
倪娜
長(zhǎng)聘副教授所在系所:葉輪機(jī)械研究所
電子郵件:na.ni@sjtu.edu.cn
通訊地址:上海市閔行區(qū)東川路800號(hào)機(jī)動(dòng)學(xué)院A樓515室
個(gè)人主頁:課題組常年招收博士后、博士、專碩、學(xué)碩、本科實(shí)習(xí)生,歡迎對(duì)相關(guān)科研領(lǐng)域感興趣的同志們加入!
教育背景
2008.01 - 2011.06 英國牛津大學(xué) 材料科學(xué)與工程 博士
2005.10 - 2007.10 德國基爾大學(xué) 材料科學(xué)與工程 碩士
1996.10 - 2000.10 復(fù)旦大學(xué) 材料科學(xué) 學(xué)士
*******************************************************************************************************************************************************課題組提供良好的科研氛圍和待遇,歡迎感興趣的優(yōu)秀本科/碩士/博士畢業(yè)生申請(qǐng)研究生和博士后位置。博后起薪27萬/年+科研績(jī)效。
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工作經(jīng)歷
2023 - 今 上海交通大學(xué)機(jī)械工程學(xué)院 長(zhǎng)聘副教授
2018 - 2022 上海交通大學(xué)機(jī)械工程學(xué)院 長(zhǎng)聘教軌副教授
2018 - 今 英國帝國理工學(xué)院 材料科學(xué)系 Honorary Lecturer
2013 - 2017 英國帝國理工學(xué)院 材料科學(xué)系 研究員 (Research Fellow)
2012 - 2014 英國帝國理工學(xué)院 材料科學(xué)系 博士后
研究方向
*******************************************************************************************************************************************************課題組提供良好的科研氛圍和待遇,歡迎感興趣的優(yōu)秀本科/碩士/博士畢業(yè)生申請(qǐng)研究生和博士后位置。博后起薪27萬/年+科研績(jī)效。
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先進(jìn)工程陶瓷材料的開發(fā)及其在發(fā)動(dòng)機(jī)、高溫燃料電池等領(lǐng)域的應(yīng)用。重點(diǎn)研究?jī)?nèi)容為結(jié)構(gòu)和功能材料在嚴(yán)苛環(huán)境下的力學(xué)、電化學(xué)及抗腐蝕性能,通過對(duì)材料跨尺度顯微結(jié)構(gòu)的精確調(diào)控開發(fā)和改善陶瓷材料的關(guān)鍵功能。主要研究課題包括:
1. 固體氧化物電解和燃料電池
2. 嚴(yán)苛環(huán)境高損傷容限陶瓷材料(harsh environmental damage tolerant ceramics, HEDTC)的設(shè)計(jì)及應(yīng)用,如高溫?zé)岱雷o(hù)材料、熱障涂層。
3. 新型電場(chǎng)輔助燒結(jié)技術(shù)和其他低溫?zé)Y(jié)技術(shù)
4.界面工程:晶界和其他界面對(duì)陶瓷材料性能控制的基礎(chǔ)研究。
5. 多尺度聯(lián)合表征技術(shù)的開發(fā)(透射電子顯微鏡、同步輻射X射線、二次離子質(zhì)譜和三維原子探針等)
學(xué)術(shù)兼職
中國硅酸鹽學(xué)會(huì)特種陶瓷分會(huì)理事
中國晶體學(xué)會(huì)陶瓷分會(huì)理事
中國特種陶瓷協(xié)會(huì)青年工作委員會(huì)委員
英國皇家化學(xué)會(huì)會(huì)員
英國皇家電鏡學(xué)會(huì)會(huì)員
美國陶瓷協(xié)會(huì)會(huì)員
Journal of Advanced Ceramics 青年編委
工程學(xué)導(dǎo)論(本科課程)
功能材料與器件概論(本科課程)
先進(jìn)工程應(yīng)用中的高溫材料(研究生課程)
科研項(xiàng)目
2026.1-2029.12 國家自然基金面上項(xiàng)目,ABO3型空氣極高溫電化學(xué)性能的A位熵增短程結(jié)構(gòu)畸變調(diào)控及多尺度機(jī)制,負(fù)責(zé)人
2023.01--2026.12 上海市市級(jí)重大專項(xiàng),“可再生合成燃料基礎(chǔ)理論與關(guān)鍵技術(shù)”子項(xiàng)目“固體氧化物電解單電池與電池堆關(guān)鍵技術(shù)”,負(fù)責(zé)人
2021.01--2024.12 國家自然基金面上項(xiàng)目,基于高孔隙率納米纖維膜的SOFC陰極及其與電解質(zhì)層互聯(lián)結(jié)構(gòu)的閃燒機(jī)制和性能研究,負(fù)責(zé)人
2019.12--2024.12 軍委科技委基礎(chǔ)計(jì)劃加強(qiáng)重點(diǎn)基礎(chǔ)研究專題項(xiàng)目,復(fù)合材料熱物理性能和微觀結(jié)構(gòu)研究,負(fù)責(zé)人
2020.01--2023/12 國家自然基金重點(diǎn)項(xiàng)目,多元超高溫碳化物陶瓷納米粉體制備、成型新技術(shù)及材料燒蝕性能研究,子課題負(fù)責(zé)人
2021.01--2022.12 裝備預(yù)研重點(diǎn)實(shí)驗(yàn)室基金,Triso涂層力學(xué)和熱物理性能研究, 負(fù)責(zé)人
2020.11--2021.5 中國核動(dòng)力研究院合作項(xiàng)目,F(xiàn)CM核燃料芯塊元件的先進(jìn)結(jié)構(gòu)和熱物理性能表征,負(fù)責(zé)人
2018.07--2020.06 上海市浦江人才計(jì)劃項(xiàng)目,MAX相材料作為纖維增強(qiáng)陶瓷基復(fù)合材料中高性能界面的設(shè)計(jì)與性能研究,負(fù)責(zé)人
在英國期間擔(dān)任以下科研項(xiàng)目的負(fù)責(zé)人:
? 2016年10月至2020年9月:先進(jìn)核能源結(jié)構(gòu)和涂層材料的開發(fā)和腐蝕研究。
