師資
葛锜博士,南方科技大學(xué)機(jī)械與能源工程系副系主任,長(zhǎng)聘教授,博士生導(dǎo)師,深圳市高機(jī)能材料增材制造重點(diǎn)實(shí)驗(yàn)室主任,深圳質(zhì)多三維科技有限公司聯(lián)合創(chuàng)始人。國(guó)家級(jí)青年人才,廣東省高層次人才、深圳市海外高層次人才。擔(dān)任International Journal of Extreme Manufacturing, Microsystems & Nanoengineering等高水平期刊編委。曾在美國(guó)麻省理工學(xué)院從事博士后研究,在新加坡科技設(shè)計(jì)大學(xué)擔(dān)任助理教授。自2019年6月全職回國(guó)后,先后主持國(guó)家自然科學(xué)基金面上、科技部國(guó)家重點(diǎn)研發(fā)計(jì)劃課題等項(xiàng)目。主要研究領(lǐng)域包括智能材料與結(jié)構(gòu)、4D打印、軟體機(jī)器人、柔性電子等。葛锜博士總共發(fā)表期刊論文100余篇,其中包括以第一作者或者通訊作者身份發(fā)表Science Advances, Nature Communications, Advanced Materials等高水平論文。Google Scholar引用15000余次,H-index 52,連續(xù)4年入選Elsevier中國(guó)高被引學(xué)者、斯坦福大學(xué)全球前2%頂尖科學(xué)家。
教育經(jīng)歷:
◆2009.08-2012.12 科羅拉多大學(xué)博德分校 機(jī)械工程 博士
◆2006.09-2008.06 浙江大學(xué) 固體力學(xué) 碩士
◆2002.09-2006.06 同濟(jì)大學(xué) 工程力學(xué) 學(xué)士
工作經(jīng)歷:
◆2024.01-至今 南方科技大學(xué) 長(zhǎng)聘教授
◆2019.06-2023.12 南方科技大學(xué) 長(zhǎng)聘副教授
◆2016.04-2019.06 新加坡科技設(shè)計(jì)大學(xué) 助理教授
◆2014.12-2016.03 新加坡科技設(shè)計(jì)大學(xué) 博士后
◆2013.09-2014.11 麻省理工學(xué)院 博士后
◆2013.01-2013.08 科羅拉多大學(xué)博德分校 博士后
人才稱號(hào):
◆2020年,廣東省高層次人才
◆2019年,國(guó)家高層次人才
◆2019年,深圳市高層次人才
所獲榮譽(yù):
◆2021-2024年,入選Elsevier中國(guó)高被引學(xué)者
◆2021-2024年,入選斯坦福大學(xué)全球前2%頂尖科學(xué)家
◆2021年,中國(guó)機(jī)械工程學(xué)會(huì)優(yōu)秀論文
◆2020年,International Journal of Extreme Manufacturing (IJEM) Best Paper Award
◆2020年,Microsystems and Nanoengineering MINE2020 Outstanding Speaker Award
◆2018年,International Association of Advanced Materials (IAAM) Young Scientist Medal
◆2013年,科羅拉多大學(xué)優(yōu)秀博士論文
社會(huì)職務(wù):
◆科研副系主任 南方科技大學(xué)機(jī)械與能源工程系
◆主任 深圳市高機(jī)能材料增材制造重點(diǎn)實(shí)驗(yàn)室
◆聯(lián)合創(chuàng)始人 深圳質(zhì)多三維科技有限公司
◆編委 Microsystems & Nanoengineering期刊(中科1區(qū))
◆編委/副主編 International Journal of Extreme Manufacturing期刊(中科1區(qū))
◆副主任 中國(guó)復(fù)合材料學(xué)會(huì)復(fù)合材料增材制造專業(yè)委員會(huì)
◆主任 【南科大機(jī)械與能源工程系-廣東景云智能科技】聯(lián)合實(shí)驗(yàn)室
◆委員 中國(guó)醫(yī)藥生物技術(shù)協(xié)會(huì)3D打印技術(shù)分會(huì)
代表性論文:
1.Ge Q.*+, Chen Z.+, Chen J.X., Zhang B.*, Zhang Y.F., Li H.G., He X.N., Yuan C., Liu J., Magdassi S., Qu S.X.*, “3D printing of highly stretchable hydrogel with diverse UV curable polymers”, Science Advances, 2021, 7(2), eaba4261.
