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
To celebrate International Women′s Day this March 8th, IUPAC is pleased to announce the awardees of the IUPAC 2017 Distinguished Women in Chemistry or Chemical Engineering: Prof. Misako Aida, Hiroshima University, Japan Prof. Lifeng Chi, Soochow University, Suzhou, China Prof. M. Concepción Gimeno, Institute of Chemical Synthesis and Homogeneous Catalysis (ISQCH), CSIC-University of Zaragoza, Spain Dr Jaqueline Kiplinger, Los Alamos National Laboratory, Los Alamos, NM, United States Prof. Zafra Lerman, Malta Conferences Foundation, Evanston, IL, United States Prof. Thisbe K. Lindhorst, Universität Kiel, Germany Prof. Ekaterina Lokteva, M.V. Lomonosov Moscow State University, Moscow, Russia Prof. Yvonne Mascarenhas, University of Sao Paulo, Sao Carlos, Brazil Dr Veronika Ruth Meyer, Empa St. Gallen (retired), Swiss Federal Laboratories for Materials Science and Technology, Switzerland Prof. Ingrid Montes-González, University of Puerto Rico, San Juan, Puerto Rico Prof. Frances Separovic, University of Melbourne, Australia Prof. Jihong Yu, Jilin University, China The awards program, initiated as part of the 2011 International Year of Chemistry celebrations, was created to acknowledge and promote the work of women chemists/chemical engineers worldwide. These 12 [...]
Awardees of the IUPAC 2017 distinguished women in chemistry or chemica engineering
To celebrate International Women′s Day this March 8th, IUPAC is pleased to announce the awardees of the IUPAC 2017 Distinguished Women in Chemistry or Chemical Engineering:
On March 11, 2016, the research results of professor Yu Jihong team published in the journal Science, this is the first time in Jilin University chemistry research published in the journal Science. Abstract:In the hydrothermal crystallization of zeolites from basic media, hydroxide ions (OH–) catalyze the depolymerization of the aluminosilicate gel by breaking the Si,Al–O–Si,Al bonds and catalyze the polymerization of the aluminosilicate anions around the hydrated cation species by remaking the Si,Al–O–Si,Al bonds. We report that hydroxyl free radicals (•OH) are involved in the zeolite crystallization under hydrothermal conditions. The crystallization processes of zeolites—such as Na–A, Na–X, NaZ–21, and silicalite-1—can be accelerated with hydroxyl free radicals generated by ultraviolet irradiation or Fenton’s reagent.
Research results of Prof. Jihong Yu team published in the journal Science
On March 11, 2016, the research results of professor Yu Jihong team published in the journal Science, this is the first time in Jilin University chemistry research published
Accelerated crystallization of zeolites via hydroxyl free radicals
Science 11 Mar 2016 VOL 351 ISSUE 6278.Guodong Feng,Peng Cheng,Wenfu Yan,Mercedes Boronat,Xu Li,Ji-Hu Su,Jianyu Wang,Yi Li,Avelino Corma,Ruren Xu,Jihong Yu*
Accelerated crystallization of zeolites via hydroxyl free radicals
In situ confinement of ultra-small Pd clusters within nanosized silicalite-1 zeolite for high-efficient hydrogen generation catalysis
J. Am. Chem. Soc., 2016, 138 (24).Wang, N.; Sun, Q. M.; Bai, R. S., Li, X.; Guo, G. Q. Yu, J. H. *
In situ confinement of ultra-small Pd clusters within nanosized silicalite-1 zeolite for high-efficient hydrogen generation catalysis
Simple quaternary ammonium cations-Templated syntheses of extra-large pore germanosilicate zeolites
Chemistry of Materials, 2016, DOI 10.1021/acs.chemmater.6b03179.Bai, R. S.; Sun, Q. M.; Wang, N.; Zou, Y. C.; Guo, G. Q.; Iborra, S.; Corma, A.; Yu, J. H.*
Simple quaternary ammonium cations-Templated syntheses of extra-large pore germanosilicate zeolites