EPSRC(英國工程和自然科學(xué)研究委員會(huì))和美國Westinghouse公司聯(lián)合基金
? 2015年10月至2019年9月:FCC金屬材料中氦輻射機(jī)理的研究。
EPSRC(英國工程和自然科學(xué)研究委員會(huì))和英國AWE公司聯(lián)合基金
? 2015年6月至2020年5月: “Carbides for Future Fission Environments (CAFFE)"
EPSRC(英國工程和自然科學(xué)研究委員會(huì))科研項(xiàng)目基金(EP/M018563/1)
? 2015年4月:高溫燃料電池陰極材料的鉻毒化機(jī)理研究。
帝國理工大學(xué)研究者設(shè)備支持基金
? 2014年8月至2017年7月:高溫燃料電池中界面特征對(duì)材料和設(shè)備穩(wěn)定性的研究。
Imperial College Research Fellowship
? 2011年6月至2012年9月:氧分壓對(duì)金屬/陶瓷界面能和物質(zhì)傳輸影響的基礎(chǔ)研究。
EPSRC(英國工程和自然科學(xué)研究委員會(huì))Doctoral Prize fellowship研究基金
代表性論文專著
目前發(fā)表SCI論文近60篇,總引用3500余次。
* Corresponding author; # Co-First Author
2025年
| 68) | Jun Tong, Ji-eun Won, Na Ni*, Keun Hwa Chae, Kolan Madhav Reddy, Youngjin Park, Sayali Sangavadekar, Hye Jung Chang, Baowen Zhou, Rongchang Cao, Kyung Joong Yoon*, Lei Zhu*, and Zhen Huang, Entropy-Enhancing Strategy Enables Highly Efficient Pt Utilization for High-Temperature H2O–CO2 Coelectrolysis, ACS Nano, 2025, DOI: 10.1021/acsnano.5c12777 |
| 67) | Han Zhang, Hanchao Zhang, Jie Lu, Ying Chen, Didi Yang, Lirong Luo, Huangyue Cai, Na Ni, Jie Zhang, Jingyang Wang, Dongliang Jin, Xiaofeng Zhao, Uncovering the mechanisms of oxide scale growth and scale/metal interface degradation of a NiCoCrAlYHf alloy in air-50?%H2O at 1000 °C, Corrosion Science, 2025, 256, 113243 |
| 66) | Hanchao Zhang, Guoliang Ren, Ling Li, Yinchun Shi, Xiaofeng Zhao, Na Ni*, Corrosion behavior and mechanisms of MoAlB and Zr-doped MoAlB in static LBE at temperatures up to 700 °C, Journal of the European Ceramic Society, 2025, 45(16), 117705 |
| 65) | Jun Tong, Haewon Seo, Yunseo Choi, Ji-eun Won, Jinhong Park, Keun Hwa Chae, Jongsup Hong, Hye Jung Chang, Baowen Zhou, Rongchang Cao, Na Ni*, Kyung Joong Yoon*, Lei Zhu*, Zhen Huang, Medium-Entropy Alloy/Oxide Nano Composite for High-Performing High-Temperature CO2 Electrolysis with Remarkable Carbon Deposition Resistance, Advanced Science, 2025, e08800. https://doi.org/10.1002/advs.202508800 |
| 64) | Wenyi Yan, Na Ni*, Yuye Zhao, Lei Zhu, Zhen Huang, Enhancing ionic conductivity through reduction of grain boundary segregation in Gd doped ceria by cold sintering, Journal of the European Ceramic Society, 2025, 45,117442 |
| 63) | Shiyi Wu, Wenyi Yan, Na Ni*, Lei Zhu*, Zhen Huang, Densification of ceria-based barrier layer for solid oxide cells at lower sintering temperatures: A review, Journal of Advanced Ceramics, 2025,14,9221001 |
64) Wenyi Yan, Na Ni*, Yuye Zhao, Lei Zhu, Zhen Huang, Enhancing ionic conductivity through reduction of grain boundary segregation in Gd doped ceria by cold sintering, Journal of the European Ceramic Society, 2025, 45,117442
63) Shiyi Wu, Wenyi Yan, Na Ni*, Lei Zhu*, Zhen Huang, Densification of ceria-based barrier layer for solid oxide cells at lower sintering temperatures: A review, Journal of Advanced Ceramics, 2025,14,9221001
2024年:
62) Y. Shi, H. Zhang, G. Ren, W. Xiao, L. Li, Y. Hu, K.M. Reddy, X. Zhao, L. Zhu, N. Ni*, Role of mixed entropy in sintering of manganite-based perovskite oxides: Faster densification with delayed grain growth, Acta Materialia, 2024, 271: 119906
61) H. Zhang, G. Ren, P. Jia, X. Zhao, N Ni*, Development of machine learning force field for thermal conductivity analysis in MoAlB: Insights into anisotropic heat transfer mechanisms, Ceramics International, 2024, 50(8): 13740-13749
60) W. Hao*, X. Lu, L. Li, T. Wang, G. Ren, H. Cai, X. Zhao, D. Wang, N Ni*, Toughened (Ti0.2Zr0.2Hf0.2Nb0.2Ta0.2)B2-SiC composites fabricated by one-step reactive sintering with a unique SiB6 additive, Journal of Advanced Ceramics, 2024, 13(1): 86-100
59) Jun Tong, Na Ni,* Baowen Zhou, Chongqing Yang, Kolan Madhav Reddy, Hengyong Tu, Yusi Liu, Zhe Tan, Longkai Xiang, Haozhen Li, Xing Zhou, Yunyi Zhang, Yixin Li, Hanchao Zhang, Lei Zhu,* and Zhen Huang, Toward High CO Selectivity and Oxidation Resistance Solid Oxide Electrolysis Cell with High-Entropy Alloy, ACS Catalysis, 2024, 14: 2897-2907
58) Chen Xu, Jinmao He, Zixu Chen, Guoliang Zhao, Shikui Cai, Na Ni, Tianwei Liu,Two-step reactive flash sintering of high entropy pyrochlore: Densification, grain growth, and microstructural homogeneity, Journal of the European Ceramic Society, 2024, 107(2): 797-802
57) B. Wang, Z. He, Q. Ding, H. Cai, H. Zhang, Q. Zeng, G. Li, C. Zhao, N. Ni*, B. Wang*, Improved measurement of local thermal conductivities of coatings by the steady-state Raman spectroscopy method: A case study in TRISO particles, Journal of the European Ceramic Society, 2024, 44(3), 1412-1420
56) H. Zhang, G. Ren, L. Li, Y. Shi, X. Zhao, N. Ni*, Enhancing oxidation resistance of MoAlB based on its anisotropic oxidation mechanism: A theoretical calculation guided experimental investigation, Acta Materialia, 2024, 262, 119431
2023年:
55) Y.Y. Zhao, J. Tang, H.L. Xu, L. Zhu, N. Ni*, Improved Densification in Cold Sintering of Gadolinia-Doped Ceria with Reactive Sintering Aids, Journal of the American Ceramic Society, 2023, 107 (3): 1459-1467 (Editor's Choice paper)
54) W. W. Xiao, N. Ni*#,W.L.Cheng, Y. Z. Li, C.L. Zheng, Y.L. Yu, D. Peng, Reduced interfacial stresses in laminated ceramics during flash sintering enabled by an extremely low uniaxial viscosity, Acta Materialia, 2023, 246(1): 118688
53) N. Ni, Q. Ding, Y. Shi, J. Jiang, L Li, R. Zhang, X Liu, Y. Fan, Ablation behavior of high-entropy carbides ceramics (Hf0.2Zr0.2Ta0.2Nb0.2Ti0.2)C upon exposition to an oxyacetylene torch at 2000 °C, Journal of the European Ceramic Society 2023, 43(6): 2306-2319
2022年:
52) N. Ni*, H.C. Zhang, Y.C. Zhou, Electronic structure, bonding characteristics, and mechanical behaviors of a new family of Si-containing damage-tolerant MAB phases M5SiB2 (M = IVB—VIB transition metals), Journal of Advanced Ceramics, 2022, 11(10): 1626–1640. DOI: 10.1007/s40145-022-0636-9
