← back to search

Phillip J. Milner

Cornell University · US
Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research interests include Metal-Organic Frameworks: Synthesis and Applications, X-ray Diffraction in Crystallography, Crystallization and Solubility Studies, and Covalent Organic Framework Applications.
h-index
38
citations
5,013
works
240
NIH funding
primary concept
Chemistry
email

Recent publications

Caging the Chlorine Radical: Chemoselective Photocatalytic C(sp<sup>3</sup>)-H Functionalization Enabled by Terminal Cu-Cl Sites in a Metal-Organic Framework.
2026cited by 1position: contributordoi
Electroreductive Radical Olefin Difunctionalization with Fluorinated Gases Enabled by Dosage Delivery from a Metal-Organic Framework.
2026cited by 0position: contributordoi
Interrogating the Carboxylation of Potassium β-Diketonates and β-Diketiminates by Carbon Dioxide.
2026cited by 0position: contributordoi
Organic photochemistry for direct light-driven separations.
2026cited by 0position: contributordoi
Sorption and desorption of per- and polyfluoroalkyl substances (PFASs) on unmodified iron oxide and silica clay minerals.
2026cited by 0position: contributordoi
Photochemical Fluoroalkylations with Fluorinated Gases Facilitated by a Robust Metal-Organic Framework.
2026cited by 0position: contributordoi
Shining a Light on the Photophysics of Tetraaryl[3]cumulene-Based Metal–Organic Frameworks
ACS Materials Letters 2026cited by 0position: contributordoi
Are hydrofluorocarbon gases ideal building blocks for organofluorine synthesis? Fluoroform (CHF3) as a case study
Tetrahedron 2026cited by 0position: contributordoi
Enhancing Selective Hydrofluorocarbon Greenhouse Gas Capture via Halogenation of Metal–Organic Frameworks
Journal of the American Chemical Society 2025cited by 15position: lastdoi
Dynamic Evolution from Single-Atom Catalysts to Active Nanograins for CO<sub>2</sub> Reduction
Journal of the American Chemical Society 2025cited by 10position: middledoi
Carbon Capture from Natural Gas Flue Emissions and Air via (Bi)Carbonate Formation in a Cyclodextrin-Based Metal–Organic Framework
Journal of the American Chemical Society 2025cited by 9position: lastdoi
Harnessing Oxidized Amines as Robust Sorbents for Carbon Capture
Journal of the American Chemical Society 2025cited by 8position: lastdoi
&lt;sup&gt;17&lt;/sup&gt;O NMR Spectroscopy Reveals CO&lt;sub&gt;2&lt;/sub&gt; Speciation and Dynamics in Hydroxide-Based Carbon Capture Materials.
2025cited by 8position: contributordoi
A fully light-driven approach to separate carbon dioxide from emission streams
Chem 2025cited by 5position: contributordoi
Electrochemical CO <sub>2</sub> Capture by a Quinone-Based Covalent Organic Framework
Journal of the American Chemical Society 2025cited by 4position: middledoi
Enhancing Selective Hydrofluorocarbon Greenhouse Gas Capture via Halogenation of Metal-Organic Frameworks.
2025cited by 4position: contributordoi
Carbon Capture from Natural Gas Flue Emissions and Air via (Bi)Carbonate Formation in a Cyclodextrin-Based Metal-Organic Framework.
2025cited by 3position: contributordoi
Controlled Growth and Interconversion of Photoluminescent Metal-Organic Frameworks Under High-Concentration Conditions.
2025cited by 2position: contributordoi
Chemisorptive carbon capture sees the light
Trends in Chemistry 2025cited by 2position: contributordoi
Defluorinative Coupling of (NH)-Heteroarenes and Unactivated Vinyl Fluorides Enabled by Metal-Organic Frameworks.
2025cited by 1position: contributordoi
Harnessing Oxidized Amines as Robust Sorbents for Carbon Capture.
2025cited by 1position: contributordoi
A Strongly Reducing sp<sup>2</sup> Carbon-Conjugated Covalent Organic Framework Formed by N-Heterocyclic Carbene Dimerization.
2025cited by 1position: contributordoi
Dynamic Evolution from Single-Atom Catalysts to Active Nanograins for CO&lt;sub&gt;2&lt;/sub&gt; Reduction.
2025cited by 1position: contributordoi
High-concentration aqueous synthesis of salicylate-based metal-organic frameworks.
2025cited by 0position: contributordoi
A coarse-grained simulation toolkit for metal-organic framework synthesis.
2025cited by 0position: contributordoi
Electrochemical CO&lt;sub&gt;2&lt;/sub&gt; Capture by a Quinone-Based Covalent Organic Framework.
2025cited by 0position: contributordoi
Caging the Chlorine Radical: Chemoselective Photocatalytic C(sp3)–H Functionalization Enabled by Terminal Cu–Cl Sites in a Metal-Organic Framework
2025cited by 0position: contributordoi
New Molecular Mechanisms for Greenhouse Gas Capture in Metal-Organic Frameworks: Carbon Dioxide and Beyond
2025cited by 0position: contributordoi
High-Concentration Aqueous Synthesis of Salicylate-Based Metal-Organic Frameworks
2025cited by 0position: contributordoi
Defluorinative Coupling of (NH)-Heteroarenes and Unactivated Vinyl Fluorides Enabled by Metal–Organic Frameworks
2025cited by 0position: contributordoi

Grants

CAREER: Unlocking Reactivity-Based Separations of Olefins using Metal-Organic Frameworks
NSF2047627$550,0002021–2026PIRePORTER

Frequent collaborators

· 104 papers (2019–2026)Alexander C. Forse · University of Cambridge22 papers (2019–2025)Jung‐Hoon Lee · Northeastern University21 papers (2019–2025) · 15 papers (2019–2025) · 12 papers (2020–2025)Jeffrey R. Long · Lawrence Berkeley National Laboratory11 papers (2019–2024) · 11 papers (2019–2024)Jaehwan Kim · Seoul National University11 papers (2021–2025)Tristan A. Pitt · Cornell University9 papers (2021–2025)Stephen L. Buchwald · Massachusetts Institute of Technology9 papers (2012–2015) · 8 papers (2021–2025) · 8 papers (2019–2023)Jaehwan Kim · Seoul National University7 papers (2021–2025)Mary E. Zick · Cornell University6 papers (2019–2025)R.T. Jerozal · Cornell University6 papers (2021–2025)José J. Fuentes-Rivera · Cornell University6 papers (2019–2023)Hong Geun Lee · Massachusetts Institute of Technology5 papers (2013–2015)Héctor D. Abruña · Cornell University4 papers (2021–2024)Ruth M. Mandel · Cornell University4 papers (2021–2024)José J. Fuentes-Rivera · Cornell University4 papers (2019–2023)