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Nanotube Collection

"Exploring the Fascinating World of Nanotubes: A Glimpse into Art and Science" Step into a realm where art meets science

Background imageNanotube Collection: Nanospheres, artwork F006 / 7075

Nanospheres, artwork F006 / 7075
Nanospheres arranged in a circular shape, computer artwork

Background imageNanotube Collection: Nanospheres, artwork F006 / 7094

Nanospheres, artwork F006 / 7094
Nanospheres arranged in a circular shape, computer artwork

Background imageNanotube Collection: Graphene sheet, artwork F006 / 7085

Graphene sheet, artwork F006 / 7085
Graphene sheet, computer artwork. Graphene is a single layer of graphite. It is composed of hexagonally arranged carbon atoms (spheres). Graphene is very strong and flexible

Background imageNanotube Collection: Graphene sheet, artwork F006 / 7076

Graphene sheet, artwork F006 / 7076
Graphene sheet, computer artwork. Graphene is a single layer of graphite. It is composed of hexagonally arranged carbon atoms (spheres). Graphene is very strong and flexible

Background imageNanotube Collection: Nanospheres, artwork F006 / 7082

Nanospheres, artwork F006 / 7082
Nanospheres arranged in a circular shape, computer artwork

Background imageNanotube Collection: Nanospheres, artwork F006 / 7079

Nanospheres, artwork F006 / 7079
Nanospheres arranged in a circular shape, computer artwork

Background imageNanotube Collection: Carbon nanotube F007 / 9900

Carbon nanotube F007 / 9900
Buckytube. Molecular model of part of the cage structure of a bucky- or nanotube. The spheres represent carbon atoms. In this structure hundreds of atoms form hexagon shapes along a tube

Background imageNanotube Collection: Carbon nanotube F007 / 9915

Carbon nanotube F007 / 9915
Buckytube. Molecular model of part of the cage structure of a bucky- or nanotube. The spheres represent carbon atoms. In this structure hundreds of atoms form hexagon shapes along a tube

Background imageNanotube Collection: Carbon nanotube F007 / 9910

Carbon nanotube F007 / 9910
Buckytube. Molecular model of part of the cage structure of a bucky- or nanotube. The spheres represent carbon atoms. In this structure hundreds of atoms form hexagon shapes along a tube

Background imageNanotube Collection: Buckytube, artwork F008 / 3352

Buckytube, artwork F008 / 3352
Buckytube, computer artwork

Background imageNanotube Collection: Buckytube, artwork F008 / 3353

Buckytube, artwork F008 / 3353
Buckytube, computer artwork

Background imageNanotube Collection: Buckyball in a nanotube, artwork F005 / 0796

Buckyball in a nanotube, artwork F005 / 0796
Buckyball molecule in a carbon nanotube, computer artwork

Background imageNanotube Collection: Super buckyball molecule, artwork F005 / 0792

Super buckyball molecule, artwork F005 / 0792
Super buckyball molecule, computer artwork

Background imageNanotube Collection: Carbon nanotube, artwork F005 / 0732

Carbon nanotube, artwork F005 / 0732
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageNanotube Collection: Carbon nanotube, artwork F005 / 0738

Carbon nanotube, artwork F005 / 0738
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageNanotube Collection: Super buckyball molecule, artwork F005 / 0793

Super buckyball molecule, artwork F005 / 0793
Super buckyball molecule, computer artwork

Background imageNanotube Collection: Carbon nanotube, artwork F005 / 0741

Carbon nanotube, artwork F005 / 0741
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageNanotube Collection: Buckyball and nanotube, artwork F005 / 0798

Buckyball and nanotube, artwork F005 / 0798
Buckyball molecule surrounded by a carbon nanotube, computer artwork

Background imageNanotube Collection: Carbon nanotube, artwork F005 / 0733

Carbon nanotube, artwork F005 / 0733
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageNanotube Collection: Carbon nanotube, artwork F005 / 0740

Carbon nanotube, artwork F005 / 0740
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageNanotube Collection: Carbon nanotube, artwork F005 / 0756