51) N. Ni*,W. W. Xiao, C. L. Zheng, J. Jiang, Y. L. Yu, W. Hao, M.Tang, H. Shen, D. Peng, Flash cosintering of a lanthanum strontium cobalt ferrite nanofibre/Gd-doped ceria bilayer structure, Journal of the European Ceramic Society 2022, 42(6): 2870-2878
50) Y. Shi, N. Ni*, Q. Ding and X. Zhao, Tailoring high-temperature stability and electrical conductivity of high entropy lanthanum manganite for solid oxide fuel cell cathodes, Journal of Materials Chemistry A, 2022,10, 2256-2270
2021年:
49) S Li, N Ni*, B Wu, C Li, Q Ding, Z He*, Ti3SiC2 interphase coating in SiCf/SiC composites: Effect of the coating fabrication atmosphere and temperature, Journal of the European Ceramic Society (2021), 41 (12), 5850-5862
48) X.H. Fan*,N Ni*, X Wang, W Hao, F Guo, X Zhao, Mechanically isotropic alumina prepared by spark plasma sintering: The role of pyrolytic carbon and multilayer graphene, Journal of the European Ceramic Society (2021), 41 (7), 4242-4251
47) J. Jiang, N Ni*, W Xiao, X Zhao, F Guo, X Fan, Q Ding, W Hao, P Xiao, Robust ceramic nanofibrous membranes with ultra-high water flux and nanoparticle rejection for self-standing ultrafiltration, Journal of the European Ceramic Society (2021), 41 (7), 4264-4272
46) W.Hao, N. Ni*, T.Y. Liu, L. Zhou, Y. Yao, L. Li, J. Jiang, Y.C. Shi, X.F. Zhao and P. Xiao, Ablation resistance of HfC(Si, O)-HfB2(Si, O) composites fabricated by one-step reactive spark plasma sintering, Journal of the European Ceramic Society, (2021) 41(4): 2226-2238
45) W. W. Xiao#, N. Ni#*, X. H. Fan, X.F. Zhao, Y.Z. Liu and P. Xiao, Ambient fabrication of reduced graphene oxide/zirconia composites by flash sintering: role of reduced graphene oxide, Journal of Materials Science and Technology, (2021), 60: 70-76
44) B.B.Wu, N. Ni*, X.H. Fan, X.F. Zhao, F.W. Guo, Q. Ding and P. Xiao, Scheelite coatings on SiC fiber: Effect of coating temperature and atmosphere, Ceramics International, (2021), 47(2): 1693-1703
2020年:
43) N. Ni*, W. Hao, T.Y. Liu, L. Zhou, F.W Guo, X.F. Zhao and P. Xiao, Oxidation/ablation behaviors of hafnium carbide-silicon carbonitride systems at 1500 and 2500 C, Ceramics International, (2020) 46 (15): 23840-23853
42) Qi Ding, Dewei Ni*, Na Ni, Youlin Jiang, Bowen Chen, Xiaowu Chen, Jun Lu, Yaran Niu, Haijun Zhou, and Shaoming Dong. Thermal damage and microstructure evolution mechanisms of Cf/SiBCN composites during plasma ablation. Corrosion Science (2020), 169: 108621
41) W. Hao, N. Ni*, Yi Guo, H.Y. Cai, X.H. Fan, Y. Yao, X.F. Zhao and P. Xiao, Strong and tough HfC-HfB2 solid-solution composites obtained by reactive sintering with a novel SiB6 additive, Ceramics International, (2020) 46 (10): 16257-16265
40) B.B.Wu, N. Ni*, X.F. Zhao; X.H. Fan; P. Xiao and F.W. Guo, Strength retention in scheelite coated SiC fibers: Effect of the gas composition and pre-heat treatment, Journal of the European Ceramic Society, 40 (2020):2801-2810
