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2026年材料学院研究生国家奖学金推荐名单公示

创建时间:  2026年09月29日 16:05  忻娜    浏览次数:


经学生本人申请,导师推荐,学院初审后,学院成立由主要领导任主任委员,分管研究生工作的学院领导、导师代表、研究生教学管理人员代表、研究生代表为委员的奖学金评审委员会于2026年9月29日对申报材料进行评审,现将2026材料学院研究生国家奖学金拟推荐候选人名单公示如下,公示期从2026年9月29日至2026年10月10日,如有异议,请与评审委员会联系,电话66136261。


【学术学位博士推荐候选人名单如下】

序号

姓名

学号

专业

平均成绩

代表性科研成果

科研明细

科研计分

备注

1

周付杰

23820329

080502 材料学

86.29

1、《Rolling-path   dependent stress corrosion cracking of AISI 316L stainless steel in high   temperature water: synergistic effects of deformation localization and   temperature》,《Journal of Nuclear Materials》,633,633,第一作者,156953,期刊论文,已发表,2026,已认定,一区,3.3
  2、《Temperature-dependent intergranular oxidation and   its contribution to stress corrosion cracking of cold-rolled AISI 316L   stainless steel in simulated PWR primary water》,《Journal   of Materials Research and Technology》,第一作者,期刊论文,录用,2026,二区,7.3
  3、《Effects of rolling path-induced microstructure and   dissolved oxygen on stress corrosion   cracking of AISI 316 L stainless steel in high-temperature PWR primary water》,《Engineering   Failure Analysis》,192,192,第一作者,110816,期刊论文,已发表,2026,已认定,一区,7
  4、《Synergistic effects of ordered phase precipitation   and grain boundary characteristics on   SCC performance of nickel-based alloys in simulated PWR primary water》,《Journal of Nuclear Materials》,619,619,第一作者,156262,期刊论文,已发表,2026,已认定,一区,3.3
  5、《Coupled effects of dissolved oxygen and   microstructural heterogeneity on stress corrosion cracking of AISI 316LN stainless steel weld   heat-affected zone in simulated PWR   primary water》,《Journal of Nuclear Materials》,632,632,第一作者,156921,期刊论文,已发表,2026,已认定,一区,3.3

4(1,SCI一区);
1(1,SCI二区)

174

正选

2

赵玉帆

24820396

080601 冶金物理化学

89.57

1、《Structural   evolution of Ca12Al14O33 melt and glass revealed by high-temperature Raman spectroscopy and   molecular dynamics simulations》,《Ceramics International》,11,52,第一作者,16686-16695,期刊论文,已发表,2026,已认定,一区,6
  2、《Quantitative analysis of binary CaO-Al2O3 glasses   structure integrating experiments and   simulations》,《Journal of Non-Crystalline Solids》,675,无,第一作者,123932,期刊论文,已发表,2026,已认定,二区,3.6
  3、《Quantitative study on the local structure and   macroscopic property correlations in   binary lithium germanate melts》,《Chemical Engineering   Journal》,531,无,第一作者,173602,期刊论文,已发表,2026,已认定,一区,12.5
  4、《Quantitative study on the local structure and   macroscopic property correlations in   binary CaO-Al2O3 melts》,《Ceramics International》,52,21,第一作者,37906-37921,期刊论文,已发表,2026,已认定,一区,6
  5、《Short and medium range order in molten GeO2》,《Journal of Materials Chemistry A》,49,14,第一作者,33738–33746,期刊论文,已发表,2026,已认定,二区,9.2

3(1,SCI一区);
2(1,SCI二区)

158

正选

3

纪钰

23820292

080503 材料加工工程

85.4

1、《Gradient   microstructure characteristics of a bore damage large-caliber machine gun   barrel》,《Engineering Failure Analysis》,182,0,第一作者,期刊论文,已发表,2025,已认定,一区
  2、《Synergistic strengthening of 30Cr2Ni3Mo3V steel by   nanoscale MC carbides and dynamic dislocation networks at high temperatures》,《Journal of Iron and Steel Research International》,33,0,第一作者,期刊论文,已发表,2026,已认定,二区,4
  3、《Study on the characteristics and high-temperature   dissolution mechanism of eutectic carbides in medium-alloy steel》,《Journal of Materials Research and Technology》,31,第一作者,期刊论文,已发表,2024,已认定,一区,6.2
  4、《Microstructural evolution and elevated-temperature   strengthening mechanism of a novel   Cr-Ni-Mo-V secondary hardening steel during quenching and tempering》,《Materials   Characterization》,239,0,第一作者,期刊论文,已发表,2026,已认定,二区,6.2
  5、《Strengthening mechanisms of nanoprecipitates at   elevated temperature in secondary hardening steel》,《Materials   Science and Engineering: A》,944,0,第一作者,期刊论文,已发表,2025,已认定,一区,7

3(1,SCI一区);
2(1,SCI二区)

