Themed collection Celebrating the 10th Anniversary of ShanghaiTech University

6 items
Editorial

Celebrating the 10th anniversary of ShanghaiTech University

Pengxin Liu, Zhijun Ning, Zhujun Wang and Chunhong Ye introduce a Materials Chemistry Frontiers themed collection to celebrate the 10th anniversary of ShanghaiTech University.

Graphical abstract: Celebrating the 10th anniversary of ShanghaiTech University
Open Access Review Article

A review on the photochemical synthesis of atomically dispersed catalysts

A review on the photochemical synthesis of atomically dispersed catalysts, focusing on its fundamental principles, representative examples, key parameters and major challenges.

Graphical abstract: A review on the photochemical synthesis of atomically dispersed catalysts
Research Article

Salt-inclusion sulfides [K4Cl][MII11In9S26] (MII = Zn, Cd) displaying robust nonlinear optical activity

The parallel-oriented [MII11In9S26]3− framework synergistically interacts with the [K4Cl]3+ motif to achieve remarkable nonlinear optical activities.

Graphical abstract: Salt-inclusion sulfides [K4Cl][MII11In9S26] (MII = Zn, Cd) displaying robust nonlinear optical activity
Research Article

Enhanced production of aromatics from syngas over CoMnAl oxides combined with b-axis thickness tailored HZSM-5

A decreasing b-axis thickness and an appropriate density of Brønsted acid sites of HZSM-5 favors the syngas conversion to aromatics.

Graphical abstract: Enhanced production of aromatics from syngas over CoMnAl oxides combined with b-axis thickness tailored HZSM-5
Research Article

Efficient quasi-2D tin perovskite solar cells based on mixed monoammonium and diammonium terminal molecules

The use of a diammonium ligand, p-Xylylenediammonium thiocyanate, enhances the carrier transfer and improves device efficiency.

Graphical abstract: Efficient quasi-2D tin perovskite solar cells based on mixed monoammonium and diammonium terminal molecules
Research Article

Robust imidazole-linked Ni-phthalocyanine-based covalent-organic framework for CO2 electroreduction in the full pH range

Ni-phthalocyanine-based covalent-organic framework linked by imidazole group exhibits brilliant stability and high activity of CO2 electroreduction reaction with over 90% CO Faradic efficiency in full pH range.

Graphical abstract: Robust imidazole-linked Ni-phthalocyanine-based covalent-organic framework for CO2 electroreduction in the full pH range
6 items

About this collection

ShanghaiTech University is a young and active research university cofounded by the Chinese Academy of Sciences (CAS) and Shanghai Government. This year is its 10th anniversary.

Guest edited by Pengxin Liu, Zhijun Ning, Zhujun Wang and Chunhong Ye, this collection highlights the excellence, diversity and interdisciplinarity of the materials and chemistry researches at ShanghaiTech University.

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