39) B. Wu, N. Ni*, X. Fan, X. Zhao, P. Xiao and F. Guo, Strength degradation of SiC fibers with a porous ZrB2-SiC coating: Role of the coating porous structure, Journal of the European Ceramic Society, 40 (2020): 961-971
38) X. Li, X. Fan*, N. Ni*, X. Zhao, C. Li and P. Xiao, Continuous alumina fiber-reinforced yttria-stabilized zirconia composites with high density and toughness, Journal of the European Ceramic Society, 40 (2020): 1539-1548
37) Wenfu Chen, Xiao Shan, Jianghua Li, Yi Guo, Fangwei Guo, Xiaofeng Zhao, Na Ni* and Ping Xiao, Effects of iron and platinum on the isothermal oxidation of β-NiAl overlay coatings fabricated by spark plasma sintering, Surface and Coatings Technology (2020), 382: 125178
36) J. Jiang, N. Ni* Xf. Zhao, FW. Guo, XH. Fan, P. Xiao, Flexible and robust YAG-Al2O3 composite nanofibrous membranes enabled by a hybrid nanocrystalline-amorphous structure, Journal of the European Ceramic Society (2020), 40(6): 2463-2469
35) W. Hao, N. Ni*, Yi Guo, Chuanwei Li, Xiaohui Fan, Weiwei Xiao, Xiaofeng Zhao and Ping Xiao, Densification, strengthening and toughening in hafnium carbide with the addition of silicon carbonitride, Journal of American Ceramic Society, (2020), 103(5): 3286-3298
2019年:
34) J Jiang, N Ni*, W. Hao, X. Zhao, F. Guo, X. Fan and P. Xiao, Effects of sintering atmosphere on the densification and microstructure of yttrium aluminum garnet fibers prepared by sol-gel process, Journal of the European Ceramic Society (2019), 39 (16): 5332-5337
33) N Ni*, Cheng Cheng Wang, San Ping Jiang and Stephen J. Skinner, Synergistic effects of temperature and polarization on Cr poisoning of La0.6Sr0.4Co0.2Fe0.8O3-d solid oxide fuel cell cathodes, Journal of Materials Chemistry A (2019), 7, 9253-9262
32) X. Xie, B. Liu, R. Liu, X. Zhao, N.Ni and P Xiao, Comparison of hydrothermal corrosion behavior of SiC with Al2O3 and Al2O3 + Y2O3 sintering additives, Journal of American Ceramic Society, 102 (2019): 5555–5564
31) X. Xie, B. Liu, Y. Guo, R. Liu, X. Zhao, N.Ni*, F. Guo, and P Xiao, Effect of hydrothermal corrosion on the fracture strength of SiC layer in TRISO fuel particles, Journal of American Ceramic Society (2019) 102, 5555–5564
30) WF.Chen, L. He, Y. Guo, X Shan, JH Li, FW Guo, XF Zhao, N. Ni*, P. Xiao, Effects of reactive element oxides on the isothermal oxidation ofβ-NiAl coatings fabricated by spark plasma sintering, Surface and Coatings Technology, 367 (2019), 322-331
29) W. Hao, N. Ni*, F. Guo, F. Cao, J. Jiang, X. Zhao*, P. Xiao, High fracture toughness of HfC through nano‐scale templating and novel sintering aids, Journal of American Ceramic Society (2019), 102(3):997-1009
2018年以前:
28) DL.Jin#, N. Ni#, Y. Guo, ZH. Zou, X.Wang, FW. Guo, XF. Zhao, P. Xiao, Corrosion of the bonding at FeCrAl/Zr alloy interfaces in steam, Journal of nuclear materials, 508 (2018) 411-422
27) C. Ferraro, S. Meille, J. Réthoré, N. Ni, J. Chevalier, E. Saiz, Strong and tough metal/ceramic micro-laminates. Acta Materialia, 144 (2018) 202–215.
