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中文簡(jiǎn)介
一、姓名:涂兵田
二、基本情況
出生年月:1984. 11
職稱:副研究員
工作院系:材料復(fù)合新技術(shù)國(guó)家重點(diǎn)實(shí)驗(yàn)室
三、教育經(jīng)歷
09/2011 – 12/2014 武漢理工大學(xué),材料學(xué)院,博士
09/2008 – 07/2011 中國(guó)地質(zhì)大學(xué)(武漢),材化學(xué)院,碩士
09/2004 – 07/2008 中國(guó)地質(zhì)大學(xué)(武漢),材化學(xué)院,學(xué)士
四、工作經(jīng)歷
07/2017 – 至今 武漢理工大學(xué),新材所,副研究員
03/2016 – 03/2017 University of Pennsylvania,Department of Chemistry,Research Associate
02/2015 – 07/2017 武漢理工大學(xué),理學(xué)院,博士后
五、研究方向
² 以第一性原理計(jì)算研究為指導(dǎo)的材料設(shè)計(jì)與性能研究
² 結(jié)構(gòu)功能一體化材料本征性能的預(yù)測(cè)與調(diào)控
² 新型晶體化合物的合成與結(jié)構(gòu)解析
六、科研項(xiàng)目
Ø 國(guó)家自然科學(xué)基金青年基金項(xiàng)目(No. 51502219),2016年1月~2018年12月,主持
Ø 博士后科學(xué)基金面上項(xiàng)目(No. 2015M582286),2016年1月~2017年12月,主持
Ø 國(guó)家自然科學(xué)基金面上項(xiàng)目(No. 51472195),2015年1月~2018年12月,參與
Ø 國(guó)家重點(diǎn)研發(fā)計(jì)劃(No. 2017YFB0310500),2017年7月~2021年6月,參與
Ø 裝備預(yù)研重點(diǎn)實(shí)驗(yàn)室基金(No.614290602040617),2018年1月~2019年12月,參與
七、研究論文
1. Tu BT, Zhang H, Wang H, Wang WM, and Fu ZY, "Magic Angle Spinning NMR Study on Inversion Behavior and Vacancy Disorder in Alumina-Rich Spinel," Inorg. Chem., 57[14] 8390-95 (2018).
2. Tu BT, Wang H, Wang WM, and Fu ZY, " Ab initio investigations of electronic structure, optical transparency, and elastic properties in X3Al2Si3O12 (X = Ca, Mg),” Ceram. Int., 43[17] 15431-15436 (2017).
3. Tu BT, Liu X, Wang H, Wang WM, Zhai PC, and Fu ZY, "Combining 27Al Solid-State NMR and First-Principles Simulations To Explore Crystal Structure in Disordered Aluminum Oxynitride," Inorg. Chem., 55[24] 12930-37 (2016).
4. Tu BT, Liu X, Wang H, Wang WM, and Fu ZY, "Theoretical predictions of composition-dependent structure and properties of alumina-rich spinel," J. Eur. Ceram. Soc., 36[4] 1073-79 (2016).
5. Tu BT, Wang H, Liu X, Wang WM, and Fu ZY, "First-Principles Insight into the Composition-Dependent Structure and Properties of γ-Alon," J. Am. Ceram. Soc., 97 [9] 2996-3003 (2014).
6. Tu BT, Wang H, Liu X, Shahzad AK, Wang WM, and Fu ZY, Weimin Wang, and Zhengyi Fu, "Composition-Dependent Bonding and Hardness of γ-aluminum Oxynitride: A First-Principles investigation," J. Appl. Phys., 115 [22] 223511 (2014).
7. Tu BT, Wang H, Liu X, Wang WM, and Fu ZY, "First-Principles Study on Site Preference of Aluminum Vacancy and Nitrogen Atoms in γ-Alon," J. Am. Ceram. Soc., 96 [6] 1937-43 (2013).
8. Tu BT, Zhu HL, He G, Chen Y, Hu B, and Chen JZ, "A novel water-rich mononuclear copper(II) complex with pyridine-2,4-dicarboxylate: Synthesis and crystal structure," Russ. J. Coord. Chem., 37 [9] 696-700 (2011).
9. Tu BT, Ren YT, Ju L, Chen JY, Chen Y, and Chen JZ, "Crystal structure of bis[(μ2-hydroxo)-aqua-(1,10-phenanthroline-N,N')copper(II)] phenylacetate hexahydrate, [Cu(C12H8N2)(OH)(H2O)]2(C8H7O2)2·6H2O," Z. Kristallogr.-New Cryst. Struct., 224 [4] 727-28 (2009).
