许健

发布者:许健发布时间:2024-08-23浏览次数:277

1. Real-Time In Situ Volatile Organic Compound Sensing by a Dual-Emissive Polynuclear Ln-MOF with the Pronounced LnIII Luminescence Response, J.-J. Pang, Z.-Q. Yao*, K. Zhang, Q.-W. Li, Z.-X. Fu, R. Zheng, W. Li, J. Xu*, X.-H. Bu, Angew. Chem. Int. Ed., 2023, 62, e202217456

2. Leveraging Surface Chemistry and Pore Shape Engineering in a Metal-Organic Framework for One-Step Olefin Purification, X. Lian, P.-X. Liu, Y.-C. Yuan, J.-J. Pang, L. Li, S.-S. Liu, B. Yue, Y.-H. Zhang, L. Li, J. Xu*, X.-H. Bu, Adv. Funct. Mater.2024, 34, 2312150

3. Dynamic Full-Color Tuning of Organic Chromophore in a Multi-Stimuli-Responsive 2D Flexible MOF, Z.-Q. Yao, K. Wang, R. Liu, Y.-J. Yuan, J.-J. Pang, Q. W. Li, T. Y. Shao, Z. G. Li, R. Feng, B. Zou, W. Li, J. Xu*, X.-H. Bu*, Angew. Chem. Int. Ed., 2022, 61, e202202073

4. Selective sensing of CrVI and FeIII ions in aqueous solution by an exceptionally stable TbIII-organic framework with an AIE-active ligand, J.-J. Pang, R.-H. Du, X. Lian, Z.-Q. Yao*, J. Xu*, X.-H. Bu, Chin. Chem. Lett., 2021, 32, 2443–2447

5. A dual-stimuli-responsive coordination network featuring reversible wide-range luminescence-tuning behavior, Z.-Q. Yao, J. Xu*, B. Zou, Z. Hu, K. Wang, Y.-J. Yuan, Y.-P. Chen, R. Feng, J.-B. Xiong, J. Hao, X.-H. Bu*, Angew. Chem. Int. Ed., 2019, 58, 5614-5618

6. A giant Dy76 cluster: A new fused bi-nanopillar structural model in lanthanide clusters, X.-Y. Li, H.-F. Su, Q.-W. Li, R. Feng, H.-Y. Bai, H.-Y. Chen, J. Xu, X.-H. Bu*, Angew. Chem. Int. Ed., 2019, 58, 10184-10188

7. Recent advances about metal-organic frameworks in the removal of pollutants from wastewater, Q. Gao, J. Xu*, X.-H. Bu*, Coord. Chem. Rev., 2019, 378, 17-31

8. Microporous luminescent metal−organic framework for a sensitive and selective fluorescence sensing of toxic mycotoxin in moldy sugarcane, D. Tian#, X.-J. Liu#, R. Feng, J.-L. Xu, J. Xu*, R.-Y. Chen, L. Huang, X.-H. Bu*, ACS Appl. Mater. Interfaces, 2018, 10, 5618-5625

9. A niccolite structural multiferroic metal-organic framework possessing four different types of bistability in response to dielectric and magnetic modulation, J.-P. Zhao, J. Xu, S.-D. Han, Q.-L. Wang, X.-H. Bu*, Adv. Mater., 2017, 29, 1606966

10. A rigid nested metal-organic framework featuring a thermoresponsive gating effect dominated by counter ions, Q. Gao#, J. Xu#, D. P. Cao, Z. Chang, X.-H. Bu*, Angew. Chem. Int. Ed., 2016, 55, 15027-15030 (Hot paper)

11. The first example of hetero-triple-walled metal–organic frameworks with high chemical stability constructed via flexible integration of mixed molecular building blocks, D. Tian#, J. Xu#, Z.-J. Xie, Z.-Q. Yao, D.-L. Fu, Z. Zhou, X.-H. Bu*, Adv. Sci.,2016,3, 1500283

12. A chiral lanthanide metal–organic framework for selective sensing of Fe(III) ions, X.-L. Zhao, D. Tian, Q. Gao, H.-W. Sun, J. Xu*, X.-H. Bu, Dalton Trans., 2016, 45, 1040–1046

13. The first demonstration of the gyroid in a polyoxometalate-based open framework with high proton conductivity, Q. Gao, X.-L. Wang, J. Xu*, X.-H. Bu*, Chem. Eur. J., 2016, 22, 9082-9086

14. Crystalline capsules: metal-organic frameworks locked by size-matching ligand bolts, H. Wang, J. Xu, D.-S. Zhang, Q. Chen, R.-M. Wen, Z. Chang, X.-H. Bu*, Angew. Chem. Int. Ed., 2015, 54, 5966–5970

15. Flexible metal–organic frameworks: recent advances and potential applications, Z. Chang, D.-H. Yang, J. Xu, T.-L. Hu, X.-H. Bu*, Adv. Mater.,2015, 27, 5432–5441

16. Syntheses, structures and magnetic properties of Fe6 and Fe12 ferric wheels, G.-J. Ren, Y.-Q. Liu, Z.-X. Zhao, S.-J. Liu, S.-D. Han, J. Xu*, X.-H. Bu, Sci. China Chem., 2015, 58, 1853–1857