Lei Tian
Researcher at Department of Chemistry - Ångström Laboratory; Physical Chemistry
- E-mail:
- lei.tian@kemi.uu.se
- Visiting address:
- Ångströmlaboratoriet
Lägerhyddsvägen 1
751 20 UPPSALA - Postal address:
- Box 523
751 20 UPPSALA
Publications
Recent publications
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Base-mediated alkynyl-cubane to Cu8-alkynide cluster transformation
Part of Chemical Communications, p. 18673-18676, 2025
- DOI for Base-mediated alkynyl-cubane to Cu8-alkynide cluster transformation
- Download full text (pdf) of Base-mediated alkynyl-cubane to Cu8-alkynide cluster transformation
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Part of Advanced Materials Interfaces, 2021
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Part of ACS Applied Energy Materials, p. 4308-4312, 2021
- DOI for In Situ Preparation and Immobilization of Semiconducting Polymer Dots on Microbeads for Efficient and Stable Photocatalytic Hydrogen Evolution
- Download full text (pdf) of In Situ Preparation and Immobilization of Semiconducting Polymer Dots on Microbeads for Efficient and Stable Photocatalytic Hydrogen Evolution
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Understanding the Role of Surface States on Mesoporous NiO Films
Part of Journal of the American Chemical Society, 2020
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Exploring Dye-Sensitized Mesoporous NiO Photocathodes: from Mechanism to Applications
2020
All publications
Articles in journal
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Base-mediated alkynyl-cubane to Cu8-alkynide cluster transformation
Part of Chemical Communications, p. 18673-18676, 2025
- DOI for Base-mediated alkynyl-cubane to Cu8-alkynide cluster transformation
- Download full text (pdf) of Base-mediated alkynyl-cubane to Cu8-alkynide cluster transformation
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Part of Advanced Materials Interfaces, 2021
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Part of ACS Applied Energy Materials, p. 4308-4312, 2021
- DOI for In Situ Preparation and Immobilization of Semiconducting Polymer Dots on Microbeads for Efficient and Stable Photocatalytic Hydrogen Evolution
- Download full text (pdf) of In Situ Preparation and Immobilization of Semiconducting Polymer Dots on Microbeads for Efficient and Stable Photocatalytic Hydrogen Evolution
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Understanding the Role of Surface States on Mesoporous NiO Films
Part of Journal of the American Chemical Society, 2020
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Part of Nano Energy, p. 59-64, 2019
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Highly Stabilized Quantum Dot Ink for Efficient Infrared Light Absorbing Solar Cells
Part of Advanced Energy Materials, 2019
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Mechanistic Insights into Solid-State p-Type Dye-Sensitized Solar Cells
Part of The Journal of Physical Chemistry C, p. 26151-26160, 2019
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Part of ChemSusChem, p. 3243-3248, 2019
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Part of Chemical Communications, p. 7918-7921, 2019
- DOI for A heavy metal-free CuInS2 quantum dot sensitized NiO photocathode with a Re molecular catalyst for photoelectrochemical CO2 reduction
- Download full text (pdf) of A heavy metal-free CuInS2 quantum dot sensitized NiO photocathode with a Re molecular catalyst for photoelectrochemical CO2 reduction
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Part of Journal of Materials Chemistry A, p. 13777-13786, 2019
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Ultrafast dye regeneration in a core-shell NiO-dye-TiO2 mesoporous film
Part of Physical Chemistry, Chemical Physics - PCCP, p. 36-40, 2018
- DOI for Ultrafast dye regeneration in a core-shell NiO-dye-TiO2 mesoporous film
- Download full text (pdf) of Ultrafast dye regeneration in a core-shell NiO-dye-TiO2 mesoporous film
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Solid state p-type dye sensitized NiO-dye-TiO2 core-shell solar cells
Part of Chemical Communications, p. 3739-3742, 2018
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Part of Advanced Energy Materials, 2018
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Hydrogen evolution by a photoelectrochemical cell based on a Cu2O-ZnO-[FeFe] hydrogenase electrode
Part of Journal of Photochemistry and Photobiology A, p. 27-33, 2018
- DOI for Hydrogen evolution by a photoelectrochemical cell based on a Cu2O-ZnO-[FeFe] hydrogenase electrode
- Download full text (pdf) of Hydrogen evolution by a photoelectrochemical cell based on a Cu2O-ZnO-[FeFe] hydrogenase electrode
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Part of Dalton Transactions, p. 10775-10783, 2018
- DOI for Covalently linking CuInS2 quantum dots with a Re catalyst by click reaction for photocatalytic CO2 reduction
- Download full text (pdf) of Covalently linking CuInS2 quantum dots with a Re catalyst by click reaction for photocatalytic CO2 reduction
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Part of Energy & Environmental Science, p. 1372-1376, 2017
- DOI for An experimental and theoretical study of an efficient polymer nano-photocatalyst for hydrogen evolution
- Download full text (pdf) of An experimental and theoretical study of an efficient polymer nano-photocatalyst for hydrogen evolution
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Part of Journal of Materials Chemistry C, p. 11111-11120, 2017
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Part of ChemSusChem, p. 2480-2495, 2017
- DOI for Insights into the Mechanism of a Covalently Linked Organic Dye-Cobaloxime Catalyst System for Dye-Sensitized Solar Fuel Devices
- Download full text (pdf) of Insights into the Mechanism of a Covalently Linked Organic Dye-Cobaloxime Catalyst System for Dye-Sensitized Solar Fuel Devices
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Part of ACS Nano, p. 8478-8487, 2017
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Organic Polymer Dots as Photocatalysts for Visible Light-Driven Hydrogen Generation
Part of Angewandte Chemie International Edition, p. 12306-12310, 2016