宋先雨

时间:2022-03-24

编辑:20140007

宋先雨


副教授

硕士研究生导师



办公地点:慎思楼4栋低碳技术与服务产业学院计算化学与人工智能研究室

邮箱地址:xianyusong@sanxiau.edu.cn

          xianyus008@163.com





个人简历


2023.04-2024.04  新加坡国立大学,博后

2022.12-至今     重庆三峡学院,副教授

2022.06-2022.12  重庆三峡学院,讲师

2017.09-2020.06  华东理工大学,攻读博士

2013.09-2016.06  西南石油大学,攻读硕士

2009.09-2013.06  四川文理学院,本科学习

主要研究方向

研究方向(欢迎有攻读博士计划的学生进组学习):

1 人工智能与计算化学(算法)

2 纳米-生物界面、纳米药设计

3 石油化工分离及新型污染物


学术网页:

https://www.researchgate.net/profile/Xianyu_Song

https://scholar.google.com.hk/citations?user=gbYuppEAAAAJ&hl=zh-CN


社会兼职及荣誉

人才与获奖:

2024.09 第四批重庆市学术技术带头人后备

2023.08 重庆市巴渝学者 青年学者


社会兼职:

SCI期刊Medical Gas Research青年编委

中国青年科技工作者协会会员


指导硕士生及就业去向:

2023届硕士毕业生 —— 获国家奖学金、优秀毕业生、硕士研究生学业奖学金、三好研究生等荣誉,现任公务员。

2022级硕士研究生 —— 获国家奖学金、硕士研究生学业奖学金、三好研究生等荣誉,现任公务员。

2024届硕士毕业生 —— 获硕士研究生学业奖学金、优秀毕业生等荣誉,现攻读广西大学博士学位。

2025届硕士毕业生 —— 获硕士研究生学业奖学金,现任公务员。

承担项目

主持科研项目:

1 国家自然科学基金面上项目,主持,在研;

2 新重庆青年创新人才项目,主持,已结题;

3 重庆市教育委员会科学技术研究项目(重点),主持,在研;

4 中石油川庆钻探工程有限公司企业项目,主持,在研;

5 国家自然科学基金青年项目,主持,已结题;

6 重庆市自然科学基金面上项目,主持,已结题;

7 重庆市博士“直通车”科研项目,主持,已结题;

8 万州区科技创新项目,主持,已结题;


教育教改:

1 重庆市课程思政示范课程、教学名师和示范教学团队---化学反应工程,主持,2024.11

2 《人工智能与化学》主编,重庆大学出版社 2025.12



近期学术成果

1.人工智能与计算化学(算法)

(1)Yu Y, Song X*, Yang X, et al. Optimization of chitosan-based demulsifiers via interfacial displacement: A molecular dynamics and principal component analysis approach[J]. Separation and Purification Technology, 2025, 365: 132693.

(2)Hu J, Yang X, Song X*, et al. Elucidating environmental fate and toxicological mechanisms of ultrashort-and short-chain PFAS: Integrating machine learning, molecular modeling, and experimental validation[J]. Journal of Environmental Management, 2025, 390: 126277.

(3)Wu X, Song X, Chen L, et al. Accurate and interpretable machine learning with pore+ descriptors for iodide capture in metal–organic frameworks[J]. Separation and Purification Technology, 2025, 360: 130933.

(4)Wu X, Song X, Yue Y, et al. MOF-KAN: Kolmogorov–Arnold Networks for Digital Discovery of Metal–Organic Frameworks[J]. Journal of Physical Chemistry Letters, 2025, 16(10): 2452-2459.


2.纳米-生物界面、纳米药设计

(1)Song X*, Lai R, Liu H, et al. Deformation-Induced Enthalpy–Entropy Competition Governs Cellular Penetration of Elastic Polymer Nanoparticles: Molecular Thermodynamic–Dynamic Simulations[J]. Biomacromolecules, 2025, 26(12): 8858-8868.

(2)Song X*, Duan X, Xiang W, et al. Noncovalent Interaction Thresholds Control Translocation and Cytotoxicity: A Combined Computational–Experimental Study[J]. Journal of Medicinal Chemistry, 2025, 68(14): 15015-15025.

(3)Song X*, Nie X, Wang S, et al. Mesoscopic-scale insights into cellular internalization of deformable polymeric nanoparticles: Structural heterogeneity vs networked elasticity[J]. Colloids and Surfaces B: Biointerfaces, 2025: 115302.

(4)Song, X, Ma, J, Long, T, Xu, X, Zhao, S*, & Liu, H. Mechanochemical Cellular Membrane Internalization of Nanohydrogels: A Large-Scale Mesoscopic Simulation. ACS Applied Materials & Interfaces, 2020, 13(1): 123-134.

(5)Song X*, Liu H, Duan X, et al. Self-propelled cellular translocation of Janus-shaped graphene quantum dots: A molecular dynamics simulation and thermodynamic analysis[J]. Applied Surface Science, 2023, 609: 155425.

(6)Song, X, Qiao, C, Tao, J, Bao, B, Han, X, & Zhao, S*. Interfacial Engineering of Thermoresponsive Microgel Capsules: Polymeric Wetting vs Colloidal Adhesion. Macromolecules, 2019, 52, 103869-3880.

(7)Song X*, Wang S, Duan X, et al. Structural heterogeneity effects on microgel deswelling and interfacial properties: An extensive computational study[J]. Applied Surface Science, 2022, 605: 154639.


3.石油化工分离及新型污染物(资源化利用)

(1)Yu Y, Song X*, Wang Y, et al. Defect-mediated permeation of deep eutectic solvents in cellulose crystals: A combined experimental and molecular dynamics study[J]. Carbohydrate Polymers, 2025: 124331.

(2)Hu J, Yang X, Song X*, et al. Bioaccumulation mechanisms of perfluoroalkyl substances (PFASs) in aquatic environments: Theoretical and experimental insights[J]. Journal of Hazardous Materials, 2024: 136283.

(3)Song X*, Liu H, Hu J, et al. Bioinspired humic acid-based membranes for water desalination: Mechanistic insights from molecular simulations[J]. Desalination, 2024, 571: 117092.

(4)Xiang W, Song X*, Wang Y, et al. Molecular synergy and cooperative interactions in heterogeneous asphaltene aggregation: molecular dynamics insights[J]. Fuel, 2026, 421: 139012.

(5)Li, J; Liu, C; Yan, P; Chen, K; Jiang, Y; Liu, D; Shan, H; Song, X; Lyu, B; Jiang, J; Soh, S.* Amorphous Polymers Separate Small Organic Molecules with Switchable Selective States. Nature Communications 2025, accepted.



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