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June 3, 2026
Pocket Money, Personal Interest, and Family Practices: What Shapes Students Economic Literacy?
University students' economic literacy depends not only on their field of study but also on their interest in economics, the learning environment, and family financial practices. For example, students who received pocket money irregularly tend to perform better on economic literacy tests than their peers who received financial support on a regular basis. These findings come from a study conducted by HSE University involving more than 1,100 students from five Russian universities. The findings have been published in Cakrawala Pendidikan.
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The creative, supportive atmosphere and innovative methods at the Centre for Sociocultural Research make it appealing to early-career scholars. Over years of working at HSE University, they grow into researchers and lecturers recognised both in Russia and abroad. Chief Research Fellow Zarina Lepshokova and Leading Research Fellow Ekaterina Bushina spoke about their journey at the centre and at HSE, their research, and the role of mentors in their academic success.
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Researchers at HSE University analysed how effectively the global generative artificial intelligence market converts investment into real revenue, concluding that AI is currently developing faster than it is paying off. The results have been published in the journal Foresight and STI Governance.

 

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Improving the Cycling Stability of NCM811 at High-Voltage 4.5V in Ester-Based Electrolytes with LiDFOB

SMALL METHODS. 2025. Vol. 9. No. 4. Article 2401178.
Chen Y., Liu D., Xu X., Wang X., Jiao X., Bai Y., Xiong S., Vasenko A., Wang Y., Song Z., Liu Y.

Nickel-rich layered cathode materials, particularly LiNi0.8Mn0.1Co0.1O2 (NCM811), have garnered significant attention due to their high energy density and impressive electrochemical performance. However, their cycling stability is compromised at elevated voltages, primarily due to structural instability and interfacial degradation. In this study, lithium difluoro(oxalato)borate (LiDFOB) is introduced into a commercial electrolyte based on lithium hexafluorophosphate (LiPF6) to elucidate the structural and interfacial changes occurring in NCM811 at a high cut-off voltage of 4.5 V. It is found that the preferential decomposition of LiPF6 leads to the formation of a protective inert interface. At the same time, violent anisotropic lattice contraction and expansion generate cracks that contribute to the rapid degradation of NCM811. Notably, the incorporation of LiDFOB significantly mitigates these detrimental effects. Consequently, NCM811|Li cells utilizing this optimized electrolyte demonstrate an initial specific capacity of 214 mAh g−1 and remarkable capacity retention of 83.6% after 400 cycles at a 1C rate (1C = 200 mAh g−1). The findings pave the way for leveraging higher capacities of NCM811 at elevated cut-off voltages, thereby enhancing its viability for high-end energy applications.

Research target: Chemical Technologies
Language: English
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Keywords: cathode materialsкатодные материалыElectrochemical performanceNickel-rich materialsEster-Based ElectrolytesМатериалы богатые Niэлектрохимические характеристикиЭлектролиты на основе эфиров
Publication based on the results of:
Quantum devices and technologies of the new generation (2025)
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