2.Li H.G., Zhang B., Ye H.T., Jian B.C. He X.N., Cheng JX., Sun Z.C., Wang R., Cheng Z., Lin J., Xiao R., Liu Q.J., Ge Q.*, “Reconfigurable 4D printing via mechanically robust covalent adaptable network shape memory polymer”, Science Advances, 2024, 10(20), eadl4387.
3.He X.N., Zhang B., Liu Q.J., Hao Chen, Cheng J.X., Jian B.C., Yin H.L., Li H.G., Duan K., Zhang J.W., Ge Q.*, “Highly conductive and stretchable nanostructured ionogels for 3D printing capacitive sensors with superior performance”, Nature Communications, 2024, 15,6431.
4.Wang Y.H.+, Ye H.T.+, He J., Ge Q.*, Xiong Y., “Electrothermally controlled origamifabricated by 4D printing of continuous fiber-reinforced composites”, Nature Communications, 2024, 15.
5.Wang R.+, Yuan C.*+, Cheng J.+, He X., Ye H., Jian B., Li H., Bai J., Ge Q.*, “Direct 4D printing of ceramics driven by hydrogel dehydration”, Nature Communications, 2024, 15, 758
6.Cheng J.X., Wang R., Sun Z.C., Liu Q.J., He X.N., Li H.G., Ye H.T., Yang X.X., Wei X.F., Li Z.Q., Jian B.C., Deng W.W., Ge Q.*, “Centrifugal multimaterial 3D printing of multifunctional heterogeneous objects”, Nature Communications, 2022, 13,7931.
7.Ye H.T., Liu Q.J., Cheng J.X., Li H.G., Jian B.C., Wang R., Sun Z.C., Lu Y.*, Ge Q.*, “Multimaterial 3D printed self-locking thick-panel origami metamaterials”, Nature Communications, 2023, 14, 1607.
8.Li C.C.+, Cheng J.X.+, Ye Y.F., He X.N., Xu Z.Y., Ge Q.*, Yang C.H.*, “Polyelectrolyte elastomer-based ionotronicsensors with multi-mode sensing capabilities via multi-material 3D printing”, Nature Communications, 2023, 14, 4853.
9.Zhang B., Kowsari K., Serjouei A., Dunn M.L.*, Ge Q.*, “Reprocessable Thermosets for Sustainable Three-dimensional Printing”, Nature Communications, 2018, 9, 1831.
10.Zhang B.+, Li H.G.+, Cheng J.X.+, Ye H.T., Sakhaei A.H., Yuan C., Rao P., Zhang Y.F., Chen Z., Wang R., He X.N., Liu J., Xiao R., Qu S.X., Ge Q.*, “Mechanically Robust and UV-Curable Shape-Memory Polymers for Digital Light Processing Based 4D Printing”, Advanced Materials, 2021, 2101298.
11.Traugutt N.A., Mistry D., Luo C., Yu K., Ge Q.*, Christopher M. Yakacki*, “Liquid-Crystal-Elastomer-Based Dissipative Structures by Digital Light Processing 3D Printing”, Advanced Materials, 2020, 32(28), 2000797.
12.Patel D.K., Sakhaei A. H., Layani M., Zhang B., Ge Q.*, and Magdassi S.*, “Highly Stretchable and UV Curable Elastomers for Digital Light Processing Based 3D Printing”, Advanced Materials, 2017, 29(15), 1606000.
13.Li H.G.+, Zhang B.+, Wang R., Yang X.D., He X.N., Ye H.T., Cheng J.X., Yuan C., Zhang Y.F., Ge Q.*, “Solvent-Free Upcycling Vitrimers through Digital Light Processing-Based 3D Printing and Bond Exchange Reaction”, Advanced Functional Materials, 2022.
14. Zhang Y.F.+, Zhang N.+, Hingorani H., Ding N., Wang D., Yuan C., Zhang B., Gu G.*, Ge Q.*, “Fast-Response, Stiffness-Tunable Soft Actuator by Hybrid Multimaterial 3D Printing”, Advanced Functional Materials, 2019, 29(15), 1806698.
