From the category archives:

Next steps

Molecular Manufacturing:
The NRC study and its recommendations

January 7, 2010

Part 6 of a series prompted by the recent 50th anniversary of Feynman’s historic talk, “There’s Plenty of Room at the Bottom”. This is arguably the most important post of the series, or of this blog to date.
Topics:
— The most credible study of molecular manufacturing to date
— The study’s recommendations for Federal research support
— The [...]

Read the full article →

The Molecular Machine Path
to Molecular Manufacturing (2):
Exploiting Improved Methods and Building Blocks

December 27, 2009

Part 4 of a series on the history and prospects of advanced nanotechnology concepts, prompted by the upcoming 50th anniversary of Feynman’s historic talk, “There’s Plenty of Room at the Bottom”.

Rigid, structurally diverse bis-peptide oligomers C. Schafmeister, JACS, 2006

In this post, I’d like to outline the promise of fabrication technologies that are within reach of [...]

Read the full article →

The Molecular Machine Path
to Molecular Manufacturing (1):
Foldamers and Brownian Assembly

December 25, 2009

Part 3 of a series prompted by the upcoming 50th anniversary of Feynman’s historic talk, “There’s Plenty of Room at the Bottom”.

Lathe, 1911 A machine tool, used to make machines

In my view, the most attractive way forward in developing advanced molecular machine systems is by exploiting the molecular machine systems that are available today. Historically, [...]

Read the full article →

Basement development? Big leaps?

December 20, 2009

Part 2.1 of a series on the history and prospects of advanced nanotechnology concepts, prompted by the upcoming 50th anniversary of Feynman’s historic talk, “There’s Plenty of Room at the Bottom”.
A commenter on the previous post has aired the often-mentioned basement-breakthrough scenario for achieving high-level molecular manufacturing. This scenario makes no sense, and I probably [...]

Read the full article →

Molecular Manufacturing: Where’s the progress?

December 19, 2009

Part 2 of a series on the history and prospects of advanced nanotechnology concepts, prompted by the upcoming 50th anniversary of Feynman’s historic talk, “There’s Plenty of Room at the Bottom”.

John Stewart Mill Debugging defects in human thought

As cognitive psychologists know, we human beings suffer from multiple, systematic cognitive biases, aberrations of intellectual vision that [...]

Read the full article →

How to make carbon nanotubes
at room temperature

November 15, 2009

As I noted in a recent post on self-assembled nanoelectronics (“Carbon Nanotube Transistors through DNA Origami”), carbon nanotubes (CNTs) hold promise for self-assembled nanomechanical systems, too: They are orders of magnitude stiffer than biomolecules, and can serve not only as rigid components, but also as low-friction linear and rotary bearings to support moving parts.
Recent [...]

Read the full article →

Carbon Nanotube Transistors through DNA Origami

November 12, 2009

Caltech researchers have applied DNA-based self-assembly to bind pairs of carbon nanotubes into structures that can act as field-effect transistors. Nature Nanotechnology has a prepublication release of their paper, “Self-assembly of carbon nanotubes into two-dimensional geometries using DNA origami templates”; the work emerged from a collaboration centered on the Winfree lab. Physorg.com reports the story [...]

Read the full article →

Reflections on nanotechnology
(in a curved mirror)

October 23, 2009

Earlier today, Nanowerk.com posted an article I wrote. It begins like this:
Yesterday, an article in Nanowerk presented yet another description — by someone else — of what I think about nanotechnology. Since I am a leading expert on that topic, perhaps I can offer a more direct and reliable statement of my actual views, together [...]

Read the full article →

Molecular Nanomachines: Physical Principles and Implementation Strategies

October 1, 2009

I’ve migrated another paper to E-drexler.com:

Drexler, KE. “Molecular Nanomachines: Physical Principles and Implementation Strategies”, Annual Review of Biophysics and Biomolecular Structure, 23:377-405 (1994).
(With thanks to Robert Bradbury for the original HTML conversion.)

Click to read.

See also:

The Physical Basis of Atomically Precise Manufacturing
A Telescope Aimed at the Future
Productive nanosystems: the physics of molecular fabrication [pdf] (from [...]

Read the full article →

Slides for Talk on Nanotechnology
and Computational Challenges

July 28, 2009

I’ve posted the slides for my WORLDCOMP’09 keynote, “Advanced Nanotechnology: Advanced Computing on the Critical Path”: Click here to download.
My earlier talk for the 2009 Berkeley Nanotechnology Forum was directed to a non-specialized nanotechnology audience and surveyed near-term directions in framework-directed self assembly as a basis for next-generation nanosystems. The WORLDCOMP’09 talk is organized like [...]

Read the full article →

Myths through mythquotation

June 18, 2009

When Slashdot runs the slightly misleading headline, “Real Nanotechnology Getting Closer, Says Drexler” (with a link to the technology roadmap — lots of downloads!), the Tech Talk blog at IEEE Spectrum quite naturally reports this as “Eric Drexler has just been quoted as saying ‘Real nanotechnology is getting closer’”… and thus inadvertently reinforces the myth [...]

Read the full article →

A Third Revolution in DNA Nanotechnology

May 22, 2009

In a new paper, Shawn Douglas and his colleagues at William Shih’s lab have demonstrated the first systematic method for building multilayer 3D nanostructures of DNA. In his commentary, Tom LaBean calls this “a third revolution in DNA nanotechnology”, following Seeman’s launch of the field and Rothemund’s development of the breakthrough origami technique.
In the authors’ [...]

Read the full article →