Ultrasmall Metal Nanoparticles Confined within Crystalline Nanoporous Materials: A Fascinating Class of Nanocatalysts
Adv. Mater. 2018, 1803966.Ning Wang, Qiming Sun, and Jihong Yu*
Ultrasmall Metal Nanoparticles Confined within Crystalline Nanoporous Materials: A Fascinating Class of Nanocatalysts
AIEgen-functionalized mesoporous silica gated by cyclodextrin-modified cus for cell imaging and chemo-photothermal cancer therapy
ACS Applied Materials & Interfaces, 2018, DOI: 10.1021/acsami.7b14566.Li, Q. L.; Wang, D.; Cui, Y. Z.; Fan, Z. Y.; Ren, L.; Li, D. D.; Yu, J. H.*
AIEgen-functionalized mesoporous silica gated by cyclodextrin-modified cus for cell imaging and chemo-photothermal cancer therapy
Radical-facilitated green synthesis of highly ordered mesoporous silica materials
Journal of the American Chemical Society, 2018, DOI:10.1021/jacs.8b00093.Feng, G. D.; Wang, J. Y.; Boronat, M.; Li, Y.; Su, J. H.; Huang, J.; Ma, Y. H.; Yu, J. H.*
Radical-facilitated green synthesis of highly ordered mesoporous silica materials
Biodegradable AIEgen-functionalised mesoporous bioactive glass nanoparticles for drug delivery and cell imaging
Inorganic Chemistry Frontiers, 5(2018), 474-480.Wang, D.; Zhang, C. K.; Ren, L.; Li, D. D.; Yu, J. H.*
Biodegradable AIEgen-functionalised mesoporous bioactive glass nanoparticles for drug delivery and cell imaging
Infused-Liquid-Switchable Porous Nanofibrous Membranes for Multiphase Liquid Separation
Nat. Commun., 8(2017), 575.Wang, Y.; Di, J. C.; Wang, L.; Li, X.; Wang, N.; Wang, B. X.; Tian, Y.*; Jiang, L.; Yu, J. H.*
Infused-Liquid-Switchable Porous Nanofibrous Membranes for Multiphase Liquid Separation
Subnanometric Hybrid Pd-M(OH)2, M=Ni, Co, Clusters in Zeolites as Highly Efficient Nanocatalysts for Hydrogen Generation
Chem, 3(2017), 477-493.Sun, Q. M.; Wang, N.; Bing, Q. M.; Si, R.; Liu, J. Y.; Bai, R. S.; Zhang, P.; Jia, M. J.; Yu, J. H.*
Subnanometric Hybrid Pd-M(OH)2, M=Ni, Co, Clusters in Zeolites as Highly Efficient Nanocatalysts for Hydrogen Generation
Entropy-driven self-assembly of chiral nematic liquid crystalline phases of AgNR@Cu2O hyper branched coaxial nanorods and thickness-dependent handedness transition
Nano Research, 11(2018), 1018-1028.Cheng, G. Q.; Wang, Y.*; Liu, K.; Yu, J. H.*
Entropy-driven self-assembly of chiral nematic liquid crystalline phases of AgNR@Cu2O hyper branched coaxial nanorods and thickness-dependent handedness transition