孙伟明
  • 单位:福建医科大学   药学院
  • 职称:教师
  • 性别:男
  • 社会职务: 中国化学会高级会员

研究领域

理论与计算化学,量子药物化学



论文与著作

2023年

(1)Cui Y.-F., Zhang L., Wang W.-L., Yang J.-F.*, Chen J.-H. and Sun, W.-M.* Designing Zr12O12 nanocage for the delivery of anticancer drugs: a theoretical study. Journal of Physics D: Applied Physics 2023, 56, 445401.(2)Zhang, L.; Zhang, J.-C.; Shi, L.-F.; Cheng, X.; Chen, J.-H.; Sun, W.-M.* On the possibility of using the Ti@Si16 superatom as a novel

drug delivery carrier for different drugs: A DFT study. Journal of Molecular Graphics and Modelling 2023, 118, 108378.

(3)Ye, Y.-L.; Pan, K.-Y.; Wang, W.-L.; Ni, B.-L.; Sun, W.-M.* On the Catalytic Performance of (ZrO) n (n = 1–4) Clusters for CO Oxidation: A DFT Study. ChemPhysChem 2023, 24, e202200776.

(4)Liu, Y.; Sun, W.; Feng, K.; Wu, Y.; Yu, B.; Liu, S.; Zhou, F.  Sebaceous gland-inspired self-lubricated de-icing coating by continuously secreting lubricants. Progress in Organic Coatings 2023, 174, 107311.

(5)Hou H., Wang C., Cheng X.et al.  Visible light-induced direct and highly selective C–H functionalization of quinoxalin-2(1H)-one without orientating group. Catalysis Science & Technology 2023, 13, 305.

(6)Lin J., Chen J., Ye Y., Zhuang Y., Sun, W.-M.* , Chen J. and Han Z.* In or on, a study of the influence of the binding site for TiO(2) and MIL-101(Cr). Dalton transactions 2023, 52, 5345-5353.

(7) Guo Y.-X., Liu B., Wang W.-L., Kang J., Chen J.-H. and Sun, W.-M.* Computational screening of metalloporphyrin-based drug carriers for antitumor drug 5-fluorouracil. Journal of Molecular Graphics and Modelling 2023, 125, 108617.

(8) Ye Y.-L., Wang W.-L., Sun, W.-M.* et al.  Polymeric tungsten carbide nanoclusters as potential non-noble metal catalysts for CO oxidation. Nanoscale 2022, 14, 18231.

(9) Huang C., Sun W., Jin Y., Guo Q., Mücke D., Chu X., Liao Z., Chandrasekhar N., Huang X., Lu Y., Chen G., Wang M., Liu J., Zhang G., Yu M., Qi H., Kaiser U., Xu G., Feng X. and Dong R. A General Synthesis of Nanostructured Conductive MOFs from Insulating MOF Precursors for Supercapacitors and Chemiresistive Sensors. Angewandte Chemie International Edition 2023,https://doi.org/10.1002/anie.202313591.

(10) Li Y.-Q., Cheng X., Jiang S., Song W.-X., Chen J.-H. and Sun W.-M. Cyclometalatedgold(III)-hydride under oriented external electric fields: a new strategy to modulate its reactivity? Chemistry – A European Journal 2023, https://doi.org/10.1002/chem.202303568.

(11) Ye Y.-L., Zhang Z.-C., Ni B.-L., Yu D., Chen J.-H. and Sun W.-M. Theoretical prediction of superatom WSi12-based catalysts for CO oxidation by N2O. Physical Chemistry Chemical Physics 2023, 25, 32525-32533.


2022年

(1) Ye, Y.-L.; Wang, W.-L.; Sun, W.-M.*; Yang, J.*  Polymeric tungsten carbide nanoclusters as potential non-noble metal catalysts for CO

 oxidation. Nanoscale 2022, 14, 18231.

(2) Li, X.-H.; Cheng, X.; Wang, W.-L.; Yu, D.; Ni, B.-L.; Sun, W.-M.*  Alkali-Metal-Free Coinage Metalides: Specific Pairing and Location of Doping Atoms Bring Forth High Stability and Considerable Nonlinear Optical Response. Organometallics 2022, 41, 3697.(3) Sun W.-M.*, Cheng X., Wang W.-L. and Li X.-H. Designing Magnetic Superalkalis with Extremely Large Nonlinear Optical Responses.


Organometallics 2022, 41, 2406–2414.

