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Fullerene Collection

Fullerene, the captivating world of nanotube technology and carbon molecules, continues to astound scientists and enthusiasts alike

Background imageFullerene Collection: Graphene sheet, artwork C016 / 8274

Graphene sheet, artwork C016 / 8274
Graphene sheet. Computer artwork showing the molecular structure of a graphene sheet. Graphene is a single layer of graphite

Background imageFullerene Collection: Nanotube technology

Nanotube technology. Computer artwork of four cylindrical fullerenes (carbon nanotubes) of varying size, with the smaller ones nested inside the larger ones

Background imageFullerene Collection: Carbon nanotube

Carbon nanotube. Computer artwork showing the hexagonal carbon structure of a nanotube, or buckytube

Background imageFullerene Collection: Nanotube technology, conceptual artwork

Nanotube technology, conceptual artwork
Nanotube technology. Conceptual computer artwork of a woman wearing a hat that represents carbon nanotube technology. The hat is in the form of a molecular model that shows the hexagonal carbon

Background imageFullerene Collection: Buckyball molecule C320, artwork

Buckyball molecule C320, artwork
Artwork of a buckyball molecule, chemical formula C320, also known as buckminsterfullerene. This large spherical fullerene molecule made of 320 carbon atoms is arranged like a geodesic dome of

Background imageFullerene Collection: Buckminsterfullerene molecule

Buckminsterfullerene molecule. Computer graphic of buckminsterfullerene (C60), a structural form (allotrope) of carbon. The carbon (C) atoms (green spheres)

Background imageFullerene Collection: Nanotube technology, computer artwork

Nanotube technology, computer artwork
Nanotube technology. Computer artwork of a cylindrical fullerene molecule (carbon nanotube). The hexagonal carbon structure of the nanotube is shown here

Background imageFullerene Collection: Fullerene molecule, computer artwork

Fullerene molecule, computer artwork
Fullerene molecule. Computer artwork of the spherical fullerene molecule C320. Fullerenes are a structural type (allotrope) of carbon

Background imageFullerene Collection: Buckyball molecule

Buckyball molecule. Computer artwork of a molecule of buckminsterfullerene (C60), a spherical fullerene and the first fullerene to be discovered (in 1985)

Background imageFullerene Collection: Buckyball, artwork F008 / 3355

Buckyball, artwork F008 / 3355
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3347

Buckyball, artwork F008 / 3347
Buckyball, computer artwork

Background imageFullerene Collection: Buckyballs, artwork F008 / 3359

Buckyballs, artwork F008 / 3359
Buckyballs, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3344

Buckyball, artwork F008 / 3344
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3358

Buckyball, artwork F008 / 3358
Buckyball, computer artwork

Background imageFullerene Collection: Buckytube, artwork F008 / 3352

Buckytube, artwork F008 / 3352
Buckytube, computer artwork

Background imageFullerene Collection: Nanomedicine, conceptual artwork F008 / 3361

Nanomedicine, conceptual artwork F008 / 3361
Nanomedicine, conceptual computer artwork

Background imageFullerene Collection: Nanomedicine, conceptual artwork F008 / 3360

Nanomedicine, conceptual artwork F008 / 3360
Nanomedicine, conceptual computer artwork

Background imageFullerene Collection: Buckyballs, artwork F008 / 3349

Buckyballs, artwork F008 / 3349
Buckyballs, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3354

Buckyball, artwork F008 / 3354
Buckyball, computer artwork

Background imageFullerene Collection: Buckytube, artwork F008 / 3353

Buckytube, artwork F008 / 3353
Buckytube, computer artwork

Background imageFullerene Collection: Nanomedicine, conceptual artwork F008 / 3362

Nanomedicine, conceptual artwork F008 / 3362
Nanomedicine, conceptual computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3346

Buckyball, artwork F008 / 3346
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3342

Buckyball, artwork F008 / 3342
Buckyball, artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3345

Buckyball, artwork F008 / 3345
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3348

Buckyball, artwork F008 / 3348
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3343

Buckyball, artwork F008 / 3343
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3351

