24小时热门版块排行榜    

查看: 1396  |  回复: 1

游文武

木虫 (著名写手)

111

[交流] Expect the unexpected-刘小钢老师组Deng-renren nature nanotechnology封面 已有1人参与

Expect the unexpected-刘小钢老师组Deng-renren nature nanotechnology封面
nnano.2015.30-i1.jpg
新加坡国立大学刘小钢老师课题组Deng renren最近在nature nanotechnology 发表封面文章Temporal full-colour tuning through non-steady-state upconversion-http://www.nature.com/nnano/journal/v10/n3/full/nnano.2014.317.html下文是他介绍自己nature nanotechnology工作的始终,他在浙江大学拿的硕士学位,然后进入刘小钢课题组读博,他的师姐王娟和他曾在nature materials发过一篇论文,他和他师姐王娟已经结婚

When you have discovered something unusual, trust your instinct and pursue it with determination and enthusiasm, says Renren Deng.

My research interests are in the field of lanthanide-doped upconversion nanocrystals, which are inorganic nanophosphors able to convert a beam of near-infrared light into one with a shorter wavelength in the visible or even ultraviolet range. Because of their intriguing optical phenomena, these nanocrystals are promising for many applications such as biological imaging, data storage, security printing, or 3D displays. The first time I heard about upconversion nanocrystals was in 2009 when I was looking for an advisor for my PhD studies and first met with Xiaogang Liu, a professor in the Department of Chemistry at the National University of Singapore. Before that, I was at Zhejiang University in China for my undergraduate studies and my thesis project mainly focused on the development of chemical sensors based on fluorescent organic molecules. Despite having no background in nanoscience, I decided to join Xiaogang Liu's group as a graduate student and to start working on upconversion nanocrystal-based research because of his encouragement and his belief that I could do it well. More importantly, it was also because I trusted my instinct and was not afraid to face the challenges; this led to the publication of my work on page 237 of this issue.


RENREN DENG
In early 2010, just the second week after I went into the lab and started my experiments, I began working on the synthesis of upconversion nanocrystals. I was following a procedure reported in the literature and I expected that my nanocrystals dispersed in a solution would emit red light when excited with a 980-nm laser. However, to my surprise, I observed unexpectedly that when the nanocrystal solution was gently shaken in front of the laser beam, it emitted yellow rather than red light. By this time, I had already prepared many different batches of upconversion nanocrystals, but this was the first time that I had observed such a phenomenon. After discussing with my colleagues in the group who had more experience than me in this field, I realized that the observation could be important. Full of excitement, I kept working on the characterization of these nanocrystals. Unfortunately, this proved more challenging than I had anticipated; because I had to continuously shake the particle solution to keep the emission colour changed, I could not place it into a fixed sample chamber for characterization. I still remember the frustration of not being able to perform spectroscopic investigations while shaking the sample solution. So I decided to put this work aside for a while, hoping that one day I could find an explanation for this phenomenon as I continued to expand my knowledge in the field.

In 2012, I was involved in a project on enhanced upconversion through energy clustering, the results of which were published in Nature Materials (13, 157–162; 2014). During the course of the project, I was intrigued by the depth of complexity of the energy transfer mechanism that governs the kinetics of the upconversion process. For example, I learned that by varying the excitation condition of intermediate excited states of lanthanides it should have an impact on the colour of the light emission by the nanocrystals. Having gained this insight into the fundamental physical nature of upconversion emission, I wondered whether the colour change caused by shaking was due to a non-equilibrium multiphoton upconversion process, in which the emission rate of different excited states was dynamically changing, leading to the variation of emission intensity ratios of peaks with different wavelengths.

To trigger this non-equilibrium optical process, I first fabricated a rough homemade mechanical fan with paperboard blades as an optical chopper to produce a pulse stream from a continuous-wave laser beam. I observed a colour change when I used the chopper-modulated laser to excite a solution containing the same upconversion nanoparticles I had prepared previously for the shaking experiments. Importantly, I was also able to measure the emission spectra and validate my hypothesis that the colour change was caused by the variation in emission intensity ratios of different emission peaks.