(4) Sun W.-M.*, Cheng X., Ye Y.-L., Li X.-H. and Ni B.-L. On the Possibility of Using Aza-Cryptands to Design Superalkalis. Organometallics 

2022.,1,412–417

(5) Zhang L., Cheng X., Li X.-H., Chen J.-H. and Sun W.-M.* A DFT study on the adsorption behavior of antiviral Favipiravir drug on 

BnNn(n = 12, 16, 20, and 24) nanocages: the size effect. Journal of Molecular Liquids 2022, 360, 119388.

(6) Xia Y., Chen T., Chen W., Chen G., Xu L., Zhang L., Zhang X., Sun W., Lan J., Lin X. and Chen J. A dual-modal aptasensor based on a 

multifunctional acridone derivate for exosomes detection. Analytica Chimica Acta 2022, 1191, 339279.

(7) Cheng X., Ye Y.-L., Zhang L., Zheng K.-W., Li X.-H. and Sun W.-M.* A theoretical study of the mono-substituent effect of superhalogens 

on the geometric structure, electronic properties, and hydrolysis of cisplatin. Chemical Physics 2022, 111447.

(8) Hou H., Ma X., Ye Y., Wu M., Shi S., Zheng W., Lin M., Sun W.* and Ke F. Non-metal-mediated N-oxyl radical (TEMPO)-induced 

acceptorless dehydrogenation of N-heterocycles via electrocatalysis. RSC Advances 2022, 12(9), 5483-5488.

(9) Huang K., Fang Q., Sun W., He S., Yao Q., Xie J., Chen W. and Deng H. Cucurbit[n]uril Supramolecular Assemblies-Regulated Charge 

Transfer for Luminescence Switching of Gold Nanoclusters. The journal of physical chemistry letters 2022, 419-426.

(10) Wu M., Huang S., Hou H., Lin J., Lin M., Zhou S., Zheng Z., Sun, W.-M.*and Ke F.* DIPEA-induced activation of OH− for the synthesis of amides via photocatalysis. RSC Advances 2022, 12, 14724-14728.

(11) Ye, Y.-L.; Pan, K.-Y.; Ni, B.-L.; Sun, W.-M.* Designing Special Nonmetallic Superalkalis Based on a Cage-like Adamanzane Complexant. 

Frontiers in Chemistry 2022, 10.

(12) Zeng, L.; Shi, W.; Wang, H.; Cheng, X.; Chen, T.; Wang, L. L.; Lan, J.; Sun, W.; Liu, M.; Zhang, X.; Zhang, J.; Chen, J. 

Codelivery of pi-pi Stacked Dual Anticancer Drugs Based on Aloe-Derived Nanovesicles for Breast Cancer Therapy. 

ACS applied materials & interfaces 2022.DOI :10.1021/acsami.2c06546

(13) Huang, K.-Y.; Huang, X.; Fang, X.-Y.; Cheng, S.; Sun, W.-M.; Noreldeen, H. A. A.; Zhang, Q.; Deng, H.-H.; Chen, W. 

De novo design of a photoluminescent sensor for baicalin detection via regulating molecule-like charge transfer of gold nanocluster. 

Sensors and Actuators B: Chemical 2022, 368, 132197.

(14) Chen, G.; Chen, W.; Xu, L.; Jin, H.; Sun, W.; Lan, J.; Wu, F.; Zhang, X.; Zhang, J.; Chen, J. Sensitive, Highly Stable, and Anti-Fouling 

Electrode with Hexanethiol and Poly-A Modification for Exosomal microRNA Detection. Analytical chemistry 2022, 94, 5382-5391.

(15) Deng H., Huang K., Xiu L., Sun W., Yao Q., Fang X., Huang X., Noreldeen H. A. A., Peng H., Xie J. and Chen W. Bis-Schiff base

 linkage-triggered highly bright luminescence of gold nanoclusters in aqueous solution at the single-cluster level. 

Nature Communications 2022, 13(1), DOI:10.1038/s41467-022-30760-3.

(16) Chen, W.; Liu, J.; Sun, W.; He, H.; Yu, S.; Li, Y.; Li, Z.  Metalloborospherenes with the stabilized classical fullerene-like borospherene B36 as electric field manipulated second-order nonlinear optical switches. New Journal of Chemistry  2022. DOI: 10.1039/D2NJ04111A

(17)Srivastava, A. K.; Anusiewicz, I.; Velickovic, S.; Sun, W.-M.; Gutsev, G. L. Superhalogens & Superalkalis: Exploration of Structure, 

Properties and Applications; Frontiers Media, 2022.(Book)

荣誉与奖励

福建医科大学“青年之星”、福建省高校“杰出青年”人才计划、福建医科大学青年教师讲课比赛特等奖等