Carbon nanotube, artwork F005 / 0756
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageNanotube Collection: Carbon nanotube, artwork F005 / 0739

Carbon nanotube, artwork F005 / 0739
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageNanotube Collection: Nanotechnology, conceptual artwork F005 / 0806

Nanotechnology, conceptual artwork F005 / 0806
Nanotechnology, conceptual computer artwork

Background imageNanotube Collection: Buckyball and nanotube, artwork F005 / 0797

Buckyball and nanotube, artwork F005 / 0797
Buckyball molecule surrounded by a carbon nanotube, computer artwork

Background imageNanotube Collection: Carbon nanotubes, artwork F005 / 0799

Carbon nanotubes, artwork F005 / 0799
Carbon nanotubes, computer artwork

Background imageNanotube Collection: Nanotechnology, conceptual artwork F005 / 0805

Nanotechnology, conceptual artwork F005 / 0805
Nanotechnology, conceptual computer artwork

Background imageNanotube Collection: Nanotechnology, conceptual artwork F005 / 0807

Nanotechnology, conceptual artwork F005 / 0807
Nanotechnology, conceptual computer artwork

Background imageNanotube Collection: Carbon nanotube, artwork F005 / 0737

Carbon nanotube, artwork F005 / 0737
Carbon nanotube. Computer artwork of the inside of a nanotube, or buckytube

Background imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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 imageNanotube 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

Background imageNanotube Collection: Nanotube structure, artwork C016 / 8528

Nanotube structure, artwork C016 / 8528
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 imageNanotube Collection: Nanotube structure, artwork C016 / 8529

Nanotube structure, artwork C016 / 8529
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 imageNanotube Collection: Nanotube structure, artwork C016 / 8524

Nanotube structure, artwork C016 / 8524
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 imageNanotube Collection: Nanotube structure, artwork C016 / 8523

Nanotube structure, artwork C016 / 8523
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 imageNanotube Collection: Nanotube structure, artwork C016 / 8521

Nanotube structure, artwork C016 / 8521
Nanotube structure. Computer artwork of the interior of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageNanotube Collection: Nanotube structure, artwork C016 / 8519

Nanotube structure, artwork C016 / 8519
Nanotube structure. Computer artwork of the interior of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon

Background imageNanotube Collection: Nanotube structure, artwork C016 / 8520

Nanotube structure, artwork C016 / 8520
Nanotube structure. Computer artwork of the interior of a cylindrical nanotube. This molecule is a type of fullerene, a structural type (allotrope) of carbon



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"Exploring the Fascinating World of Nanotubes: A Glimpse into Art and Science" Step into a realm where art meets science, as we delve into the captivating world of nanotubes. These microscopic wonders have revolutionized various industries with their unique properties and endless possibilities. In artwork F006 / 7075, nanospheres dance gracefully, forming intricate patterns that mesmerize the eye. Their minuscule size belies their immense potential in fields like medicine and electronics. Adjacent to it, artwork F006 / 7094 showcases another masterpiece created by nanospheres. The delicate arrangement evokes a sense of wonder at how such tiny particles can create something so visually striking. Shifting our focus to graphene sheets in artwork F006 / 7085, we witness an ethereal beauty emanating from this ultra-thin material. Its exceptional strength and conductivity make it a game-changer for applications ranging from energy storage to flexible electronics. Next door in artwork F006 / 7076, another graphene sheet captivates us with its sheer elegance. Its transparency hints at its potential use in touchscreens or even solar cells – truly pushing the boundaries of innovation. Returning to nanospheres in artwork F006 / 7082, they come together harmoniously once again. This time, they form an abstract composition that sparks curiosity about their role in advanced materials research or drug delivery systems. Meanwhile, nearby in artwork F006 / 7079, these versatile nanospheres surprise us yet again with their ability to arrange themselves into complex structures reminiscent of futuristic architecture. Could this be a glimpse into what lies ahead? Stepping away from spheres but staying within the realm of carbon-based wonders is carbon nanotube series F007/9900-9915. These cylindrical marvels possess extraordinary strength while maintaining remarkable flexibility – qualities that have propelled them into numerous applications across diverse industries.