楊建

南京工業大學教授

楊建,南京工業大學材料科學與工程學院教授、博士生導師。

人物經歷


2014.8-現在,南京工業大學材料科學與工程學院,教授;
2013.8-2014.9,美國德雷塞爾大學,訪問學者(江蘇省公派);
2006.7-2014.7,南京工業大學材料科學與工程學院,副教授;
2004.4-2006.6,南京工業大學材料科學與工程博士后流動站,博士后/講師;
1997.8-2003.9,東北大學鋼鐵冶金系,鋼鐵冶金,博士;
1993.8-1997.7,東北大學鋼鐵冶金系,鋼鐵冶金,學士。

研究方向


微波功能材料、先進陶瓷及其成型技術、多元層狀可加工陶瓷、二維過渡族金屬碳(氮)化物、新能源材料。

學術成果


楊建先後承擔了國家自然科學基金、863、前沿技術、江蘇省自然科學基金、遼寧省自然科學基金、江蘇省高技術招標、江蘇省博士后科研資助計劃、江蘇省高校自然科學基金、高性能陶瓷和超微結構國家重點實驗室開放課題及企業委託開發等項目多項。
楊建在PNAS、Adv Sci、Adv Func Mater、ACS Nano、J Am Ceram Soc、J Eur Ceram Soc、Chem Eng J、Corros Sci、Wear、Adv Eng Mater、Chin Phys Lett等權威期刊發表160餘篇學術論文(SCI收錄80餘篇,EI收錄110餘篇),獲發明專利授權18項,有5項科技成果通過省部級鑒定,獲國家級科學技術三等獎1項。與中科院上海硅酸鹽研究所中國工程物理研究院建立了長期、穩定的合作關係。

代表性論文


[1]In-situ formed protective barrier enabled by sulfur@titanium carbide (MXene) ink for achieving high-capacity, long lifetime Li-S batteries. Advanced Science, 2018, 5(9): 1800502 (IF: 15.84)
2.A robust, freestanding MXene-Sulfur conductive paper for long lifetime Li–S batteries.Advanced Functional Materials, 2019, 29(30): 1901907. (IF: 13.325)
3.Flexible and conductive MXene films and nanocomposites with high capacitance. Proceedings of the National Academy of Sciences, 2014, 47, 16676-16681 (IF: 9.423)
4.Stretchable Ti3C2Tx MXene/carbon nanotube composite based strain sensor with ultrahigh sensitivity and tunable sensing range. ACS Nano, 2018, 12: 56-62 (IF: 14.588)
5.2D MXene nanofilms with tunable gas transport channels. Advanced Functional Materials, 2018, 28(31): 1801511 (IF: 13.325)
6.Ultralight Ti3C2Tx MXene foam with superior microwave absorption performance.Chemical Engineering Journal, 2020, 408: 127283. (IF: 10.652)
7.In situ synthesis, mechanical properties, and oxidation resistance of (SiC+ZrB2)/Zr3[Al(Si)]4C6 composites, Corrosion Science, 2016,110(2): 182-191 (IF: 5.245)
8. Synthesis and characterization of two-dimensional Nb4C3 (MXene). Chemical Communication, 2014, 50: 9517-9520 (IF: 6.567)
9.Preparation of mesoporous silica ceramics with relatively high strength from industrial wastes by low-toxic aqueous gel-casting. Journal of the European Ceramic Society, 2015, 35(7): 2163-2170 (IF: 3.454)
10.Microstructure, mechanical, and thermal properties of (ZrB2+ZrC)/Zr3[Al(Si)]4C6 composite. Journal of the American Ceramic Society, 2014, 97(9): 2950-2956 (IF: 2.787)
11.Synergistically Enhanced Lithium Storage Performance Based on Titanium Carbide Nanosheets (MXene) Backbone and SnO2 Quantum Dots. Electrochimica Acta, 2018, 268: 503-511 (IF: 6.215)
12.Synthesis of two-dimensional Ti3C2Tx MXene using HCl+LiF etchant: enhanced exfoliation and delamination. Journal of Alloys and Compounds, 2017, 695: 818-826 (IF: 4.175)
13.Two-Dimensional Nb-based M4C3 Solid Solutions (MXenes), Journal of the American Ceramic Society, 2016, 99(2): 660-666 (IF: 2.956)
14.Electrical conductivity, dielectric and microwave absorption properties of graphene nanosheets/magnesia composites. Journal of the European Ceramic Society, 2018, 38(4): 1639-1646 (IF: 4.495)
15.Environmental Friendly Scalable Production of Colloidal 2D Titanium Carbonitride MXene with Minimized Nanosheets Restacking for Excellent Cycle Life Lithium-Ion Batteries. Electrochimica Acta, 2017, 235: 690-699 (IF: 5.383)

授權發明專利


[1]二維過渡族金屬碳(氮)化物-納米硅顆粒複合材料的製備及應用,專利號:ZL201710661360.x
[2]二維過渡族金屬碳(氮)化物與納米硫顆粒複合材料及其製備和應用,專利號:ZL201610951729.6
[3]一種緻密鈮鋁硅碳固溶體材料及其製備方法,專利號:ZL 201410225845.0
[4]一種鈮鈦鋁碳固溶體陶瓷材料及其製備方法,專利號:ZL 201410319052.5
[5]一種鈮鋁化碳-碳化鈮複合材料及製備方法,專利號:ZL 201410040040.9
[6]一種鈦硅化碳/二硼化鈦-碳化鈦複合材料及其製備方法,專利號:ZL 200910027762.X
[7] (TiB2+TiC)/Ti3SiC2復相陶瓷材料及其製備方法,專利號:ZL 200910027763.4
[8]一種原位(TiB2+SiC)/Ti3SiC2復相陶瓷材料及其製備方法,專利號:ZL 201110024117.X
[9]一種鋯鋁硅碳-硼化鋯-碳化硅複合材料及其製備方法,專利號:ZL 201210260714.7
[10]一種高結合強度耐高溫吸波塗層用漿料及其製備方法,專利號:ZL 201410366766.1
[11](ZrB2+ZrC)/Zr3[Al(Si)]4C6復相陶瓷材料及其製備方法,專利號:ZL 201210259673.X
[12]低毒凝膠體系注凝成型熔融石英陶瓷的方法,專利號:ZL 201210531925.X
[13]一種氧化鋯陶瓷的製備方法,專利號:ZL201010552565.2
[14]一種緻密氮化鋁-氮化硼複合材料的製備方法,專利號:ZL 201510028830.X
[15]一種無壓燒結製備高純六方氮化硼陶瓷的方法,專利號:ZL 201410422994.6
[16]一種抗水化氮化鋁粉體及其製備方法,專利號:ZL 201710373024.5

社會任職


特種陶瓷專業委員會副主任委員;
中國機械學會工程陶瓷專業委員會理事。