If the idea of a diamond that’s as brilliant, durable, and breathtaking as a mined one—but without the environmental ...
Earlier this week, scientists from both institutions announced the creation of a diamond battery that leverages the decaying ...
Carbon atoms move around the planet in a process ... or allotropes, including graphene, diamond, nanotubes, and fullerenes or "buckyballs." Each form has attributes that make it excel at certain ...
Physicists have successfully created a lab-grown diamond with a hardness exceeding that of natural diamonds. By subjecting ...
Scientists encased nanodiamonds in tiny moving droplets of water to improve quantum sensing. The new technique lets researchers detect trace amounts of certain ions and molecules, and could someday ...
Green diamonds get their color when radiation displaces carbon atoms from their normal positions in the crystal structure. This can happen naturally when diamond deposits lie near radioactive rocks, ...
It is based on the fact that living organisms—like trees, plants, people, and animals—absorb carbon-14 into their tissue. When they die, the carbon-14 starts to change into other atoms over time.
Chinese scientists have created an artificial “super diamond” much greater in hardness ... a cubic lattice – or arrangement of their carbon atoms – but a hexagonal crystal structure ...
Graphene has been hailed as one of the greatest inventions in modern history—yet it hasn't really done much of anything, just ...
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Colored Diamonds: The Eternal Sparkle of Holi
Holi, the vibrant festival of colors, is a celebration of love, joy, and the triumph of good over evil that transcends ...
S cientists have found a way to encase carbon-14 inside a synthetic diamond, and by doing so, they discovered something very intriguing. When encased in a diamond, carbon-14 undergoes a process we ...