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May 14, 2026
Resource Race and Green Transition: Three Unexpected Conclusions from Foresight Centres Research on Climate and Poverty
Beneath the surface of green energy—which most people associate with solar panels, electric vehicles, and reduced CO2 emissions—lies a complex web of geopolitical interests, international inequality, and resource constraints. Researchers from the Laboratory for Science and Technology Studies (LST) at the HSE ISSEK Foresight Centre have published a series of articles in leading international journals on hidden and overt conflicts surrounding critically important metals and minerals, as well as related processes in the energy sector.
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Immersion in Second Language Environment Influences Bilinguals Perception of Emotions
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‘Any Real-Economy Company Can Use Our Products
The HSE Centre for Financial Research and Data Analytics combines fundamental and applied work, including in areas unique to Russia such as the connection between sentiment in the media and social networks and financial markets. The HSE News Service spoke with the centre’s director, Professor Tamara Teplova, about its work.

 

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Rational Electrostatic Iodine Regulation for Photothermally Stable Perovskite Solar Cells

Advanced Energy Materials. 2025. Vol. 15. No. 47. Article e03666.
Zhu X., Jiang X., Fu S., Weng Q., Li Y., Sun N., Liu J., Feng B., Zhang W., Liu X., Li X., Andrey S. Vasenko, Fang J.

Perovskite solar cells (PSCs), as a promising photovoltaic technology, have achieved remarkable progress in efficiency. However, perovskite with soft-lattice nature inherently suffers from severe iodine losses under photothermal operation, leading to the irreversible degradation in their photovoltaic performance, thereby remaining a great challenge to achieving durable PSCs. Here, electrostatic iodine regulation is reported by rational design on amine cations for photothermally stable PSCs. Theoretical simulations uncover that more alkyl chains binding on the nitrogen atom can not only strengthen the electrostatic interaction between amine cation and triiodine anions (I3−), and the quaternary amine cation can also inhibit the amine cation from deprotonation, yielding much more effective iodine confinement than widely-used van der Waals interactions. After incorporating tetrabutylammonium iodide (TBAI), substantial enhancements on photothermal tolerances are detected on perovskite films with effectively suppressed iodine losses and metal electrode erosions. Additionally, TBAI also promotes the crystallization and passivate defect, resulting in reduced undesirable recombination within perovskite. Consequently, the targeted PSCs realize a champion efficiency of 26.23%. Moreover, the device features superior operational stability and maintains 92.5% of initial efficiency after 1000 h maximum power point (MPP) tracking at 85 °C.

Research target: Chemical Technologies
Language: English
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Keywords: эффективностьefficiencyiodineЙодPerovskite solar cellsперовскитные солнечные элементыphotovoltaic performanceфотоэлектрические характеристики
Publication based on the results of:
Разработка высокоэффективных и стабильных перовскитных солнечных элементов (2027)
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