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GautamJagadis 博士后     进组时间: 2019    离组时间: 2021

2019年至2021年于扬州大学攻读硕士研究生,研究方向为多酸复合材料合成及电催化应用,毕业后前往韩国金乌国立工科大学作为博士后继续从事研究工作。


发表文章:

Jagadis Gautam, Karthik Kannan, Mikiyas Mekete Meshesha, Bipeen Dahal, Subhangi Subedi, Lubin Ni*, Yongge Wei*, Bee Lyong Yang*,Heterostructure of polyoxometalate/zinc-iron-oxide nanoplates as an outstanding bifunctional electrocatalyst for the hydrogen and oxygen evolution reaction .[J]. Journal of Colloid and Interface Science, 2022, 615, 419-430.

Jagadis Gautam, Yi Liu, Jie Gu, Zhiyuan Ma, Bipeen Dahal, Aadil Nabi Chishti, Lubin Ni*, Guowang Diao*, Yongge Wei*. Three-dimensional nano assembly of nickel cobalt sulphide/polyaniline@polyoxometalate/reduced graphene oxide hybrid with superior lithium storage and electrocatalytic properties for hydrogen evolution reaction.[J]. Journal of colloid and interface science, 2022, 614, 642-654.

Jagadis Gautam, Yi Liu, Jie Gu, Zhiyuan Ma, Junjie Zha, Bipeen Dahal, LuNan Zhang, Aadil Nabi Chishti, Lubin Ni*, Guowang Diao, Yongge Wei. Fabrication of Polyoxometalate Anchored Zinc Cobalt Sulfide Nanowires as a Remarkable Bifunctional Electrocatalyst for Overall Water Splitting.[J]. Advanced Functional Materials,2021, 2106147.

Jagadis Gautam,Tran Duy Thanh,Kakali Maiti,Nam Hoon Kim,Joong Hee Lee. Highly efficient electrocatalyst of N-doped graphene-encapsulated cobalt-iron carbides towards oxygen reduction reaction[J]. Carbon,2018,137:

Jagadis Gautam,Duy Thanh Tran,Nam Hoon Kim,Joong Hee Lee. Mesoporous layered spinel zinc manganese oxide nanocrystals stabilized nitrogen-doped graphene as an effective catalyst for oxygen reduction reaction[J]. Journal of Colloid And Interface Science,2019,545:

Jagadis Gautam,Duy Thanh Tran,Thangjam Ibomcha Singh,Nam Hoon Kim,Joong Hee Lee. Mesoporous iron sulfide nanoparticles anchored graphene sheet as an efficient and durable catalyst for oxygen reduction reaction[J]. Journal of Power Sources,2019,427:

Gunendra Prasad Ojha,Jagadis Gautam,Alagan Muthurasu,Minju Lee,Bipeen Dahal,Tanka Mukhiya,Joong Hee Lee,Arjun Prasad Tiwari,Kisan Chhetri,Hak Yong Kim. In-situ fabrication of manganese oxide nanorods decorated manganese oxide nanosheets as an efficient and durable catalyst for oxygen reduction reaction[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2019,568: