王昱沆 教授-尊龙凯时

发布时间:2023-06-01访问量:15849




教授     博士生导师

 

课题组尊龙凯时主页

 

王昱沆,苏州大学功能纳米与软物质研究院青年特聘教授,2012年本科毕业于中国西北大学化学与材料科学学院;2017年获得复旦大学博士学位,导师为郑耿锋教授;2017年至2020年于加拿大多伦多大学电子与计算机工程系从事博士后研究,合作导师为edward h. sargent教授。近年来主要从事面向可再生燃料电催化生产的催化剂与器件设计。具体研究方向包括电解水制氢、二氧化碳电催化还原与电化学合成氨。目前已在国际学术期刊,包括naturesciencenature catalysisnature communicationsjournal of the american chemical societynano lettersadvanced materialsadvanced energy materials等,发表sci论文40余篇,其中以第一作者发表论文11篇。曾先后获得陶氏化学可持续发展创新奖、博士生国家奖学金、2016 mrs graduate student travel grant等奖项。

 

尊龙凯时的联系方式yhwang1988@suda.edu.cn

 

研究方向

我们致力于开发面向可再生燃料生产的碳中和的电化学装置。具体研究方向包括以下3个方面:

1.    电催化过程机理的研究:通过合作利用先进的原位表征技术和机理研究手段,进而更好、更动态地了解电催化反应过程;

2.    催化剂材料设计:我们的团队利用新的机理发现来合理设计具有独特成分、电子结构和表面的催化剂;

3.    催化反应器设计:我们更致力于通过电催化器件的设计和优化,将催化性能推向满足实际应用需求的水平。

 

代表性论文

1.      y. wang, j. liu, g. zheng*. designing copper-based catalysts for efficient carbon doxide electroreduction. adv. mater. 33, 2005798(2020)

2.      x. lv, l. shang, s. zhou*, s. li, y. wang, z. wang, t.-k. sham, c. peng, g. zheng*. electron-deficient cu sites on cu3ag1 catalyst promoting co2 electroreduction to alcohols. ad. energy mater. 10, 2001987 (2020).

3.      a. ozden, f. li, f. pelayo garcía de arquer, a. rosas-hernández, a. thevenon, y. wang, s.-f. hung, x. wang, b. chen, j. li, j. wicks, m. luo, z. wang, t. agapie*, j. c. peters*, e. h. sargent*, d. sinton*. high-rate and efficient ethylene electrosynthesis using a catalyst:promoter:transport layer. acs energy lett. 5, 2811-2818 (2020).

4.      j. li, a. xu, f. li, z. wang, c. zou, c. m. gabardo, y. wang, a. ozden, y. xu, d.-h. nam, y. lum, j. wicks, b. chen, z. wang, j. chen, y. wen, t.-t. zhuang, m. luo, x. du, t.-k. sham, b. zhang, e. h. sargent*, d. sinton*. enhanced multi-carbon alcohol electroproduction from co via modulated hydrogen adsorption. nat. commun. 11, 3685 (2020).

5.      w. r. leow, y. lum, a. ozden, y. wang, d.-h. nam, b. chen, j. wicks, t.-t. zhuang, f. li, d. sinton, e. h. sargent*. chloride-mediated selective electrosynthesis of ethylene and propylene oxides at high current density. science 368, 1228-1233 (2020).

6.      y. wang, a. xu, z. wang, l. huang, j. li, f. li, j. wicks, m. luo, d.-h. nam, c.-s. tan, y. ding, j. wu, c.-t. dinh, d. sinton, g. zheng, e. h. sargent*. enhanced nitrate-to-ammonia activity on copper-nickel alloys via tuning of intermediate adsorption. j. am. chem. soc.142, 5702-5708 (2020).

7.      y. wang, z. wang, c.-t. dinh, j. li, a. ozden, m. g. kibria, a. seifitokaldani, c.-s. tan, c. m. gabardo, h. zhou, f. li, y. lum, c. mccallum, y. xu, m. li, a. proppe, a. johnston, p. todorovic, t.-t. zhuang, d. sinton, s. o. kelly, e. h. sargent*. catalyst synthesis under co2 electroreduction favours faceting and promotes multi-carbon hydrocarbon electrosynthesis. nat. catal. 3, 98-106 (2020).

8.      y. lum, j. e. huang, z. wang, m. luo, d.-h. nam, w. r. leow, b. chen, j. wicks, y. li, y. wang, c.-t. dinh, j. li, t.-t. zhuang, f. li, t.-k. sham, d. sinton, e. h. sargent*. tuning hydroxyl binding energy enables selective electrochemical oxidation of ethylene to ethylene glycol. nat. catal. 3, 14-22 (2020).

9.      f. li, y. li, z. wang, j. li, d.-h. nam, y. lum, m. luo, x. wang, a. ozden, s.-f. hung, b. chen, y. wang, j. wicks, y. xu, y. li, c. m. gabardo, c.-t. dinh, y. wang, t.-t. zhuang, d. sinton, e. h. sargent*. cooperative co2-to-ethanol conversion via enriched intermediates at molecule:metal catalyst interfaces. nat. catal. 3, 75-82 (2020).

10.   f. li, a. thevenon, a. rosas-hernandez, z. wang, y. li, c. m. cabardo, a. odzen, c.-t. dinh, j. li, y. wang, j. edwards, y. xu, c. mccallum, l. tao, z.-q. liang, m. luo, x. wang, h.-h. li, c. o’brien, c.-s. tan, d.-h. nam, r. quintero-bermudez, t.-t. zhuang, y. li, z. han, r. david britt, d. sinton, t. agapie*, j. peters*, e. h. sargent*. molecular tuning of co2-to-ethlyene conversion. nature 557, 509-513 (2020).

11.   j. li, z. wang, c. mccallum, y. xu, f. li, y. wang, c. m. gabredo, c.-t. dinh, t.-t. zhuang, l. wang, j. howe, y. ren, e. h. sargent*, d. sinton*. constraining co coverage on copper promotes high-efficiency ethylene electroproduction. nat. catal. 2, 1124-1131 (2019).

12.   y. wang, j. liu, y. wang, y. wang, g. zheng*. efficient solar-driven electrocatalytic co2 reduction in a redox-medium-assisted system. nat. commun. 9, 5003 (2018).

13.   y. wang,l. chen, x. yu, y. wang*, g. zheng*.superb alkaline hydrogen evolution and simultaneous electricity generation by pt-decorated ni3n nanosheets. adv. energy mater. 7, 1601390 (2017).

14.   y. wang, j. liu, y. wang, a. m. al-enizi, g. zheng*.tuning of co2 reduction selectivity on metal electrocatalysts. small13, 1701809 (2017).

15.   y. wang, x. cui, y. zhang, l. zhang, x. gong*, g. zheng*. achieving high aqueous energy storage via hydrogen generation passivation. adv. mater. 28, 7626-7632 (2016).

 

招聘信息

我们热烈欢迎在1)材料合成和电化学、2)膜电极组件与固态氧化物电化学池、与3comsol多物理场模拟等方向有专业背景的博士后研究员和研究助理,并将提供极具竞争力的薪酬。我们同时将为优秀的博士后研究员提供出国访学的机会。

 

我们同样欢迎对电催化感兴趣的、具有相关物理、化学、化工和材料科学背景的本科生和研究生加入课题组。

 

有意者请将简历发送至yhwang1988@suda.edu.cn



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