier, Sto SE & Co. KGaA, Germany
  

3. Academic Collaborator and Expertise Supplied

  
Prof Xu Hualong, Fudan University, Shanghai, China
  

4. Purpose of the Project

  
To explore the possible improvement of reactivity of current “Sto Photosan” product
  

5. Why Has This Science Problem Not Been Solved?

  
Photocatalytic facade product “Sto Photosan” has been developed more than 10 years ago in Germany. The product used a unique grade of TiO2 which can be activated by the UV light to reduce the nitrogen oxide and ozone in the atmosphere to battle the air pollution. The product has been proved quite successful in Europe while in China, it has been a challenge for Sto to sale this product. There are some reasons associated such as:
<!--[if !supportLists]-->a. <!--[endif]-->The major air pollution type in China is PM2.5 which caused mist in most of the China cities especially in autumn. How do “Sto Photosan” react with PM2.5 is a question to answer.
<!--[if !supportLists]-->b. <!--[endif]-->Academic debates on whether photocatalytic activity is beneficial to the environment or even caused problem is still on going. Sto China needs strong evidence to prove “Sto Photosan” is a safe product to use which can contribute to reduce the air pollution.
<!--[if !supportLists]-->c. <!--[endif]-->There is limited pollution type e.g. nitrogen oxide and ozone can be reduced by “Sto Photosan”, is there any possibility of improving the reactivity to even reduce the level of VOCs.
<!--[if !supportLists]-->d. <!--[endif]-->The discussion of whether the limiting factor of “Sto Photosan” is due to the reactivity or the wind need to be proved first.
  
6. Approach to Solving the Science Problem
  
Sto Photosan is an innovative functional paint to battle the air pollution, TiO2 based catalyst with decreased band gap and good h+ - e- pairs stability exhibits high photocatalytic activity forthe reduction of NOx and O3 under proper reaction condition. To our best knowledge, the activity and stability are affected by the band gap of TiO2 and recombination of generated positive hole (h+) and negative electron (e-) pairs. For unique grade of TiO2 based catalyst, the atmospheric condition is the key parameters for its wide application. In China, the atmospheric situation is different significantly, such as temperature, humidity, UV strength, VOCs, wind and PM2.5 et al. Temperature and UV strength prompt the electron transfer and stabilize h+ - e- pairs, H2O and VOCs will be competitive adsorption with target compounds on the active sites, external diffusion will be greatly influenced by wind and PM2.5. So, for Sto Photosan, its application will be restrained from environmental conditions. In order to extend the application market of Sto Photosan in China, it is meaningful to develop kinetic study on Sto Photosan and modify of TiO2 crystal to enhance photocatalytic activity under model atmospheric condition.
  

7. Extendability of the Proposed Approach

  
As well as offering the scope for putting the product exterior, this approach could potentially be extended to be used for indoor.
  
  
8. Description of the Proposed Project
  
Milestones Year 1
<!--[if !supportLists]-->· <!--[endif]-->Development      of methods to prove the limiting factor of “Sto Photosan”
<!--[if !supportLists]-->· <!--[endif]-->Test of the      photocatalytic activity in terms of different pollution sources
<!--[if !supportLists]-->· <!--[endif]-->Analyse the      ingredients after the photocatalytic reactivity to prove the safety to the      atmosphere.
  
Milestones Year 2
<!--[if !supportLists]-->· <!--[endif]-->Attempts at      improving the reactivity of photocatalytic TiO2 to various pollutions (VOCs)
<!--[if !supportLists]-->· <!--[endif]-->Test the      feasibility of developing the new generation “Sto Photosan”
  
  
The project will deliver;
<!--[if !supportLists]-->· <!--[endif]-->Knowledge      and understanding regarding the capability of current “Sto Photosan”
<!--[if !supportLists]-->· <!--[endif]-->Methods of      developing and characterising photocatalytic TiO2
<!--[if !supportLists]-->· <!--[endif]-->Methods of      testing to influence the National bureau standardization
<!--[if !supportLists]-->· <!--[endif]-->A few patents on photocatalytic TiO2 and paint products
 
  
 
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