158

正选

4

刘锡军

23820330

080602 钢铁冶金

90.35

1、《In situ   electrochemical etching for constructing skeleton-supported interfacial layers toward highly stable   zinc metal anodes》,《Journal of Energy Storage》,180,无,第一作者,期刊论文,已发表,2026,已认定,二区,10.7
  2、《Grain boundary engineering enables (002)-textured   zinc metal anodes with superior reversibility under ultra-high current   density》,《Energy & Environmental Science》,19,4,第一作者,期刊论文,已发表,2026,已认定,一区,30.5
  3、《Precision interface architecture of zinc anodes   for highly reversible Zn-metal   batteries》,《Chemical Engineering Journal》,529,无,第一作者,期刊论文,已发表,2026,已认定,一区,12.5
  4、《InSn alloy-reinforced grain boundaries endow   (002)-textured zinc anodes with   excellent corrosion resistance》,《Chemical Engineering   Journal》,545,无,第一作者,期刊论文,已发表,2026,已认定,一区,12.5
  5、《Electrochemical engineering in situ induces highly   thermodynamically stable interface   toward long-life zinc metal anodes》,《Chemical   Engineering Journal》,539,无,第三作者,期刊论文,已发表,2026,已认定,一区,12.5

3(1,SCI一区);
1(1,SCI二区);
1(3,SCI一区)

138

正选

5

王春东

23820313

080502 材料学

86.14

1、《Microstructure   and mechanical evolution of FeCrAlMo-xZr fuel cladding alloys during hot corrosion》,《NUCLEAR ENGINEERING AND TECHNOLOGY》,57,9,第一作者,103637,期刊论文,已发表,2025,已认定,二区,2.6
  2、《Microstructural evolution of oxide scale in FeCrAl   fuel cladding alloys via beryllium   microalloying under 1200
◦C steam conditions》,《Journal of Nuclear Materials》,633,1,第一作者,期刊论文,已发表,2026,已认定,一区,3.3
  3、《The effects of Cr and Nb on the microstructure,   mechanical properties, and oxidation behavior of FeCrAl alloys》,《NUCLEAR ENGINEERING AND TECHNOLOGY》,58,3,第一作者,104015,期刊论文,已发表,2026,已认定,二区,2.9
  4、《Yttrium effect on 475 °C   brittleness of Fe–13Cr–6Al–2Mo-0.5Nb-0.15Zr alloy》,《Journal of   Materials Research and Technology》,29,1,第一作者,5681-5692,期刊论文,已发表,2024,已认定,一区,6.2
  5、《Microalloying-enhanced strength and   microstructural stability of Fe-13Cr-6Al-2Mo-0.05Y cladding alloys for   long-term thermal exposure at 475 °C》,《Materials Characterization》,240,1,第二作者,期刊论文,已发表,2026,已认定,二区,6.2

2(1,SCI一区);
2(1,SCI二区);
1(2,SCI二区)

123

正选

6

邓伟伦

24820335

080503 材料加工工程

85.57

1、《Suppressing   brittle σ phase in CoCrNiMo MPEAs via Ta–Nb–B–Si alloying:   Experimental and first-principles insights》,《Materials   Science and Engineering: A》,952,149658,第一作者,期刊论文,已发表,2025,已认定,一区,7
  2、《Strength
−ductility trade-off in   CoCrNiMo-based multi-principal element alloys: Coherent interfaces versus   brittle networks》,《Acta   Materialia》,311,122205,第一作者,期刊论文,已发表,2026,已认定,一区,9.3
  3、《Architectural Reconstruction of Cr2O3-Based Oxide   Barriers via Synergistic Ta–Nb–B–Si Alloying in CoCrNiMo-Based Multi-Principal   Element Alloys》,《Corrosion Science》,268,113937,第一作者,期刊论文,已发表,2026,已认定,一区,10.3
  4、《Two-stage oxidation mechanism and thermally grown   oxide evolution in a CoCrFeNiMo high-entropy alloy with boron and silicon   additions》,《Vacuum》,246,115064,第二作者,期刊论文,已发表,2026,已认定,二区,4.3
  5、《First-principles insights into transition-metal   strengthening of Zn/C interfaces》,《Applied Surface   Science》,720,165258,第二作者,期刊论文,已发表,2026,已认定,二区,6.6

3(1,SCI一区);
2(2,SCI二区)

120

正选

7

李佳敏

23820346

080601 冶金物理化学

91.29

1、《Decoupling   and cooperating interfacial and bulk transport via a bio-inspired molecular   modulator for high-performance all-solid-state Li batteries》,《Energy Storage Materials》,89,105242,第一作者,期刊论文,已发表,2026,已认定,一区,20.2
  2、《Decoupling and reconstructing multiscale ion transport   in PEO-based composite electrolytes via thermodynamics, kinetics, and   rational design》,《Energy Storage Materials》,84,104887,第一作者,期刊论文,已发表,2026,已认定,一区,20.2
  3、《Boosting Li+ transport in ultra-stable   all-solid-state lithium metal batteries via bimetal oxide enhanced   PrBaCoFeO5+δ perovskite nanofillers》,《nano research》,19,1,第一作者,94908178,期刊论文,已发表,2025,已认定,一区,9
  4、《Ti-based composite electrodes with   Sn-SbOx-enriched interfaces enabling energy-efficient Mn electrowinning in   chloride media》,《Ionics》,32,0,第二作者,期刊论文,已发表,2026,已认定,四区,2.6

3(1,SCI一区);
2(2,SCI四区)

116

正选

8

王旭彤

24820388

080601 冶金物理化学

87

1、《Selective   oxidation behavior of boron/phosphorus co-added dual phase steel under different dew points》,《Corrosion Science》,271,2026,第一作者,114124,期刊论文,已发表,2026,已认定,一区,10.3
  2、《Study on the mechanism of deterioration of the   bonding strength of Hot-Dip galvanized coating on low carbon steel: Interface   suppression effect of Al2O3 thin film》,《Engineering   Failure Analysis》,189,110698,第一作者,期刊论文,已发表,2026,已认定,一区,7
  3、《Selective oxidation behavior of B and P containing   low-carbon steels under different dew points》,《Corrosion   Science》,264,264,第一作者,113773,期刊论文,已发表,2026,已认定,一区,10.3
  4、《Effect of Cerium on Electrical Conductivity and   Mechanical Properties of Al-Mg-Si Alloy》,《The Journal   of The Minerals, Metals & Materials Society》,77,11,第三作者,8511-8522,期刊论文,已发表,2025,已认定,三区,2.3