10. Tu BT, Xie HZ, Ren YT, and Chen JZ, "Bis(1,10-phenanthroline-κ2N,N')(phenylacetato-κO)copper(II) phenylacetate hexahydrate," Acta Crystallogr. E: Struct. Rep. Online, 64 M1475-U205 (2008).
11. S. Guo, H. Wang, P. Xu, B. Wang, Y. Xiong, B. Tu, W. Wang, and Z. Fu, "Effect of pretreated microstructure on subsequent sintering performance of MgAl2O4 ceramics," Ceram. Int., 45[6] 7544-51 (2019).
12. H. Zhang, H. Wang, H. Gu, X. Zong, B. Tu, P. Xu, B. Wang, W. Wang, S. Liu, and Z. Fu, "Preparation of transparent MgO·1.8Al2O3 spinel ceramics by aqueous gelcasting, presintering and hot isostatic pressing," J. Eur. Ceram. Soc., 38[11] 4057-63 (2018).
13. Qiu T, Tu BT, Diomedes SG, and Rappe AM, Ab Initio Simulation Explains the Enhancement of Catalytic Oxygen Evolution on CaMnO3, ACS Catalysis, 8[3] 2218-2224 (2018).
14. Wu Y, Wu X., and Tu BT, Phase relations of the nepheline-kalsilite system: X-ray diffraction and Mössbauer spectroscopy. J. Alloys Compd., 712 613-617 (2017).
15. Liu X, Chen BW, Tu BT, Wang H, Wang WM, and Fu ZY, "Variation of Structure and Photoluminescence Properties of Ce3+ Doped MgAlON Transparent Ceramics with Different Doping Content," Materials, 10[7] 792 (2017).
16. Liu X, Chen BW, Tu BT, Wang H, Wang WM, and Fu ZY, "Characterization in Activators’ Distribution and Photoluminescence Properties of Ce3+ Doped MgAlON Transparent Fluorescent Ceramic," J. Eur. Ceram. Soc., 36[11] 2801-05 (2016).
17. Liu X, Wang H, Tu BT, Wang WM, and Fu ZY, "Novel Divalent Europium Doped MgAlON Transparent Ceramic for Shortwave Ultraviolet Erasable Windows," Scr. Mater., 105[0] 30-33 (2015).
18. Yuan Z, Wang H, Tu BT, Liu X, Xu CL, Wang WM, and Fu ZY, “Preparation of MgO∙1.5Al2O3 Transparent Ceramic by Pressureless Sintering and Hot Isostatic Pressing,” J. Inorg. Mater., 30[8] 843-847 (2015).
19. Liu X, Wang H, Tu BT, Wang WM, and Fu ZY, "Highly Transparent Mg0.27Al2.58O3.73N0.27 Ceramic Prepared by Pressureless Sintering," J. Am. Ceram. Soc., 97 [1] 63-66 (2014).
20. Liu X, Wang H, Barbara. L, Tu BT, Wang WM, and Fu ZY, "Chemical composition, crystal structure, and their relationships with the intrinsic properties of spinel-type crystals based on bond valences," Inorg. Chem., 53 [12] 5986-92 (2014).
八、聯(lián)系方式
辦公室:西院逸夫樓3樓
電話:
E-mail:tubt@whut.edu.cn
英文簡(jiǎn)介
1. Name: Bingtian Tu
2. Brief introduction
Associate Professor
State Key Lab of Advanced Technology for Materials Synthesis and Processing
3. Work Experience
07/2017 – Associate Professor Wuhan University of Technology
03/2016 – 03/2017 Research Associate University of Pennsylvania
02/2015 – 07/2017 Postdoc Wuhan University of Technology
4. Research
² First-principles simulations
² Functionalization of transparent ceramics
5. Funding
Ø National Natural Science Foundation of China
Ø China Postdoctoral Science Foundation
6. Publication
1. Tu BT, Wang H, Wang WM, and Fu ZY, " Ab initio investigations of electronic structure, optical transparency, and elastic properties in X3Al2Si3O12 (X = Ca, Mg),” Ceram. Int., 43[17] 15431-15436 (2017).
2. Tu BT, Liu X, Wang H, Wang WM, Zhai PC, and Fu ZY, "Combining 27Al Solid-State NMR and First-Principles Simulations To Explore Crystal Structure in Disordered Aluminum Oxynitride," Inorg. Chem., 55[24] 12930-37 (2016).