26) FM.Pesc, M. Sokolikova, C. Grotta, PC. Sherrell, F. Reale, K. Sharda, N. Ni, P. Palczynski, C. Mattevi, MoS2/WS2 heterojunction for photoelectrochemical water oxidation, ACS Catalysis, 7 (2017), 4990–4998
25) E. García-Tu?ón, VG. Rocha, C. Botas, F. Markoulidis, E. Feilden, Ezra, E. D'Elia, N. Ni, M. Shaffer and E. Saiz, Multi-material 3D printing of Graphene-based electrodes for Electrochemical Energy Storage using Thermo-Responsive Inks. ACS Applied Materials & Interfaces, 9 (2017) 37136–37145
24) S.-R. G. Christopoulos, E. Zapata-Solvas, N. Ni, W. E. Lee, A. Chroneos, Experimental synthesis and DFT investigation of radiation tolerance of Zr?(Al?–?,Si?)C? MAX phases, Journal of the American Ceramic Society, 100 (2017) 1377-1387.
23) P. Olivia, VG. Rocha, C. Ferraro, N. Ni, T. Peijs, M.J. Reece and E. Saiz, Using graphene networks to build bio-inspired self-monitoring ceramics. Nature Communications, 14425 (2017).
22) E. Feilden*, T. Giovannini, N. Ni*, C. Ferraro, L. Vandeperre, E. Saiz and F. Giuliani, Micromechanical Strength of Individual Al2O3 Platelets, Script Materialia, 131 (2017) 55-58.
21) N. Ni*, S. Samuel, R. Williams, N. Kemen, D. McComb and S. Skinner, Degradation of (La0.6Sr0.4)0.95(Co0.2Fe0.8)O3-δsolid oxide fuel cell cathodes at the nanoscale and below. ACS Applied Materials & Interfaces, 8 (2016) 17360-70
20) N.Nasiri, P Niranjan, N. Ni, D. Jayaseelan, W. Lee, Oxidation behaviour of SiC/SiC ceramic matrix composite in air, Journal of European Ceramic Society, 36 (2016) 3293–3302
19) N. Ni*, S. Skinner, Combined Cr and Mo poisoning of (La,Sr)(Co,Fe)O3 ? δ solid oxide fuel cell cathodes at the nanoscale. Solid State Ionics, 288 (2016) 28-31
18) N. Ni*, S. Barg, FM Perez, E. Saiz. Understanding the mechanical response of elastomeric graphene networks. Scientific Reports, 13712(2015).
17) E. D’Elia, S. Barg, N. Ni, VG. Rocha, E. Saiz, Self-healing graphene-based composites with sensing capabilities. Advanced Materials, 27 (2015) 32.
16) M. Boix, S.Eslava, N. Ni, E. Saiz, J. De Coninck, ATR-FTIR measurements of albumin and fibrinogen adsorption: Inert versus calcium phosphate ceramics. Journal of Biomedical Materials Research A. 103 (2015) 3493-502
15) N. Al Nasiri, N. Ni, E. Saiz, J. Wang, J. Chevalier, L.J. Vandeperre and F. Giuliani, Effect of microstructure and grain boundary chemistry on slow crack growth in silicon carbide at ambient conditions. Journal of the European Ceramic Society, 35 (2015) 2253-2260.
