SDG7-Affordable and clean energy - 水果派AV解说 Where the passion of science is nurtured and empowered Fri, 31 Jul 2026 03:36:35 +0000 vi hourly 1 /wp-content/uploads/2022/07/cropped-Alumi-event-02-32x32.png SDG7-Affordable and clean energy - 水果派AV解说 32 32 HCMUS GREEN SUMMER CAMPAIGN: A DAY OF MEANINGFUL COMMUNITY PROJECTS IN 膼ONG THAP /hcmus-green-summer-campaign-a-day-of-meaningful-community-projects-in-dong-thap/ /hcmus-green-summer-campaign-a-day-of-meaningful-community-projects-in-dong-thap/#respond Tue, 28 Jul 2026 05:14:06 +0000 /?p=25156

On 26 July, the 膼ong Thap Standing Volunteer Team of the 2026 Green Summer Campaign at VNUHCM鈥揢niversity of Science (HCMUS) collaborated with the Standing Committee of the Lap Vo Commune Youth Union to organise the 鈥淐huy岷縩 xe y锚u th瓢啤ng鈥 (Journey of Kindness) programme. Held in response to the peak activity day 鈥淐hi岷縩 s末 t矛nh nguy峄噉 u峄憂g n瓢峄沜 nh峄 ngu峄搉鈥, the programme featured a range of welfare activities, experiential activities and youth projects, contributing to support for local residents and pupils in the area.

On this occasion, MSc V膬n Ch铆 Nam 鈥 Member of the Standing Committee of the Party Committee and Vice President of HCMUS 鈥 together with representatives from faculties, offices and units, visited the 膼ong Thap Standing Volunteer Team. The delegation met with student volunteers, received updates on campaign activities, encouraged the team and acknowledged the efforts made by students throughout volunteer activities and community service initiatives in the locality.

MSc V膬n Ch铆 Nam 鈥 Member of the Standing Committee of the Party Committee and Vice President of VNUHCM鈥揢niversity of Science 鈥 together with representatives from university units visiting and encouraging the 膼ong Thap Standing Volunteer Team.

As part of the programme, the organising committee presented 20 welfare gift packages to policy beneficiary families and households facing financial hardship, along with 30 gift sets comprising backpacks and exercise books for pupils at Binh Thanh Trung Secondary School. The initiative provided practical support to local families while encouraging pupils as they prepare for the new academic year.

 

During the programme, the 膼ong Thap Standing Volunteer Team also presented a number of youth-led community projects developed in response to local needs. These included the 鈥淢谩y t铆nh c农 鈥 Tri th峄ヽ m峄沬鈥 (Old Computers 鈥 New Knowledge) initiative, which donated 10 computer sets; the 鈥淭uy岷縩 膽瓢峄漬g c峄 T峄 qu峄慶鈥 (National Flag Route) project; the 鈥淭峄 s谩ch thi岷縰 nhi鈥 (Children鈥檚 Book Corner) project; an air deodorising filter project using water hyacinth; and the inauguration of the 鈥淭uy岷縩 膽瓢峄漬g Sen Xanh 鈥 Th岷痯 s谩ng 膽瓢峄漬g qu锚鈥 (Green Lotus Route 鈥 Lighting Rural Roads) project.

The lighting project comprises 65 solar-powered street lights installed along a 1.8-kilometre road in Binh Hoa 3 Hamlet, Lap Vo Commune, 膼ong Thap Province. Beyond improving visibility for local residents, the project contributes to public safety, traffic safety and more convenient travel after dark, while promoting renewable energy, supporting the vision of a 鈥淏right 鈥 Green 鈥 Clean 鈥 Beautiful鈥 environment and encouraging greater environmental awareness within the community.

Representatives of VNUHCM鈥揢niversity of Science and local authorities attending the inauguration ceremony for the 鈥淭uy岷縩 膽瓢峄漬g Sen Xanh 鈥 Th岷痯 s谩ng 膽瓢峄漬g qu锚鈥 (Green Lotus Route 鈥 Lighting Rural Roads) project.

Alongside these community initiatives, the programme featured a series of interactive booths showcasing science, digital transformation and foreign languages, together with cultural performances and interactive games. Through these activities, pupils explored science and technology in an engaging way while interacting with student volunteers in a lively festival atmosphere.

A particular highlight of the event was a professional development workshop entitled 鈥溼花ng d峄g Generative AI c啤 b岷 trong gi岷g d岷鈥 (Basic Generative AI Applications in Teaching), delivered by lecturers from HCMUS for teachers across Lap Vo Commune. The session introduced the fundamentals of Generative AI, explored emerging applications of artificial intelligence in education and provided practical guidance on using AI tools to develop lesson plans, design teaching materials, generate illustrations and prepare assessment questions, contributing to improved teaching effectiveness and optimised lesson preparation time.

