Standout Papers
- Potential applications of metal-organic frameworks (2009)
- Tuning the Topology and Functionality of Metal−Organic Frameworks by Ligand Design (2010)
- Metal-Organic Framework from an Anthracene Derivative Containing Nanoscopic Cages Exhibiting High Methane Uptake (2007)
- A Pyrene-Based, Fluorescent Three-Dimensional Covalent Organic Framework (2016)
- An Isoreticular Series of Metal–Organic Frameworks with Dendritic Hexacarboxylate Ligands and Exceptionally High Gas‐Uptake Capacity (2010)
- Two-Dimensional Metal–Organic Framework with Wide Channels and Responsive Turn-On Fluorescence for the Chemical Sensing of Volatile Organic Compounds (2014)
- Stable metal-organic frameworks containing single-molecule traps for enzyme encapsulation (2015)
- Mixed Matrix Membranes (MMMs) Comprising Exfoliated 2D Covalent Organic Frameworks (COFs) for Efficient CO2 Separation (2016)
- Highly Stable Porous Polymer Networks with Exceptionally High Gas‐Uptake Capacities (2011)
- Polyamine‐Tethered Porous Polymer Networks for Carbon Dioxide Capture from Flue Gas (2012)
- Sulfonate-Grafted Porous Polymer Networks for Preferential CO2 Adsorption at Low Pressure (2011)
- Porous Polymer Networks: Synthesis, Porosity, and Applications in Gas Storage/Separation (2010)
- Rational Design of Crystalline Covalent Organic Frameworks for Efficient CO2 Photoreduction with H2O (2019)
- Optimizing Multivariate Metal–Organic Frameworks for Efficient C2H2/CO2 Separation (2020)
- Highly Connected Three-Dimensional Covalent Organic Framework with Flu Topology for High-Performance Li-S Batteries (2023)
Immediate Impact
147 by Nobel laureates 29 from Science/Nature 550 standout
Citing Papers
Ultrahigh–surface area covalent organic frameworks for methane adsorption
2024 StandoutScience
Water-Enhanced Direct Air Capture of Carbon Dioxide in Metal–Organic Frameworks
2024 StandoutNobel
Works of Daqiang Yuan being referenced
Carbon Dioxide Capture from Air Using Amine-Grafted Porous Polymer Networks
2013
Enhancing H2 Uptake by “Close‐Packing” Alignment of Open Copper Sites in Metal–Organic Frameworks
2008
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Daqiang Yuan | 28470 | 25414 | 8238 | 503 | 37.4k | |
| Christoph Janiak | 23714 | 15903 | 9337 | 730 | 40.3k | |
| Jian‐Rong Li | 38413 | 31157 | 9626 | 405 | 50.4k | |
| Shengqian Ma | 33864 | 31676 | 5427 | 447 | 45.8k | |
| Guangshan Zhu | 21720 | 22329 | 4996 | 579 | 33.4k | |
| Silvia Bordiga | 33163 | 34818 | 3855 | 496 | 49.9k | |
| Wei Zhou | 29227 | 30410 | 5349 | 376 | 44.1k | |
| Carlo Lamberti | 22145 | 26565 | 3328 | 397 | 36.8k | |
| Gérard Férey | 32819 | 23749 | 9055 | 239 | 38.0k | |
| Martin Schröder | 22932 | 16011 | 10913 | 588 | 32.2k | |
| Xianhui Bu | 20460 | 18462 | 9186 | 356 | 29.5k |
All Works
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