SunCL Group

SunCL Group Our lab (https://www.suncl.idv.tw/) is at room B213 in B2F of engineering building, Chang Gung University (長庚大學; https://www.cgu.edu.tw/), Taiwan.

The group leader is Dr. Chia-Liang Sun (孫嘉良). Our lab (https://www.suncl.idv.tw/) is at room B213 in B2F of engineering building, Chang Gung University (長庚大學; http://www.cgu.edu.tw/), Taiwan. The school is near Taoyuan airport MRT A7 station.

27/09/2024

We worked with Prof. Chun-Chen Yang (楊純誠 教授) in Ming Chi university of technology to use our graphene oxide nanoribbon (GONR) and reduced graphene oxide nanoribbon (rGONR) in lithium sulfur batteries. Using our materials, Prof. Yang and his team published two SCI papers with us in ACS society in 2024. Since 2011, we tried to adopt nanoribbon in different applications and had more than 20 SCI papers. If you think that you want to compare the differences between carbon nanotube, graphene and our GONR (or rGONR), you are welcome to contact us! (The relevant links are provided below.)

明志科大楊純誠教授透過與我們的合作將氧化石墨烯奈米帶GONR(與還原氧化石墨烯奈米帶rGONR)使用在鋰硫電池中,2024年已在ACS發表兩篇論文,我們從2011開始使用GONR(rGONR)已發表超過20篇SCI論文。有興趣了解更多細節請見下面的論文連結。有興趣合作的朋友也歡迎請聯絡我們!

1. Lithium Sulfur Batteries (https://doi.org/10.1021/acssuschemeng.4c06510)
2. Li–S Batteries (https://doi.org/10.1021/acsaem.4c00093)
3. Zinc-ion capacitors (https://doi.org/10.1016/j.jpowsour.2022.231627)
4. Microbial fuel cells (https://doi.org/10.1039/D0SE00673D)
5. Glucose fuel cell (https://doi.org/10.1016/j.jtice.2018.09.034)
6. Sodium Ion Batteries (http://doi.org/10.1002/admi.201600357)
7. Supercapacitor (http://doi.org/10.1039/C3TA12037F)

25/02/2024

Happy New Year!

We used Pt/graphene oxide nanoribbon composites as electrocatalysts for the methanol oxidation reaction in an alkaline s...
19/10/2022

We used Pt/graphene oxide nanoribbon composites as electrocatalysts for the methanol oxidation reaction in an alkaline solution. The visible light sources help to improve the peak oxidation currents of the reaction using our electrocatalysts. [1] You are welcome to check more details in our new paper in 2022. (我們使用白金奈米顆粒"氧化石墨烯奈米帶"複合材料作為鹼性溶液下進行甲醇氧化反應的電觸媒,發現可見光光源可以改善反應的氧化峰值電流,歡迎請利用以下連結看看我們2022的最新論文。) (One of the following links provides the free online article to read. 下面之一的連結可以線上免費閱讀論文。)
References
1. MRS Energy Sustain, (in press, 2022). (https://rdcu.be/cXQc5) (https://lnkd.in/gJphyjiQ)

Abstract In this study, we prepared size-selected Pt/graphene oxide nanoribbon (GONR) composites as fuel-cell anode photoelectrocatalysts for methanol oxidation reaction (MOR) in an alkaline solution. Additionally, we used a light-emitting diode (LED) and a Xeon (Xe) lamp to increase the current den...

We can drill "holes" on the surfaces of "graphene oxide nanoribbons" for aqueous Zn-ion capacitors and electrochemical b...
08/06/2022

We can drill "holes" on the surfaces of "graphene oxide nanoribbons" for aqueous Zn-ion capacitors and electrochemical biosensors. [1, 2] You are welcome to check more details in our two new papers in 2022. (我們可以在"氧化石墨烯奈米帶"的表面"挖洞"用在水相鋅離子電容和電化學生物感測器上,歡迎請利用以下連結看看我們2022的最新論文。) (The links provide the downloadable PDF files. 下面的連結可以下載論文PDF檔案。)
References
1. J. Power Sources, 541, 231627 (2022). (https://authors.elsevier.com/c/1fClp1M7w0X9CK)
2. Microchem J., 179, 107586 (2022). (https://authors.elsevier.com/c/1f3mf,cE8wJgl)

Recently, owing to the increasing demand for wearable electronics, it is necessary to investigate flexible and highly safe energy storage devices. Com…

Happy New Year 2022!
01/02/2022

Happy New Year 2022!

Address

Department Of Chemical And Materials Engineering. Chang Gung University, 259 Wenhua 1st Road, Guishan, Taoyuan, Taiwan (R. O. C. ))
Taoyüan
333323

Opening Hours

Monday 10:00 - 18:30
Tuesday 10:00 - 18:30
Wednesday 10:00 - 18:30
Thursday 10:00 - 18:30
Friday 10:00 - 18:30

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