J
Jose L. Mendoza-Cortes
Researcher at Florida State University
Publications - 71
Citations - 6502
Jose L. Mendoza-Cortes is an academic researcher from Florida State University. The author has contributed to research in topics: Density functional theory & Graphene. The author has an hindex of 21, co-authored 58 publications receiving 5484 citations. Previous affiliations of Jose L. Mendoza-Cortes include Florida State University College of Arts and Sciences & Lawrence Berkeley National Laboratory.
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Journal ArticleDOI
Secondary building units, nets and bonding in the chemistry of metal–organic frameworks
TL;DR: The geometries of 131 SBUs, their connectivity and composition of transition-metal carboxylate clusters which may serve as secondary building units (SBUs) towards construction and synthesis of metal-organic frameworks (MOFs).
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Designed synthesis of 3D covalent organic frameworks.
Hani M. El-Kaderi,Joseph R. Hunt,Jose L. Mendoza-Cortes,Adrien P. Côté,Robert E. Taylor,Michael O'Keeffe,Omar M. Yaghi +6 more
TL;DR: Three-dimensional covalent organic frameworks (3D COFs) were synthesized by targeting two nets based on triangular and tetrahedral nodes: ctn and bor and have high thermal stabilities and high surface areas and extremely low densities.
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Recent advances on simulation and theory of hydrogen storage in metal–organic frameworks and covalent organic frameworks
TL;DR: This critical review covers the application of computer simulations, including quantum calculations (ab initio and DFT), grand canonical Monte-Carlo simulations, and molecular dynamics simulations, to the burgeoning area of the hydrogen storage by metal- organic frameworks and covalent-organic frameworks.
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S-Doped MoP Nanoporous Layer Toward High-Efficiency Hydrogen Evolution in pH-Universal Electrolyte
Kun Liang,Srimanta Pakhira,Zhenzhong Yang,A. Nijamudheen,Licheng Ju,Maoyu Wang,Carlos I. Aguirre-Velez,George E. Sterbinsky,Yingge Du,Zhenxing Feng,Jose L. Mendoza-Cortes,Yang Yang +11 more
TL;DR: In this paper, a self-organized S-doped MoP nanoporous layer (S-MoP NPL) is achieved through a facile e cient ECC.
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Low-temperature Synthesis of Heterostructures of Transition Metal Dichalcogenide Alloys (WxMo1–xS2) and Graphene with Superior Catalytic Performance for Hydrogen Evolution
Yu Lei,Srimanta Pakhira,Kazunori Fujisawa,Xuyang Wang,Oluwagbenga Oare Iyiola,Nestor Perea Lopez,Ana Laura Elías,Lakshmy Pulickal Rajukumar,Chanjing Zhou,Bernd Kabius,Nasim Alem,Morinobu Endo,Ruitao Lv,Jose L. Mendoza-Cortes,Mauricio Terrones +14 more
TL;DR: In this article, stacked graphene and transition-metal dichalcogenide (TMD) alloys were used as hydrogen evolution catalysts for the hydrogen evolution reaction (HER).