3(1,SCI一区);
1(3,SCI三区)

115

正选

9

张晓虎

23820356

080601 冶金物理化学

89.29

1、《Ultra-high   temperature melting and solidiffcation behavior of lunar soil simulant under vacuum》,《Journal of Non-Crystalline Solids》,682,无,第一作者,124096,期刊论文,已发表,2026,已认定,二区,3.5
  2、《Laser vacuum thermal decomposition of fayalite   towards lunar in-situ iron-making: Experiments and thermodynamics》,《Vacuum》,248,无,第一作者,115243,期刊论文,已发表,2026,已认定,二区,4.3
  3、《Reductant-free synthesis of metallic iron powder   from magnetite by laser processing under vacuum》,《Advanced   Powder Technology》,37,8,第一作者,期刊论文,已发表,2026,已认定,二区,4.5
  4、《Reductant-Free Laser-Vacuum Ironmaking Technology   for Lunar In-Situ Resource Utilization》,《ACS   Sustainable Chemistry & Engineering》,第一作者,期刊论文,录用,2026,一区,7.6
  5、《Laser thermal decomposition of Fe3O4 to metallic   iron under vacuum: experimental and thermodynamic investigation》,《Physics and Chemistry of Minerals》,53,27,第一作者,27,期刊论文,已发表,2026,已认定,三区,1.5

1(1,SCI一区);
3(1,SCI二区);
1(1,SCI三区)

114

正选

10

张乐

23820355

080601 冶金物理化学

90.14

1、《Planar   Conjugated Multidentate Malonamide Additive for Regulating Zn2+ Solvation   Structure and Interfacial Electric Field for Zinc-Ion Batteries》,《Chemical Engineering Journal》,第一作者,期刊论文,录用,2026,一区,12.5
  2、《Carbonyl-Modulated Lowest Unoccupied Molecular   Orbital Energy Directs Machine Learning-Assisted Screening of Electrolyte   Additives Toward Ultra-Stable Zinc Metal Anodes》,《Advanced   Materials》,38,e73811,第一作者,期刊论文,已发表,2026,已认定,一区,26.8
  3、《Piperidine-N Chemistry Driven Synergistic   Solvation and Interphase Regulation Toward Highly Stable Zinc Metal Anodes》,《Materials Today Energy》,60,102362,第一作者,期刊论文,已发表,2026,已认定,二区,8.1
  4、《Precision interface architecture of zinc anodes   for highly reversible Zn-metal batteries》,《Chemical   Engineering Journal》,529,172666,第二作者,期刊论文,已发表,2026,已认定,一区,13.2
  5、《Grain boundary engineering enables (002)-textured   zinc metal anodes with superior reversibility under ultra-high current   density》,《Energy Environmental Science,》,19,4,第二作者,1202-1214,期刊论文,已发表,2026,已认定,一区,30.8

2(1,SCI一区);
1(1,SCI二区);
2(2,SCI一区)

104

正选

11

李斌

23820305

080502 材料学

87.43

1、《质子照射下RPV钢中NiMnSi团簇的演化:Ni的影响》,《Journal of Nuclear Materials》,626,无,第一作者,156572,期刊论文,已发表,2026,已认定,一区,3.2
  2、《关于具有优异耐腐蚀性的高熵磁性FeCoNiCuAl合金薄膜的研究》,《Vacuum》,232,无,第一作者,113859,期刊论文,已发表,2024,已认定,二区,3.8
  3、《质子辐照下RPV钢中NiMnSi团簇的演化》,《Journal of Materials Science & Technology》,261,无,中国科技论文统计源期刊目录(科技引证),第一作者,94-102,期刊论文,已发表,2025,已认定,一区,14.3
  4、《质子辐照下Mn对Fe-NiMnSi铁素体模型合金中NiMnSi团簇演化的影响》,《Materials Characterization》,238,无,第二作者,116650,期刊论文,已发表,2026,已认定,二区,5.5

2(1,SCI一区);
1(1,SCI二区);
1(2,SCI二区)

101

正选

12

贾洋刚

24820339

080502 材料学

86.29

1、《Enhanced   photoelectrochemical properties of CdZnTe: In films by ICP etching》,《Vacuum》,244,无,第一作者,114922,期刊论文,已发表,2025,已认定,二区,3.9
  2、《Novel deposition method for HgCdTe thin films with   enhanced photoelectrochemical properties via BP modification》,《Journal of Alloys and Compounds》,1050,无,第一作者,185874,期刊论文,已发表,2026,已认定,二区,6.7
  3、《Finite‑Element Simulation of Heterojunction and   Barrier‑Layer Engineering in HgCdTe MWIR Detectors》,《Journal   of Electronic Materials》,无,无,第一作者,1-17,期刊论文,已发表,2026,已认定,四区,2.8
  4、《Optimization of the structural and optoelectronic   properties of CdZnTe thick films via vapor-phase selenization》,《Journal of Alloys and Compounds》,1079,无,第一作者,期刊论文,已发表,2026,已认定,二区,6.7
  5、《Hydrogen-induced surface reconstruction and bulk   defect passivation in CdZnTeSe   thick-film detectors》,《Applied Surface Science》,751,无,第一作者,期刊论文,已发表,2026,已认定,二区,6.6

4(1,SCI二区);
1(1,SCI四区)

95

候补



【专业学位博士推荐候选人名单如下】

序号

姓名

学号

专业

平均成绩

代表性科研成果

科研明细

科研计分

备注

1

万师广

25820488

085600 材料与化工

89.5

1、《Metallic   lattices with high load-bearing capacity via multiscale strengthening》,《International Journal of Mechanical Sciences》,315,111458,第一作者,111458,期刊论文,已发表,2025,已认定,一区,9.4
  2、《3D打印FeCoNiAlTi高熵合金的高温力学性能研究》,《金属加工(热加工)》,2026(1),2026(1),中国科技论文统计源期刊目录(科技引证),第一作者,期刊论文,已发表,2026,已认定
  3、《Enhanced high-temperature oxidation resistance of   additively manufactured CoCrNi medium-entropy alloy via in-situ alloying with   nitrogen》,《Journal of Alloys and Compounds》,1080,189730,第三作者,期刊论文,已发表,2026,已认定,二区,6.7

1(1,SCI一区);
1(1,中文核心);
1(3,SCI二区)

42

正选


【学术学位硕士推荐候选人名单如下】

序号

姓名

专业

学号

平均成绩

代表性科研成果

科研明细

科研计分

备注

1

李拓

080502 材料学

24722301

91.77

1、《Multidentate   Triazole Coordination Unlocks Color-Tunable Plasmonic Gold Nanoparticle Films   to Achieve High Catalytic Performance》,《Small Methods》,10,13,第一作者,期刊论文,已发表,2026,已认定,二区,9.1
  2、《Highly stable silver nanowire films decorated with   gold nanoparticles for nitrophenol reduction revealed by 2D correlation   spectroscopy》,《Microchemical Journal》,228,第一作者,119123,期刊论文,已发表,2026,已认定,二区,5.2
  3、《Controlled synthesis of copper nanofilms on mixed   cellulose ester membranes for filtration-catalytic reduction of 2-nitrophenol   and insights from 2D correlation spectroscopy》,《Colloids   and Surfaces A: Physicochemical and Engineering Aspects》,746,1,第二作者,期刊论文,已发表,2026,已认定,二区,5.4
  4、《Polythiourea-Decorated CuO Nanorod Films for   Efficient Nitrophenol Hydrogenation with Reconstruction》,《Langmuir》,42,26,第二作者,期刊论文,已发表,2026,已认定,二区,4.4

2(1,SCI二区),
2(2,SCI二区)

50

正选

2

曹杰慧

080502 材料学

24722305

88.43

1、《Polythiourea-Decorated   CuO Nanorod Films for Efficient Nitrophenol Hydrogenation with Reconstruction》,《Langmuir》,42,26,第一作者,期刊论文,已发表,2026,已认定,二区,3.9
  2、《Controlled synthesis of copper nanofilms on mixed   cellulose ester membranes for filtration-catalytic reduction of 2-nitrophenol   and insights from 2D correlation spectroscopy》,《Colloids   and Surfaces A: Physicochemical and Engineering Aspects》,746,1,第一作者,期刊论文,已发表,2026,已认定,二区,5.4
  3、《Multidentate Triazole Coordination Unlocks   Color-Tunable Plasmonic Gold Nanoparticle Films to Achieve High Catalytic   Performance》,《Small Methods》,10,13,第二作者,期刊论文,已发表,2026,已认定,二区,9.1

2(1,SCI二区),
1(2,SCI二区)

47

正选

3

吴一凡

080501 材料物理与化学

24722266

89.15

1、《Understanding   the dielectric and piezoelectric properties of BF-PT-BT ceramics prepared on   different sintering beds》,《Journal of the European   Ceramic Society》,导师第一作者,本人第二作者,期刊论文,已发表,2026,已认定,一区,6.2

1(1,SCI一区)

38

正选

4

韩昌明

080502 材料学

24725203

87

1、《A   Self-Assembled Molecular Bilayer for Stable p-i-n Organic Solar Cells with an   Efficiency of 20.77%》,《Science China Materials》,第一作者,期刊论文,录用,2026,一区,7.7

1(1,SCI一区)

38

正选

5

韩凯林

080502 材料学

24722299

87.57

1、《Y (or   La)-doped NiO films with enhanced electrochromic performance for energy-saving smart windows》,《Applied Surface Science》,751,无,第一作者,168189,期刊论文,已发表,2026,已认定,二区,6.6
  2、《Multilayer thermochromic radiative cooling smart   window for building thermal regulation》,《Energy & Buildings》,363,无,第二作者,117603,期刊论文,已发表,2026,已认定,二区,8
  3、《一种具有热致变色与辐射制冷功能的多层智能窗及其制备方法》,专利,第二作者,申请,2025-12-08,2025118362560

1(1,SCI二区),
1(2,SCI二区),
1(2,专利申请)

25.6

正选

6

李小凡

080501 材料物理与化学

24722274

88

1、《Self-powered   RT dual-gas sensing of NH3 and C7H8 using a ZnO nanorods/carbon   dots/PEDOT:PSS heterojunction》,《Applied Surface   Science》,暂无,暂无,第一作者,期刊论文,已发表,2026,已认定,二区,6.6
  2、《Eu-doped Tourmaline@MOF-ZnO Core-Shell   Nanocomposites: Enabling UV-Activated Room-Temperature and Ppb-level   N-Butanol Sensing》,《Talanta》,311,无,第三作者,130249,期刊论文,已发表,2026,已认定,二区,6.7
  3、《一种钙钛矿晶膜、柔性光电探测器及其制备方法》,专利,第二作者,申请,2025-01-15,2025100600988

1(1,SCI二区),
1(3,专利申请)

22.2

正选

7

徐佑铭

070305 高分子化学与物理

24722239

88

1、《Multi-Biomimetic   Poly(amino acid)-based Janus Membrane Integrating Barrier and Osteoinductive   Functions for Cranial Bone Regeneration》,《Materials   Today Bio》,33,无,第一作者,103616,期刊论文,已发表,2026,已认定,一区,11
  2、《基于聚氨基酸的不对称引导骨再生膜构建及骨再生》,《中国化学会2025全国高分子学术论文报告会》,第一作者,2025-11,已认定
  3、《基于聚氨基酸的不对称引导骨再生膜构建和骨再生》,《第二十四届上海医用生物材料学术研讨会》,第一作者,2025-12,已认定

1(1,SCI一区);
2(1,国内学术会议)

40

正选

8

陆晨伊

070305 高分子化学与物理

24722240

90.77

1、《Fiber   composite hydrogels and their applications in tissue regeneration》,《Acta Biomaterialia》,208,无,第一作者,146-167,期刊论文,已发表,2025,已认定,一区,9.6

1(1,SCI一区)

38

正选

9

李经军

080503 材料加工工程

24722419

90.79

1、《In situ   preparation of Cu particles using segregation strategy on membrane surface for efficient and stable CO2   reduction》,《Journal of Membrane Science》,749,无,第一作者,期刊论文,已发表,2026,已认定,一区,8.8
  2、《Surface modification of membrane reactors via   oxygen vacancy regulation strategy achieves efficient CO2 reduction coupled   with partial oxidation of methane》,《Separation and   Purification Technology》,415,无,第一作者,期刊论文,已发表,2026,已认定,二区,9.1
  3、《A Review of Mixed Ionic–Electronic   Conductors Oxygen Transport Membranes for Oxygen Separation: Materials,   Design and Applications》,《Materials》,19,12,第一作者,期刊论文,已发表,2026,已认定,三区,3.7
  4、《Ti-doped dual-phase ceramic membranes for   efficient and stable simultaneous conversion of CO2 and CH4 to syngas》,《International Journal of Hydrogen Energy》,258,无,第二作者,期刊论文,已发表,2026,已认定,二区,9.2

1(1,SCI一区);
1(1,SCI二区); 

1(1,SCI三区); 

1(2,SCI三区)

73.0

正选

10

荆博

080503 材料加工工程

24722480

85.93

1、《Liquid Phase   Fraction Effect on Metal Recovery During Semi‑Molten Low Temperature Reduction of Pickling   Sludge》,《Journal of Sustainable Metallurgy》,11,无,第一作者,期刊论文,已发表,2025,已认定,三区,3.2
  2、《Study on Mineralogical Reconfiguration During the   Oxidative Roasting of Niobium-Tantalum Ore》,《Metallurgical   and Materials Transactions B》,第一作者,期刊论文,录用,2026,二区,3.3
  3、《Mechanisms of Lattice Destruction and   Reconstruction during the Oxidative Roasting of Niobium-Tantalum Ore》,《Metallurgical and Materials Transactions B》,第一作者,期刊论文,已发表,2026,已认定,二区,3.3
  4、《The Principle of Tantalum Electrodeposition on 316   L Stainless Steel in the LiF-NaF-KF-K2 TaF7 Molten Salt System》,《Journal of The Electrochemical Society》,173,无,第三作者,期刊论文,已发表,2026,已认定,三区,3.5
  5、《Investigation of iron droplets assembling in   molten slag》,《Colloids and Surfaces A:   Physicochemical and Engineering Aspects》,735,无,第二作者,期刊论文,已发表,2026,已认定,二区,5.4

1(1,SCI二区);
1(2,SCI二区,导1);
1(1,SCI三区); 

1(2,SCI二区);
1(3,SCI三区)

58.0

正选

11

付圳阳

080503 材料加工工程

24722444

87.07

1、《Deformation-inherited   heterostructures in CuCrZr alloys enabled by ball milling and low-temperature   high-pressure sintering》,《Materials Science &   Engineering A》,第一作者,期刊论文,已发表,2026,已认定,一区,7.9
  2、《Tailoring ultrafine, densely distributed   Zr-stabilized nanoprecipitates in CuCrZr alloys via low-temperature high-pressure sintering and thermomechanical treatment》,《Scripta Materialia》,279,不设分期,第二作者,117305,期刊论文,已发表,2026,已认定,二区,5.9
  3、《Synergistic Mn Modification and Magnetic Control   for Fe Removal and Performance Enhancement of Al–Si–Cu Alloy》,《Metallurgical and Materials   Transactions A》,57A,7,第二作者,3411‑3421,期刊论文,已发表,2026,已认定,三区,3
  4、《一种制备析出强化型合金材料的亚温超高压致密化烧结方法及装置》,专利,第三作者,申请,2026-08-25,202611291587.5

1(1,SCI一区);
1(2,SCI二区); 

1(2,SCI三区); 

1(3,专利申请,导2)

