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Yan Yao

Researcher at Soochow University (Suzhou)

Publications -  6
Citations -  276

Yan Yao is an academic researcher from Soochow University (Suzhou). The author has contributed to research in topics: Mesoporous material & Adsorption. The author has an hindex of 6, co-authored 6 publications receiving 208 citations.

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Direct Heating Amino Acids with Silica: A Universal Solvent-Free Assembly Approach to Highly Nitrogen-Doped Mesoporous Carbon Materials

TL;DR: In this paper, a general solvent-free assembly approach via directly heating amino acid and mesoporous silica mixtures is developed for the synthesis of a family of highly nitrogen-doped mesoporus carbons.
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A Molecular Foaming and Activation Strategy to Porous N-Doped Carbon Foams for Supercapacitors and CO2 Capture

TL;DR: The prepared HPNCFs possess 3D macropores, uniform micropores and mesopores, ultrahigh surface areas and high N contents and show high performances in supercapacitors and CO2 capture.
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Scalable synthesis of wrinkled mesoporous titania microspheres with uniform large micron sizes for efficient removal of Cr(VI)

TL;DR: In this paper, the combination of evaporation induced selfassembly (EISA) with a microfluidic-jet spray drying process for scalable synthesis of novel mesoporous TiO2 materials with the above-mentioned properties for Cr(VI) removal under both static and dynamic conditions is demonstrated.
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Conformal Coating of Co/N-Doped Carbon Layers into Mesoporous Silica for Highly Efficient Catalytic Dehydrogenation–Hydrogenation Tandem Reactions

TL;DR: The concept of coating uniform thin Co/N-doped carbon layers into the mesopore surfaces of mesoporous silica is proposed for heterogeneous aqueous catalysis, which exhibits excellent catalytic performance for tandem hydrogenation of nitrobenzene and dehydrogenation of NaBH4.
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Controllable Synthesis of Ordered Mesoporous Mo2C@Graphitic Carbon Core–Shell Nanowire Arrays for Efficient Electrocatalytic Hydrogen Evolution

TL;DR: Novel ordered mesoporous core-shell nanowires with Mo2C cores and ultrathin graphitic carbon (GC) shells are rationally synthesized and demonstrated to be excellent for HER.