Dandan Han
Fudan University
19 Papers
38 Citations
Dandan Han is an academic researcher from Fudan University. The author has contributed to research in topics: Nanoparticle & Chemistry. The author has an hindex of 11, co-authored 19 publications.
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Papers
Tailoring the Assembly of Iron Nanoparticles in Carbon Microspheres toward High-Performance Electrocatalytic Denitrification.
Li Su,Dandan Han,Guanjia Zhu,Hui Xu,Wei Luo,Lianjun Wang,Wan Jiang,Angang Dong,Jianping Yang +8 more
TL;DR: The present work not only explores high performance electro-catalysis for the denitrification, but also promotes new inspiration for the preparation of other iron-based functional materials for diverse applications.
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Fabrication of three-dimensionally interconnected nanoparticle superlattices and their lithium-ion storage properties
TL;DR: It is shown that mesoporous carbon frameworks derived from self-assembled supercrystals can be used as a robust matrix for the growth of nanoparticle superlattices with diverse compositions and are particularly suitable for energy storage applications.
Self-Assembly of One-Dimensional Nanocrystal Superlattice Chains Mediated by Molecular Clusters.
Xianfeng Zhang,Longfei Lv,Li Ji,Guannan Guo,Limin Liu,Dandan Han,Biwei Wang,Yaqi Tu,Jianhua Hu,Dong Yang,Angang Dong +10 more
TL;DR: This work opens a solution-based route for linearly assembling NCs and represents an important step toward the bottom-up construction of 1D ordered NC superstructures.
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Self-Assembled Nanoparticle Supertubes as Robust Platform for Revealing Long-Term, Multiscale Lithiation Evolution
Tongtao Li,Biwei Wang,Jing Ning,Wei Li,Guannan Guo,Dandan Han,Bin Xue,Jinxiang Zou,Guanhong Wu,Yuchi Yang,Angang Dong,Dongyuan Zhao +11 more
- 02 Oct 2019
TL;DR: In this article, free-standing supertubes, composed of a single layer of close-packed carbon-coated nanoparticles, are fabricated by a confined-epitaxial assembly strategy.
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Pomegranate-like, carbon-coated Fe3O4 nanoparticle superparticles for high-performance lithium storage
TL;DR: In this article, pomegranate-like microscale superparticles with an average size of 450nm, comprising close-packed Fe3O4@C yolk-shell nanoparticles (NPs), were constructed by combining bottom-up assembly and top-down etching methods.
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