44.6

正选

12

赵世熙

080602 钢铁冶金

24722494

88.07

1、《硅铝酸盐结构框架中的隐性拓扑有序及其与热物理性质的关系:Na和K的作用》,《Metallurgical   and Materials Transactions B》,7,3,第一作者,期刊论文,已发表,2026,已认定,二区,3.1
  2、《Insight into the Distinct Structural Origins of   Ce2O3- and B2O3-Induced Viscosity Reduction in Aluminoborosilicate Slags:   Oxygen-Network Depolymerization versus Flexible B-Containing Linkages》,《Ceramics International》,第一作者,期刊论文,录用,2026,二区,6

2(1,SCI二区)

44.0

正选

13

唐世花

080503 材料加工工程

24722468

87.93

1、《Failure   analysis of alumina-mullite refractories in a hydrogen-enriched blast furnace   hearth and bottom: insights from a dissected 40 m3 semi-industrial furnace》,《Engineering Failure Analysis》,197,partA,导师第一作者,本人第二作者,111184,期刊论文,已发表,2026,已认定,一区,7
  2、《Preparation Process for Cold-Pressed Pellets of   Iron-Bearing Sludge and Dust from Steel Production Process》,《Journal of Materials Engineering and Performance》,35,26,第三作者,26179-26194,期刊论文,已发表,2026,已认定,四区,2.6

1(2,SCI一区,导1);
1(3,SCI四区)

38.7

正选

14

邓皓元

080503 材料加工工程

24722471

88

1、《In-situ   X-ray computed tomography investigation of effect of Nb on microstructure and   mechanical properties of directionally solidified Ni–27Al   alloy under low static magnetic field》,《Journal of   Iron and Steel Research International》,33,8,第一作者,期刊论文,录用,2026,一区,4.0

1(1,SCI一区)

38.0

正选

15

赖晨雨

080500 材料科学与工程

25722428

91

1、《Investigation   of iron droplets assembling in molten slag》,《Colloids   and Surfaces A: Physicochemical and Engineering Aspects》,735,无,第一作者,期刊论文,已发表,2026,已认定,二区,5.4
  2、《Mechanisms of Lattice Destruction and   Reconstruction during the Oxidative Roasting of Niobium-Tantalum Ore》,《Metallurgical and Materials Transactions B》,无,无,第三作者,期刊论文,已发表,2026,已认定,二区,3.3
  3、《The Morphological Evolution and Growth Trend of   the Tantalum Layers in the Molten Salt Electrodeposition》,《Journal of Materials Engineering and Performance》,无,无,第二作者,期刊论文,已发表,2026,已认定,四区,2.6
  4、《The Principle of Tantalum Electrodeposition on 316   L Stainless Steel in the LiF-NaF-KF-K2TaF7 Molten Salt System》,《Journal of The Electrochemical Society》,173,无,第二作者,期刊论文,已发表,2026,已认定,三区,3.5

1(1,SCI二区);
1(2,SCI三区);
1(3,SCI二区,导1);
1(2,SCI四区)

30.1

正选

16

黄慧婷

080503 材料加工工程

24722367

87.77

1、《Breaking   equiatomic constraints: knowledge-enhanced AI framework for function-oriented   single-phase high-entropy alloy design》,《npj   Computational Materials》,12,1,第一作者,期刊论文,已发表,2026,已认定,一区,13.1
  2、《Strength
− ductility trade-off in   CoCrNiMo-based multi-principal element alloys: Coherent interfaces versus   brittle networks》,《Acta   Materialia》,311,1,第三作者,122205,期刊论文,已发表,2026,已认定,一区,10.7
  3、《Suppressing Brittle σ   Phase in CoCrNiMo MPEAs via Ta–Nb–B–Si Alloying: Experimental and   First-Principles Insights》,《Materials Science and   Engineering: A》,952,1,第二作者,149658,期刊论文,已发表,2026,已认定,一区,7.9
  4、《一种高抗氧化性能的高熵合金涂层的制备方法》,专利,第一作者,申请,2025-07-11,202510955045.2
  5、《一种离心雾化粉末制备方法和制备系统》,专利,第一作者,申请,2025-04-30,CN202510563688.2

1(1,SCI一区);
1(3,SCI一区);
1(2,SCI一区)

43

正选

17

郑青力

080503 材料加工工程

24722390

87.29

1、《Quantitative   fractography of quasi-cleavage fractures via unsupervised image segmentation》,《Engineering Failure Analysis》,197,Part B,第一作者,期刊论文,已发表,2026,已认定,一区,7
  2、《一种断口图像解理面分割与识别方法及系统》,专利,导师第一作者,本人第二作者,申请,2026-06-30,2026109542893

1(1,SCI一区);
1(2,专利申请,导1)

40

正选

18

方锐

080503 材料加工工程

24722391

87.38

1、《Intrinsic   role of Ce microalloying in corrosion resistance of pure iron》,《Corrosion Science》,271,无,第一作者,无,期刊论文,已发表,2026,已认定,一区,10.3

1(1,SCI一区)

38

正选

19

李安睿

080502 材料学

24722355

89.5

1、《Rational   Design of Carbon Aerogels for Alkali-Metal-Ion Batteries: Controlled   Synthesis, Heteroatom Doping, and Energy Storage Applications》,《Gels》,12,6,第一作者,553,期刊论文,已发表,2026,已认定,二区,6.4
  2、《Rational Design of Porous Carbon Hosts for   Silicon/Carbon Anodes in Lithium-Ion Batteries: Controlled Synthesis, Silicon   Incorporation, Carbon Coating, and Electrochemical Applications》,《Molecules》,31,14,第一作者,2483,期刊论文,录用,2026,三区,5.1
  3、《Pore Structure Regulation of RF-Derived Porous   Carbons Using a Mixed-Level Design of Experiments for Lithium-Ion Battery   Anode Materials》,《Gels》,第一作者,期刊论文,录用,2026,二区,6.4