Buckyball, artwork F008 / 3351
Buckyball, computer artwork

Background imageFullerene Collection: Buckyballs, artwork F008 / 3350

Buckyballs, artwork F008 / 3350
Buckyballs, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3356

Buckyball, artwork F008 / 3356
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3341

Buckyball, artwork F008 / 3341
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, artwork F008 / 3357

Buckyball, artwork F008 / 3357
Buckyball, computer artwork

Background imageFullerene Collection: Buckyball, Buckminsterfullerene molecule

Buckyball, Buckminsterfullerene molecule
Buckminsterfullerene molecule. Computer artwork of a molecular model of a fullerene molecule, a structurally distinct form (allotrope) of carbon

Background imageFullerene Collection: Buckminsterfullerene molecule C016 / 8354

Buckminsterfullerene molecule C016 / 8354
Buckminsterfullerene molecule. Computer artwork showing the molecular structure of buckminsterfullerene, a structurally distinct form (allotrope) of carbon that has 60 carbon atoms (black)

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8888

Nanotube structure, artwork C016 / 8888
This image may not be used in educational posters Nanotube structure. Computer artwork of the structure of a cylindrical nanotube

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8889

Nanotube structure, artwork C016 / 8889
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8886

Nanotube structure, artwork C016 / 8886
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8887

Nanotube structure, artwork C016 / 8887
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8890

Nanotube structure, artwork C016 / 8890
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8885

Nanotube structure, artwork C016 / 8885
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8891

Nanotube structure, artwork C016 / 8891
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8883

Nanotube structure, artwork C016 / 8883
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8884

Nanotube structure, artwork C016 / 8884
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8533

Nanotube structure, artwork C016 / 8533
Nanotube structure. Computer artwork showing a cylindrical nanotube being formed from a sheet of graphene, a single layer of graphite

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8532

Nanotube structure, artwork C016 / 8532
Nanotube structure. Computer artwork showing a cylindrical nanotube being formed from a sheet of graphene, a single layer of graphite

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8530

Nanotube structure, artwork C016 / 8530
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8526

Nanotube structure, artwork C016 / 8526
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageFullerene Collection: Nanotube structure, artwork C016 / 8531

Nanotube structure, artwork C016 / 8531
Nanotube structure. Computer artwork of the structure of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon



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Fullerene, the captivating world of nanotube technology and carbon molecules, continues to astound scientists and enthusiasts alike. From its inception as a concept to its realization in various forms, it has revolutionized the field of materials science. One remarkable aspect is its association with graphene sheets, which are incredibly thin yet strong structures composed entirely of carbon atoms. These sheets have paved the way for numerous technological advancements and hold immense potential for future applications. Artwork C016/8274 showcases the intricate beauty of nanotube technology through a conceptual representation. The image captures the essence of this groundbreaking innovation, highlighting the interconnectedness and complexity within these tiny structures. The buckyball molecule C320 is another fascinating creation within the fullerene family. Its unique spherical shape captivates viewers with its symmetrical arrangement of carbon atoms. This artwork serves as a testament to human ingenuity in understanding molecular structures at such minute scales. Similarly, the buckminsterfullerene molecule takes center stage in another computer-generated artwork that celebrates nanotube technology's achievements. This mesmerizing depiction highlights how nature-inspired designs can inspire scientific breakthroughs. Computer models further enhance our understanding by providing detailed visualizations molecules and their properties. These virtual representations offer insights into their structural intricacies while showcasing their aesthetic appeal. Carbon nanotubes remain an integral part research due to their exceptional strength-to-weight ratio and electrical conductivity properties. Computer models depicting these tubes serve as valuable tools for studying their behavior under different conditions and exploring potential applications across various industries. Fullerene's significance extends beyond scientific circles; it has also captured popular imagination evident from Popular Science Magazine Covers featuring this cutting-edge technology on multiple occasions. Such exposure helps bridge gaps between academia and public awareness while fueling curiosity about our ever-evolving world. Fullerene represents a realm where artistry meets scientific exploration—a fusion that unravels the mysteries of nanotube technology and carbon molecules.