Publications
Showing 86 results for Author: Lilin He
Sep, 2026
Journal
Surface Graphitized Mesoporous Carbon Surpasses the Conductivity–Porosity Trade-Off
In carbon engineering, a longstanding trade-off persists: chemical activation increases surface area but sacrifices conductivity, whereas graphitization enhances conductivity at the expense of porosity. In 2017, we introduced an electrochemical graphitization strategy using cathodic polarization in CaCl2-NaCl molten salts to convert hard carbon into graphite. Here, we reve…
Sep, 2026
Journal
Acid-base bifunctional porous liquids
Basic solutions are essential for gas-involved catalytic transformations, yet their ultralow free volume limits gas solubility and diffusivity. Engineering permanent porosity in such reactive liquids has remained a longstanding challenge. Here, we introduce a surface-sacrifice strategy that incorporates Brønsted-acidic zeolite nanocrystals into strong organic bases to crea…
Aug, 2026
Journal
Neutron Scattering in Sodium-Ion Battery Research: Progress and Prospects
Sodium-ion batteries have attracted renewed interest in recent years and are widely studied as a complementary power source to Li-ion batteries for large-scale stationary energy storage and small electric vehicles. Compared with Li-ion batteries, Na-ion batteries offer several advantages, including elemental abundance, lower cost, improved safety, and better low-temperatur…
Jun, 2026
Journal
Highly Crystalline and Porous Borocarbonitrides as Metal-Free Catalysts for Boosted N-Heterocycle Dehydrogenation
Safe and efficient hydrogen storage is pivotal for enabling a clean hydrogen economy. Liquid organic hydrogen carriers (LOHCs) offer a practical solution, but their deployment is hindered by the lack of highly active and economical dehydrogenation catalysts. Here, we report a metal-free catalyst design that overcomes the long-standing trade-off between crystallinity and su…
Jun, 2026
Journal
Cyclodextrin-Derived Porous Liquids Enabled by In Situ Solvation Shell Formation
Porous liquids (PLs) represent a unique platform for molecular separations by combining permanent porosity with liquid-phase mobility. However, it remains a formidable challenge to construct and stabilize PLs with sub-5 Ã… pores using readily available porous host and liquid media. Here, we report the construction of cyclodextrin (CD)-derived PLs enabled by in situ solvatio…
Sep, 2025
Journal
Constructing Water-Stable Porous Organic Salts via Suppressed Proton Integration Using Fluorinated Tetrazole Tectons
Porous organic salts (POSs) are an emerging class of materials with ordered ionic architectures, offering excellent proton transfer and water uptake properties. However, conventional POS synthesis via strong acid–base neutralization (e.g., ─SO₃H and ─NHâ‚‚) leads to extensive hydrogen bonding with water, compromising stability in aqueous and water-lean environments. Here, we…
Aug, 2025
Journal
Design of robust and versatile hydrocarbon-based single-ion-conducting polymer electrolytes
Hydrocarbon-based polymers offer several advantages, including lower environmental impacts, cost effectiveness, and the ability to finely tune properties. Here, we have developed trifluoromethanesulfonimide (TFSI)-functionalized poly(norbornene) (PNB) polymers utilizing a specifically designed oxa-Michael addition of a vinyl TFSI anion to an alcohol. Our results reveal tha…
Mar, 2025
Journal
Tailoring the Gating Effect of Organic Cage via a Porous Liquid Approach
Porous liquids (PLs) represent a new frontier in material design combining the merits of solid porous host and liquid phase in gas separation and catalysis. Herein, the PL construction approach is harnessed to tailor the gating effect of organic cages toward enhanced gas separation. A type-II fluorinated PL (F-PL) is developed via liquifying a fluorinated organic cage (F-c…
Mar, 2025
Journal
Unveiling the porosity effect of superbase ionic liquid-modified carbon sorbents in CO2 capture from air
Direct air capture (DAC) of CO2 represents one of the most promising technologies to achieve negative carbon emissions. In this work, the superbase ionic liquids (ILs)-modified carbon substrates were developed for DAC of CO2 by harnessing the strong CO2 binding capability of IL and the ordered porous channels of the carbon supports. Detailed porosity analysis revealed that…
Mar, 2025
Journal
Sub-5 Ã…ngstrom Porosity Tuning in Calixarene-Derived Porous Liquids via Supramolecular Complexation Construction
Sub-Ã…ngstrom-level porosity engineering, which is appealing in gas separations, has been demonstrated in solid carbon, polymer, and framework materials but rarely achieved in the liquid phase. In this work, a gas molecular sieving effect in the liquid phase at sub-5 Ã…ngstrom scale is created via sophisticated porosity tuning in calixarene-derived porous liquids (PLs). Type…