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Mining Waste Could be a Potential Cheaper Catalyst for Hydrogen Fuel Production

Mining Waste Could be a Potential Cheaper Catalyst for Hydrogen Fuel Production
azocleantech.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from azocleantech.com Daily Mail and Mail on Sunday newspapers.

Australia
Godwin-ayoko
Ziqi-sun
Juan-bai
Jun-mei
Laura-thomsonsep
Chong-peng
Centre-for-materials-science
University-of-queensland
Energy-sustainability-research
School-of-chemistry
School-of-chemical-engineering

Crystal islands that could halve time and cost of science experiments

Crystal islands that could halve time and cost of science experiments
miragenews.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from miragenews.com Daily Mail and Mail on Sunday newspapers.

Australia
Australian
Vishakya-jayalatharachchi
Josh-lipton-duffin
Jennifer-macleod
Centre-for-materials-science
School-of-chemistry
Australian-research-council
Associate-professor-jennifer-macleod
Associate-professor-josh-lipton-duffin
Materials-science
Physical-chemistry

QUT space scientist is 2021 Queensland Tall Poppy

QUT space scientist is 2021 Queensland Tall Poppy
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Australia
United-states
Pilbara
Western-australia
Australians
Australian
Divya-mehta
Hugh-possingham
Luke-skywalker
Soniya-yambem
David-flannery
Perseverance-rover-mission

Hair Waste From A Barbershop Can Boost Solar Cells' Performance

May 11, 2021 Share Researchers are constantly thinking up new ways to improve solar cell technology. They’re figuring out what’s holding them back from achieving maximum efficiency and incorporating novel materials to enhance their performance. One of the latest in the latter is the use of carbon dots made from human hair waste sourced from a barbershop. The dots form a kind of ‘armor’ that enhances the performance of perovskites solar cells – a relatively new photovoltaic technology seen as the best candidate to deliver highly efficient solar electricity at a low cost in coming years. The cutting-edge solar technology has proven to be as effective in power conversion efficiency as monocrystalline silicon solar cells (what’s currently commercially available). Plus, they’re made with a compound that’s easily manufactured (unlike silicon cells). Another bonus is that it’s flexible, so it can be used in clothing, tents, backpacks, and any other on-the-go d

Hongxia-wang
Amandeep-singh-pannu
Centre-for-materials-science
Associate-professor-prashant-sonar
Waste-from
Barbershop-can-boost-solar-cell-performance
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