3. Tu BT, Liu X, Wang H, Wang WM, and Fu ZY, "Theoretical predictions of composition-dependent structure and properties of alumina-rich spinel," J. Eur. Ceram. Soc., 36[4] 1073-79 (2016).
4. Tu BT, Wang H, Liu X, Wang WM, and Fu ZY, "First-Principles Insight into the Composition-Dependent Structure and Properties of γ-Alon," J. Am. Ceram. Soc., 97 [9] 2996-3003 (2014).
5. Tu BT, Wang H, Liu X, Shahzad AK, Wang WM, and Fu ZY, Weimin Wang, and Zhengyi Fu, "Composition-Dependent Bonding and Hardness of γ-aluminum Oxynitride: A First-Principles investigation," J. Appl. Phys., 115 [22] 223511 (2014).
6. Tu BT, Wang H, Liu X, Wang WM, and Fu ZY, "First-Principles Study on Site Preference of Aluminum Vacancy and Nitrogen Atoms in γ-Alon," J. Am. Ceram. Soc., 96 [6] 1937-43 (2013).
7. Tu BT, Zhu HL, He G, Chen Y, Hu B, and Chen JZ, "A novel water-rich mononuclear copper(II) complex with pyridine-2,4-dicarboxylate: Synthesis and crystal structure," Russ. J. Coord. Chem., 37 [9] 696-700 (2011).
8. Tu BT, Ren YT, Ju L, Chen JY, Chen Y, and Chen JZ, "Crystal structure of bis[(μ2-hydroxo)-aqua-(1,10-phenanthroline-N,N')copper(II)] phenylacetate hexahydrate, [Cu(C12H8N2)(OH)(H2O)]2(C8H7O2)2·6H2O," Z. Kristallogr.-New Cryst. Struct., 224 [4] 727-28 (2009).
9. Tu BT, Xie HZ, Ren YT, and Chen JZ, "Bis(1,10-phenanthroline-κ2N,N')(phenylacetato-κO)copper(II) phenylacetate hexahydrate," Acta Crystallogr. E: Struct. Rep. Online, 64 M1475-U205 (2008).
10. Qiu T, Tu BT, Diomedes SG, and Rappe AM, Ab Initio Simulation Explains the Enhancement of Catalytic Oxygen Evolution on CaMnO3, ACS Catalysis, 8[3] 2218-2224 (2018).
11. Wu Y, Wu X., and Tu BT, Phase relations of the nepheline-kalsilite system: X-ray diffraction and Mössbauer spectroscopy. J. Alloys Compd., 712 613-617 (2017).
12. Liu X, Chen BW, Tu BT, Wang H, Wang WM, and Fu ZY, "Variation of Structure and Photoluminescence Properties of Ce3+ Doped MgAlON Transparent Ceramics with Different Doping Content," Materials, 10[7] 792 (2017).
13. Liu X, Chen BW, Tu BT, Wang H, Wang WM, and Fu ZY, "Characterization in Activators’ Distribution and Photoluminescence Properties of Ce3+ Doped MgAlON Transparent Fluorescent Ceramic," J. Eur. Ceram. Soc., 36[11] 2801-05 (2016).
14. Liu X, Wang H, Tu BT, Wang WM, and Fu ZY, "Novel Divalent Europium Doped MgAlON Transparent Ceramic for Shortwave Ultraviolet Erasable Windows," Scr. Mater., 105[0] 30-33 (2015).
15. Yuan Z, Wang H, Tu BT, Liu X, Xu CL, Wang WM, and Fu ZY, “Preparation of MgO∙1.5Al2O3 Transparent Ceramic by Pressureless Sintering and Hot Isostatic Pressing,” J. Inorg. Mater., 30[8] 843-847 (2015).
16. Liu X, Wang H, Tu BT, Wang WM, and Fu ZY, "Highly Transparent Mg0.27Al2.58O3.73N0.27 Ceramic Prepared by Pressureless Sintering," J. Am. Ceram. Soc., 97 [1] 63-66 (2014).
17. Liu X, Wang H, Barbara. L, Tu BT, Wang WM, and Fu ZY, "Chemical composition, crystal structure, and their relationships with the intrinsic properties of spinel-type crystals based on bond valences," Inorg. Chem., 53 [12] 5986-92 (2014).
8. Contact information
Tel:
Email: spinel@whut.edu.cn
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