Interactive booths on science, digital transformation and foreign languages attracting large numbers of pupils.
Dr Nguy峄卬 H脿 H霉ng Ch瓢啤ng, Lecturer at the Faculty of Interdisciplinary Sciences, VNUHCM鈥揢niversity of Science, serving as the workshop speaker.

Through these projects and activities, students from VNUHCM鈥揢niversity of Science gained valuable opportunities to apply academic knowledge and professional skills in real-world settings, contribute their expertise to community service activities and work alongside local communities to address practical needs. The campaign also provides an environment for students to develop a sense of responsibility, strengthen practical working skills and cultivate a commitment to social contribution through volunteer activities.

Minh T芒m _ Translated by PMN

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[DOCTORAL THESIS DEFENCE] DOCTORAL RESEARCHER V浓 T岷 PH脕T SUCCESSFULLY DEFENDS DOCTORAL THESIS ON POTENTIAL BIOMASS-BASED RECHARGEABLE BATTERY MATERIALS /doctoral-thesis-defence-researcher-vu-tan-phat-successfully-defends-doctoral-thesis-on-potential-biomass-based-rechargeable-battery-materials/ /doctoral-thesis-defence-researcher-vu-tan-phat-successfully-defends-doctoral-thesis-on-potential-biomass-based-rechargeable-battery-materials/#respond Sat, 21 Mar 2026 08:35:56 +0000 /?p=24141

On 20 March 2026, at VNUHCM鈥揢niversity of Science (HCMUS), doctoral researcher V农 T岷 Ph谩t successfully defended a doctoral thesis at the institutional level in Physical and Theoretical Chemistry. The research is entitled: 鈥淪tudy on the synthesis and electrochemical characterisation of silica-based materials for use as negative electrodes in Lithium-ion and Sodium-ion rechargeable batteries鈥, conducted under the academic supervision of Associate Professor Tr岷 V膬n M岷玭 and Associate Professor L锚 M峄 Loan Ph峄g.

The thesis focuses on the development of SiO2-based materials for negative electrodes in Li-ion and Na-ion rechargeable batteries, aiming to overcome limitations such as low electrical conductivity, significant volume expansion, and the poor stability of the Solid Electrolyte Interphase (SEI) layer. On this basis, the researcher successfully synthesised C/SiO2 material from rice husk biomass using chemical activation methods, creating a porous, low-cost, and environmentally friendly structure. Modifying the material with graphene and silver nanoparticles (AgNPs) facilitated the formation of a continuous conductive network, significantly improving ion diffusion and electrochemical performance.

Doctoral researcher V农 T岷 Ph谩t presenting the research findings before the Examination Committee.

Research results indicate that the materials achieve high capacity, stable Coulombic efficiency exceeding 98%, and excellent rate capability. Simultaneously, the electrolyte system was optimised with LiPF6 salt and FEC additives for high electrochemical stability, contributing to enhanced battery performance. These materials were subsequently utilised to assemble full-cells and pouch cells, demonstrating stable operation and good capacity retention over numerous charge-discharge cycles, thus proving the potential for practical application.

The Examiner of the Examination Committee offering comments and evaluating the research findings.

Furthermore, the thesis investigated a novel material, Mn7O8SiO4, featuring a stable structure and superior ion storage capacity, opening avenues for the development of next-generation electrode material systems. These findings not only contribute to enhancing the efficiency of SiO2 聽materials but also move towards the development of sustainable energy storage solutions by utilising biomass sources and promoting a circular economy.

The Examination Committee highly commended doctoral researcher V农 T岷 Ph谩t for the scientific value and practical applicability of the thesis, noting that the doctoral researcher exceeded all doctoral education requirements. During the research process, the doctoral researcher published 11 scientific works, including 9 international publications (7 as lead author), 1 domestic journal article, and 1 patent, confirming outstanding research capacity and academic contribution. The results achieved by the thesis provide a further scientific foundation for the development of silica-based electrode materials, whilst offering prospects for application in next-generation rechargeable battery systems, aligning with global trends in green and sustainable energy development.

Doctoral researcher V农 T岷 Ph谩t taking a commemorative photograph with the Examination Committee and supervisors.

The post [DOCTORAL THESIS DEFENCE] DOCTORAL RESEARCHER V浓 T岷 PH脕T SUCCESSFULLY DEFENDS DOCTORAL THESIS ON POTENTIAL BIOMASS-BASED RECHARGEABLE BATTERY MATERIALS first appeared on 水果派AV解说.

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