
Chem. Mater.
2026.
Potassium-Stabilized 2H-Type Indium Sulfide in the Noncentrosymmetric Crystal K0. 33 [Zn0. 33In1. 67S3] Probed by Azimuthal SHG.

Sci. China Mater.
2026. 1-9.
Nitrate intercalation suppresses Fe active-site dissolution in NiFe-LDH for durable industrial alkaline oxygen evolution.

J. Phys. Chem.
2026. a, 130(26), 5088.
The Cooperative Double Helicenyl Fragment Model: Efficiently Predicting Stereochemical Stability of Triphenylene-Cored Multiple Helicenes.

Chem. Eng. J.
2026. 178071.
Cation-size-directed interfacial and electronic engineering of Ti3C2Tx MXenes via ionic liquid intercalation for high-rate proton storage.

Angew. Chem.
2026. 138(25), e2457794.
Radical‐Based On‐Surface Transformation of Nonplanar Aromatics Into Nonbenzenoid Nanographenes.

Anal. Chem.
2026. 98(22), 16127.
Ultrafast Postcolumn Microdroplet Derivatization of Nucleobases for Enhanced Online Detection, Characterization, and Quantification of Nucleic Acid Modifications Using LC-MS2.

ACS Nano
2026. 20 (22), 16118-16134
Ultrasmall Ligand-Protected Ag7 Nanoclusters Enable Dual-Mode Reactive Oxygen Species Generation under Dark and Near-Infrared Irradiation.
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Anal. Chem.
2026. 98 (23), 17269-17277
A Unified Mass Spectrometry Workflow Integrating Bottom-Up and Native Top-Down Proteomics via Nanodroplet Enzymatic Digestion.
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J. Phys. Chem. C
2026. 130 (22), 7531-7540
Dynamic Copper Dissolution Enables a Facile C–C Coupling Pathway in CO2 Electroreduction: A First-Principles Study.
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Appl. Catal. B: Environ
2026. 126982.
Potential-Controlled Pathway Bifurcation Governs Product Selectivity in Nickel-Catalyzed Urea Oxidation.
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ACS Appl. Mater. Interfaces
2026. 18(15), 22020-22032.
Dual-Element Modulation of Cu Active Sites toward Enhanced C–C Coupling in CO2 Electroreduction.
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J. Phys. Chem. C
2026. 130(15), 5733-5740.
Visible Light-Responsive Bimetallic Mo2TiC2 MXenes for Enhanced Hydrogen Evolution Performance.

ACS Appl. Mater. Interfaces
2026. 18(13), 19860-19872.
Free-Standing Boron-Doped Graphene Hydrogel Buckypaper Fabricated via Zinc-Plate Reduction for High-Performance Supercapacitors.

Chem. Commun.
2026, 62, 5904-5908
Revealing the platinum single-atom anchoring mechanism through sequential surface engineering in Mo 2TiC2Tx MXene.
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Chem. Eng. J.
2026, 172090.
Binder-free, in-situ inkjet-reduced graphene with tunable layer architectures for supercapacitor applications.
