西安建筑科技大学
导师风采
杨铭扬
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个人信息

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  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

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  • 所属院系:资源工程学院
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  • 工作电话 : -
研究成果

1. Yang MY, Guo L, Wu X, et al. Subpore-mediated tunablewater absorption in nanoparticle-based materials[J]. International Journal ofHeat and Mass Transfer, 2024, 231: 125811.  

2. Yang MY, Yang B, Yue W, et al. Tunable gas absorptioncapability for graphene doped silica aerogel by wrinkle structure: Effects ofgas absorption, mechanical properties and thermal insulation[J]. Separation and Purification Technology, 2024, 336: 126325.8

3. Yang MY, Sheng Q, Zhang H, et al. Water molecular bridgeundermines thermal insulation of Nano-porous silica aerogels[J]. Journal ofMolecular Liquids, 2022, 349: 118176.

4. Yang MY, Sheng Q, Guo L, et al. How gas-solid interactionmatters in graphene-doped silica aerogels[J]. Langmuir, 2022, 38: 2238-2247.

5. YangMY, Tang G H, Sheng Q,et al. Atomic-level sintering mechanism of silica aerogels at hightemperatures: structure evolution and solid thermal conductivity[J].International Journal of Heat and Mass Transfer, 2022, 199: 123456.

6. Yang MY, B Yang, L Guo et al. Dual role oftwo-dimensional graphene in silica aerogel composite: thermal resistance andheat node [J]. Colloidsand Surfaces A: Physicochemical and Engineering Aspects.2024, 134632. 6

7. Yang MY,Guo L, Meng X, etal. Anti-leakage mechanism of silica–paraffin material for building energysaving: Role of silica–paraffin interactions[J]. International Journal of Heatand Mass Transfer, 2025, 241: 126751. 6

8. Yang MY, Guo L, Li N, et al. Heattreatment customizes pore structure of silica aerogel: The induced role offaults[J]. Construction and Building Materials,2024, 452: 138812. 8

9. Yang MY, Yang B, Meng X, et al. Atomic-level mechanisms ofmethane absorption in silica-based porous materials with non-uniform faults:Enhancing adsorption via surface faults[J]. Applied SurfaceScience, 2025: 163069. 6

10. Yang M, Si Q, Tang G, et al. High-TemperatureResistance.Lightweight, and Thermally Insulating Silica Aerogel viaDopingHollow Silica Nanoparticles[J]. ACS Applied NanoMaterials,2025,8(17):8845-8854.

11. Yang M,Yin R, Yang H,Sheng Q, Guo L, Pu J, Du M.Porous graphene aerogel acts as high-performancethermal energy carrier for phase change materials in thermal management[J]. Applied ThermalEngineering, 2025. Accept.

 

12. Huang M, Zhao Y, Tang G H, Sun Q, Yang MY*,Du M. Toward improved optical transparency of silica nanofibrous aerogels[J].Solar Energy Materials and Solar Cells, 2024, 276: 113032. (通讯作者)

13. Bi C, Yang M, Shi Y, et al. Temperature-Dependence of ElasticMechanical Properties of Silica Aerogels: Insights into High-TemperatureApplications[J]. Ceramics International, 2025. (通讯作者).

14.杨铭扬,杨博,宋一鸣,等.二氧化硅多孔材料甲烷吸附的分子动力学模拟研究[J].中国安全科学学报,2025,35(02):168-174.DOI:10.16265/j.cnki.issn1003-3033.2025.02.0402.6

15. Yang M,Yin R, Yang H,Sheng Q, Guo L, Pu J, Du M.Porous graphene aerogel acts as high-performancethermal energy carrier for phase change materials in thermal management[J]. Applied ThermalEngineering, 2025. Accept.

16. Bi C, Yang M, Yang X, et al. Improved Prediction of ElasticModulus for Carbon-Based Aerogels Using Power-Scaling Model[J]. Gels, 2025,11(3): 184.

17.Li N, Wang M, Zhao J, Sun K, Bi C, Du M, You Er, Yang M. Heat TransferCharacterization of TPMS Heat Exchangers Applied to the Aerospace Field[J]. Frontiersin Heat and Mass Transfer, 2025,23(2):601-614. (通讯作者).


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