14) R. Nicholls, N. Ni, S. Lozano-Perez, A. London, DW. McComb, PD. Nellist, C. R.M. Grovenor, C. J. Pickard, J. R. Yates, Crystal structure of the ZrO phase at zirconium / zirconium oxide interfaces. Advanced Energy Materials, 17 (2015) 211-215
13) J Hu, A. Garner, N. Ni, A. Gholinia, R. Nicholls, S. Lozano-Perez, et al. Identifying suboxide grains at the metal–oxide interface of a corroded Zr–1.0%Nb alloy using (S)TEM, transmission-EBSD, and EELS. Micron, 69 (2015) 35-42
12) S. Taub, K. Neuhaus, H. Wiemh?fer, Na Ni, J. Kilner, A. Atkinson, The effects of Co and Cr on the electrical conductivity of cerium gadolinium oxide, Solid State Ionics, 282 (2015) 54-62
11) S. Barg, FM Perez, N. Ni, P. Pereira. RC Maher, E. Garcia-Tu?on, S.Agnoli, S Eslava, C. Mattevi and E Saiz, Mesoscale Assembly of Chemically Modified Graphene into Complex Cellular Networks. Nature Communications, 5 (2014) 4328.
10) N. Ni*, Y. Kaufmann, WD. Kaplan, E. Saiz, The interfacial properties and mass transport in Ni(Al)/Al2O3 System: An implication of very low oxygen activity. Acta Materialia, 64 (2013) 282-296.
9) C. Walter, S. Barg, N. Ni, R.C. Maher, E. Garcia-Tunon, E. Saiz, A novel approach for the fabrication of hybrid CNT/ceramic porous structure, Journal of the European Ceramic Society, 33 (2013) 2365-2374.
8) S. Yardley, K. Moore, N. Ni, JF, Wei, S. Lyon, M. Preuss, S. Lozano-Perez, CRM Grovenor, An investigation of the oxidation behaviour of zirconium alloys using isotopic tracers and high-resolution SIMS, Journal of Nuclear Materials, 443 (2013) 436-443
7) N. Ni*, D. Hudson, J. Wei, P. Wang, S. Lozano-Perez, G. Smith, J. Sykes, S. Yardley, K. Moore, S. Lyon, R. Cottis, M. Preuss, C. Grovenor, How the crystallography and nano-scale chemistry of the metal/oxide interface develops during the aqueous oxidation of zirconium cladding alloys, Acta Materialia, 60 (2012) 7132-7149
6) N. Ni*, S. Lozano-Perez, J. Sykes, C. Grovenor, Multi-scale characterisation of oxide on zirconium alloys, Materials at High Temperatures 29 (2012) 166-170.
5) N. Ni*, S. Lozano-Perez, J. Sykes, C. Grovenor, Focused Ion Beam sectioning for the 3-D characterization of cracking in oxide scales formed on commercial ZIRLOT alloys during corrosion in high temperature pressurised water, Corrosion Science,53 (2011) 4073-4083.
4) N. Ni*, S. Lozano-Perez, J. Sykes, C. Grovenor, Quantitative EELS analysis of zirconium alloy metal/oxide interfaces, Ultramicroscopy, 111 (2011) 123-130.
3) C. Harnish, N. Ni, A.Kulkarni, V. Zaporojtchenko, T. Strunskus, F. Faupel, Fast electrical response to volatile organic compounds of 2D Au nanoparticle layers embedded into polymers, Journal of Materials Science, 46 (2011) 438-445.
2) N. Ni*, S. Lozano-Perez, M.L. Jenkins, C. English, G.D.W. Smith, J.M. Sykes, CRM Grovenor, Porosity in oxides on zirconium fuel cladding alloys, and its importance in controlling oxidation rates, Scripta Materialia, 62 (2010) 564-567.
1) S Lozano-Perez, N Ni, K Kruska, T Terachi, T Yamada, FIB sequential sectioning as a tool to understand environmental materials degradation in 3D, Journal of the Institute of Nuclear Safety System, 17 (2010) 188-199
? 2018年7月:上海市浦江人才
? 2015年: The Science and Technology Facilities Council (STFC,英國科技設(shè)備委員會(huì)) Early Career Plus Award