2(1,SCI二区);
1(1,SCI三区)

54

正选

20

姚佳莹

080502 材料学

24722359

86.93

1、《A liquid   reactive flame retardant strategy for CF/EP composites fabricated by vacuum   infusion process》,《Chemical Engineering Journal》,529,2,导师第一作者,本人第二作者,173107,期刊论文,已发表,2026,已认定,一区,12.5
  2、《一种阻燃纤维增强树脂基复合材料及其制备方法与应用》,专利,第三作者,已授权,2026-08-21,202610757174.5

1(2,导1,SCI一区);
1(3,导2,授权专利)

39.2

正选

21

王乐乐

080502 材料学

24722339

86.14

1、《Strengthening characteristics and precipitate evolution in FV520B martensitic precipitation-hardening stainless steel during aging at 410 °C》,《Journal of Materials Science & Technology》,282,无,中国科技论文统计源期刊目录(科技引证),第一作者,72-82,期刊论文,已发表,2026,已认定,一区,14.3

1(1,SCI一区)

38

正选

22

宋贞臻

080502 材料学

24725210

87.62

1、《Poly(1,4-Cyclohexanedimethylene   Oxalate) as a Melt-Processable,Thermally Robust and Recyclable Oxalate   Polyester》,《Macromolecules》,Volume   59,,Issue 13,第一作者,7401–7411,期刊论文,已发表,2026,已认定,一区,5.7

1(1,SCI一区)

38

正选

23

王浩

080503 材料加工工程

24722402

85.5

1、《Corrosion   assessment of rare earth (RE) modified weathering steels by machine learning   using multi-dimensional small datasets》,《Results in   Engineering》,无,无,第一作者,期刊论文,录用,2026,二区,9.4
  2、《Effect of Sb addition on the corrosion behavior of   an ultra-thin cast strip steel under real industrial atmospheric environment》,《Metals and Materials International》,第一作者,期刊论文,录用,2026,三区,4.5
  3、《一种基于3D光学轮廓仪获取点蚀坑图像以预测钢材腐蚀程度的方法》,专利,导师第一作者,本人第二作者,申请,2026-03-10,202610289080X
  4、《一种基于机器学习的稀土钢损失厚度的预测方法》,专利,导师第一作者,本人第二作者,申请,2026-03-10,2026102893672

1(1,SCI二区);
1(1,SCI三区);
2(2,专利申请,导1)

36

正选

24

沈强

080503 材料加工工程

24722409

87.86

1、《First-principles   insights into transition-metal strengthening of Zn/C interfaces》,《Applied Surface Science》,720,第一作者,165258,期刊论文,已发表,2026,已认定,二区,6.9
  2、《Suppressing brittle σ   phase in CoCrNiMo MPEAs via Ta–Nb–B–Si alloying: Experimental and first-principles insights》,《Materials Science & Engineering A》,952,第三作者,149658,期刊论文,已发表,2026,已认定,一区,7.9
  3、《Flow-casting printing of carbon fiber-reinforced   metal matrix composites: A combined   computational–experimental study》,《COMPOSITES PART B-ENGINEERING》,312,第二作者,113324,期刊论文,已发表,2026,已认定,一区,14
  4、《Strength
− ductility trade-off in   CoCrNiMo-based multi-principal element alloys: Coherent interfaces versus brittle networks》,《Acta Materialia》,311,第二作者,122205,期刊论文,已发表,2026,已认定,一区,10.7

1(1,SCI二区); 

2(2,SCI一区);
1(3,SCI一区)

30

正选

25

楚鲁克·艾斯艾提

080503 材料加工工程

24722482

87.08

1、《Formation   mechanism of high-temperature compressive strength in blast furnace dust   cold-bonded briquettes》,《POWDER TECHNOLOGY》,484,122985,第一作者,期刊论文,已发表,2026,已认定,二区,5.5
  2、《Effects of preparation parameters on porosity and   cold compressive strength of electric   arc furnace dust briquettes》,《POWDER TECHNOLOGY》,473,122212,第三作者,期刊论文,已发表,2026,已认定,二区,5.5
  3、《Infuence of H2‑Based Reduction on Magnetite Cold‑Bonded Briquettes for Low‑Carbon Ironmaking》,《Journal of Sustainable Metallurgy》,12,(3),第三作者,期刊论文,已发表,2026,已认定,三区,3.5
  4、《Evolution and mechanistic study of hot compressive   strength of cold -bonded iron ore briquettes during reduction under simulated   blast furnace》,《POWDER TECHNOLOGY》,479,暂无,第三作者,期刊论文,已发表,2026,已认定,二区,5.5
  5、《Numerical Simulation on the Relationship Between   Inlet Velocity and Splash Condenser Working Performance》,《The Journal of The Minerals, Metals & Materials Society》,78,8126–8139,第二作者,期刊论文,已发表,2026,已认定,三区,2.3

1(1,SCI二区);
1(2,SCI三区);
2(3,SCI二区);
1(3,SCI三区)