The preliminary results of tuning the emission colour of the upconversion nanocrystals by pulsed operation of the laser were exciting for my advisor. With help from other group members and our collaborators, we then took a decisive step forward and prepared multicolour-emissive nanocrystals adopting a sophisticated multilayer core–shell structure. We subsequently succeeded in fine-tuning emission in the full colour range by excitation-pulse modulation and in the application of these fascinating optical nanomaterials for volumetric 3D full-colour displays.

I noticed an unusual phenomenon that could not be explained in the early stage of my PhD. Luckily, I was not intimidated by the numerous obstacles at the outset and finally solved the puzzle just before my doctoral degree was granted in July 2014. Given the fact that much of scientific research is about making discoveries and searching for things that are unusual and unexpected, my experience has taught me that the willingness to pay attention to such things, trusting your instinct, and being patient may also be essential.

Author information
Affiliations
Renren Deng is a postdoctoral researcher in the Department of Chemistry, National University of Singapore, Singapore 117543, Singapore
Corresponding author
Correspondence to: Renren Deng
回复此楼

» 猜你喜欢

已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

QQ脚踏车

木虫 (小有名气)


小木虫: 金币+0.5, 给个红包,谢谢回帖
现在是青年千人了, 牛
2楼2016-03-01 17:56:09
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
相关版块跳转 我要订阅楼主 游文武 的主题更新
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[考博] 售SCI一区文章,我:8.O.55.1.O.54,科目齐全,可伽急 +3 0XLacIJUOj8D 2026-08-24 3/150 2026-08-25 01:47 by BZKMTicpDhFj
[论文投稿] 售SCI-T0P文章,我:8O.5.5.1.O.54,科目齐全,可+急 +3 0XLacIJUOj8D 2026-08-24 3/150 2026-08-24 21:59 by BZKMTicpDhFj
[基金申请] 人气不行了 +10 fansofjerry 2026-08-21 10/500 2026-08-24 21:03 by zhanghaozhu
[基金申请] filecode,4个jtjc了 +14 ziyangfang 2026-08-19 17/850 2026-08-24 18:37 by 哈哈蛤?
[基金申请] 今日不放榜?网传国自然预计 8 月 27 日可查结果 +17 医学老男孩 2026-08-20 21/1050 2026-08-24 14:21 by refreshing11
[基金申请] 估计是周四 +4 archvillain 2026-08-18 4/200 2026-08-24 13:53 by zzuzxg
[基金申请] 朋友圈看到的 +7 wangzilk 2026-08-18 9/450 2026-08-24 10:50 by cmrandy
[基金申请] 放榜前的不淡定 20+4 snowwithsea 2026-08-19 17/850 2026-08-24 10:20 by echo8914667
[基金申请] 什么时候开奖? +10 CrisMessi 2026-08-18 11/550 2026-08-24 06:50 by 开心的小狮子
[基金申请] 2026年的国家社科基金项目通讯评审的新规则与新动向、新挑战 +4 process2012 2026-08-23 5/250 2026-08-23 19:58 by jurkat.1640
[教师之家] 跳槽后在研项目怎么办? +5 简单化xn 2026-08-22 10/500 2026-08-23 12:38 by 简单化xn
[基金申请] 今天放榜吗? +15 布布和一二 2026-08-19 16/800 2026-08-23 09:55 by 张春生
[基金申请] 只有每年这种时候来逛逛小木虫 +24 yaoyewhu2008 2026-08-20 26/1300 2026-08-22 17:43 by kammury
[基金申请] 看来今天不会放榜了? +8 chengyan1220 2026-08-21 11/550 2026-08-21 17:52 by dcqxinyang
[基金申请] 时间戳又变了 +13 wuchongjun 2026-08-20 19/950 2026-08-21 17:21 by 紫杉醇
[基金申请] 应该是下周三26日公布了吧? +4 哈哈蛤? 2026-08-21 4/200 2026-08-21 10:58 by Vivilian
[基金申请] 今天放榜没戏了吧 +9 yuleib84 2026-08-19 11/550 2026-08-21 10:06 by gltch
[基金申请] 基金啊基金 +4 longfie172 2026-08-20 4/200 2026-08-21 08:58 by mark mao
[基金申请] 重要消息,中午系统在维护 +11 yuleib84 2026-08-18 12/600 2026-08-20 11:09 by xskun
[基金申请] 明天放榜? +5 Shxjjxjkx 2026-08-18 5/250 2026-08-18 18:14 by -大大大大大-
信息提示
请填处理意见