30

候补


【专业学位硕士推荐候选人名单如下】

序号

姓名

专业

学号

平均成绩

代表性科研成果

科研明细

科研计分

备注

1

杨威

085600 材料与化工

24722564

83.07

1、《Siloxane-Schiff   Base Dual-Crosslinking Enable Damage-Free Consolidation of Fragile   Waterlogged Ivory From the Sanxingdui Site》,《Archaeometry》,69,5,第一作者,1-11,期刊论文,已发表,2026,已认定,一区,1.4
  2、《Simultaneous Deacidification and Reinforcement   of Aged Paper via InSitu   Polymerization of Inorganic Ionic   Oligomers》,《Archaeometry》,68,4,第二作者,687-695,期刊论文,已发表,2026,已认定,一区,1.4

1(1,SCI一区)

38

正选

2

刘长亮

085600 材料与化工

25722587

88.8

1、《Mechanism of   improving initial solidification in slab continuous casting under mold electromagnetic stirring》,《Journal of Materials Research and Technology-JMR&T》,44,导师第一作者,本人第二作者,759–770,期刊论文,已发表,2026,已认定,一区,7.3
  2、《滑动水口控流下结晶器偏流与凝固的电磁搅拌调控》,《《中国冶金》》,36,3,中国科技论文统计源期刊目录(科技引证),中文核心期刊要目总览(北大目录),第三作者,80-92,期刊论文,已发表,2026,已认定

1(2,SCI一区,导1);
1(3,核心,导1)

38.6

正选

3

盛鑫

085600 材料与化工

24722600

88.67

1、《Controlled   synthesis of Cu2O/Cu@SiO2 core-shell heterostructure spherical nanoparticles   via direct current arc discharge driven by interfacial interactions of   micro-droplets》,《JOURNAL OF NON-CRYSTALLINE SOLIDS》,690,无,导师第一作者,本人第二作者,-,期刊论文,已发表,2026,已认定,二区,3.6
  2、《Post-service analysis of the laser-clad Ni-Co   protective coatings on blast furnace tuyere noses》,《Journal   of Failure Analysis and Prevention》,第二作者,期刊论文,录用,2027,四区,1.8
  3、《Ultra-high temperature melting and solidification   behavior of lunar soil simulant under vacuum》,《JOURNAL   OF NON-CRYSTALLINE SOLIDS》,682,无,第二作者,-,期刊论文,已发表,2026,已认定,二区,3.6
  4、《A Novel CaCl2 Chlorination Roasting Process for   High-Efficiency Purification of Quartz Sand》,《Minerals》,15,11,第二作者,1127,期刊论文,已发表,2025,已认定,三区,2.2
  5、《一种Cr-Si基六边形片状多相纳米材料及其制备方法与应用》,专利,导师第一作者,本人第二作者,申请,2026-07-08,2026110091211

1(2,SCI二区,导1);
1(3,SCI二区,导2);
1(3,SCI三区,导2);
1(3,SCI四区,导2);
1(2,专利申请,导1)

32.1

正选

4

他晓悦

085600 材料与化工

24722535

90.13

1、《A multiphase   hierarchical microstructure regulated by austenite thermal stability achieves excellent mechanical   properties in medium-Mn steel》,《Materials Science   & Engineering A》,974,无,第一作者,150806,期刊论文,已发表,2026,已认定,一区,7.9
  2、《Compositional and microstructural heterogeneities   achieve an excellent strength–ductility combination   in medium-Mn steel》,《The 3rd International Conference   on Heterostructured Materials》,第一作者,2026-07,已认定
  3、《大规格低合金超高强韧性中锰钢及其工业化生产方法》,专利,第三作者,已授权,2026-08-14,ZL202610652581.X

1(1,SCI一区);
1(3,专利授权,导1)

39.2

正选

5

李明辉

085600 材料与化工

24722638

87.27

1、《Superior   Room Temperature to 750 °C Strength–Ductility Synergy in a B2–Strengthened   Ti50Al16.7Nb16.6V16.7 Lightweight Medium–Entropy   Alloy》,《Rare Metals》,第一作者,期刊论文,录用,2027,一区,12.1

1(1,SCI一区);

38

正选

6

董雅静

085600 材料与化工

24722644

87.13

1、《Refractory   high-entropy alloys for advanced nuclear energy: a review of irradiation   response and fusion compatibility》,《science china technological science》,校内核心,中国科技论文统计源期刊目录(科技引证),第一作者,期刊论文,已发表,2026,已认定,一区,5.1

1(1,SCI一区);

38

正选

7

孙玉洁

085600 材料与化工

24722577

90.87

1、《Microstructural   erosion mechanism of high-alumina castables from shaft to bosh in   hydrogen-rich blast furnaces》,《Ceramics International》,第一作者,期刊论文,录用,2026,二区,6
  2、《Unveiling the intrinsic “molecular   engine” driven autocatalytic cycle in coal   combustion: A combined experimental and DFT investigation》,《Journal of the Energy Institute》,126,2026,第二作者,期刊论文,已发表,2026,已认定,二区,6.5
  3、《一种高炉风口喷氢喷煤一体化喷枪》,专利,第一作者,已授权,2026-07-17,CN202610667032.X
  4、《一种高炉块状带煤气及粉尘成分取样监测系统》,专利,第二作者,已授权,2026-08-04,CN202610854534.3
  5、《一种高炉纵向测温装置》,专利,第二作者,申请,2026-04-22,202610537865.4

1(1,SCI二区); 

1(2,SCI二区);
1(1,专利申请);
2(2,专利申请)

28.2

正选







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