Molecular Nanotechnology

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							          Molecular
        Nanotechnology
        www.zyvex.com/nano

          Ralph C. Merkle
         Principal Fellow, Zyvex
            www.merkle.com
                                   1
Zyvex
 In Fiscal Year 1999, the federal
 government will spend
 approximately $230 million on
 nanotechnology research.

                Nick Smith, Chairman
House Subcommittee on Basic Research
                       June 22, 1999

                                    2
Zyvex
    National Nanotechnology
            Initiative
• Interagency (AFOSR, ARO, BMDO,
  DARPA, DOC, DOE, NASA, NIH, NIST,
  NSF, ONR, and NRL)
• Congressional hearings
• Objective: double funding through
  existing channels

                                  3
Zyvex
        Academic and Industry
• Caltech’s MSC (1999 Feynman Prize),
  Rice CNST (Smalley), USC Lab for
  Molecular Robotics, etc
• Private nonprofit (Foresight, IMM)
• Private for profit (IBM, Zyvex, Covalent)
• And many more….


                                              4
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 There is a growing sense in the
 scientific and technical
 community that we are about to
 enter a golden new era.
                   Richard Smalley
        1996 Nobel Prize, Chemistry
            http://www.house.gov/
            science/smalley_062299.htm
                                         5
Zyvex
The principles of physics, as far as I can see,
do not speak against the possibility of
maneuvering things atom by atom. It is not an
attempt to violate any laws; it is something, in
principle, that can be done; but in practice, it
has not been done because we are too
big.

            Richard Feynman, 1959

        http://www.zyvex.com/nanotech/feynman.html
                                                     6
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    The book that laid out the technical
 argument for molecular nanotechnology:
             Nanosystems
        by K. Eric Drexler, Wiley 1992




                                           7
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  Three historical trends
    in manufacturing
        • More flexible
        • More precise
        • Less expensive

                            8
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The limit of these trends:
    nanotechnology
• Fabricate most structures consistent
  with physical law
• Get essentially every atom in the right
  place
• Inexpensive (~10-50 cents/kilogram)

                   http://www.zyvex.com/nano
                                               9
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  It matters how atoms
      are arranged

 • Coal          • Diamonds
 • Sand          • Computer chips
 • Dirt, water   • Grass
   and air
                                10
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        Today’s manufacturing
        methods move atoms in
           statistical herds
             •   Casting
             •   Grinding
             •   Welding
             •   Sintering
             •   Lithography
                                11
Zyvex
              Possible
          arrangements of
              .
                atoms

        What we can make today
             (not to scale)
                                 12
Zyvex
          The goal:
        a healthy bite.
            .




                          13
Zyvex
                                                   Produc
                                          Products
                     Core molecular              Products
                     manufacturing   Products
                                            Products
                     capabilities   Products Products
                                             Products
                                  Products
                                     Products Products
Today                                  Products Products
                                             Products
                                  Products
                                               Products
                                     Products
   Overview of the                         Products
   development of                                Products
                      Products
   molecular                                Products
                                                    Produc
   nanotechnology                           Products
                                      Products Products
                                                  14
Zyvex                                         Products
  Terminological caution
“Nanotechnology” has been
 applied to almost any research
 where some dimension is less
 than a micron (1,000
 nanometers) in size.
Example: sub-micron optical lithography
                                          15
Zyvex
            Two more
        fundamental ideas
• Self replication (for low cost)
• Positional assembly (so
  molecular parts go where we
  want them to go)
                                    16
Zyvex
        Von Neumann architecture
        for a self replicating system

            Universal          Universal
            Computer          Constructor


        http://www.zyvex.com/nanotech/vonNeumann.html


                                                  17
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        Drexler’s architecture for an
                 assembler

           Molecular            Molecular
           computer            constructor



                Positional device   Tip chemistry




                                                    18
Zyvex
  Illustration of an assembler




http://www.foresight.org/UTF/Unbound_LBW/chapt_6.html

                                                 19
Zyvex
  The theoretical concept of machine
  duplication is well developed. There are
  several alternative strategies by which
  machine self-replication can be carried out
  in a practical engineering setting.

        Advanced Automation for Space Missions
        Proceedings of the 1980 NASA/ASEE Summer
        Study


   http://www.zyvex.com/nanotech/selfRepNASA.html

                                                20
Zyvex
   A C program that prints out
     an exact copy of itself

  main(){char q=34, n=10,*a="main()
  {char q=34,n=10,*a=%c%s%c;
  printf(a,q,a,q,n);}%c";printf(a,q,a,q,n);}

    For more information, see the Recursion Theorem:
    http://www.zyvex.com/nanotech/selfRep.html
                                                  21
Zyvex
        English translation:

  Print the following statement twice,
  the second time in quotes:
  “Print the following statement twice,
  the second time in quotes:”



                                          22
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 Complexity of self replicating systems
                 (bits)
C program                                   800
Von Neumann's universal constructor500,000
Internet worm (Robert Morris, Jr., 1988)    500,000
Mycoplasma capricolum                       1,600,000
E. Coli                                     9,278,442
Drexler's assembler                         100,000,000
Human                                       6,400,000,000
NASA Lunar
    Manufacturing Facility           over 100,000,000,000
             http://www.zyvex.com/nanotech/selfRep.html

                                                        23
Zyvex
              How cheap?
• Potatoes, lumber, wheat and other
  agricultural products are examples of
  products made using a self replicating
  manufacturing base. Costs of roughly a
  dollar per pound are common.
• Molecular manufacturing will make almost
  any product for a dollar per pound or less,
  independent of complexity. (Design costs,
  licensing costs, etc. not included)
                                                24
Zyvex
             How long?
• The scientifically correct answer is
  I don’t know
• Trends in computer hardware suggest
  early in the next century — perhaps in
  the 2010 to 2020 time frame
• Of course, how long it takes depends on
  what we do

                                       25
Zyvex
     Developmental pathways
•   Scanning probe microscopy
•   Self assembly
•   Ever smaller systems
•   Hybrid approaches



                                26
Zyvex
   Moving molecules with an SPM
              (Gimzewski et al.)




        http://www.zurich.ibm.com/News/Molecule/
                                                   27
Zyvex
Self assembled DNA octahedron
                  (Seeman)




        http://seemanlab4.chem.nyu.edu/nano-oct.html

                                                       28
Zyvex
         DNA on an SPM tip
                     (Lee et al.)




        http://stm2.nrl.navy.mil/1994scie/1994scie.html


                                                      29
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         Buckytubes
        (Tough, well defined)




                                30
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  Buckytube glued to SPM tip
            (Dai et al.)




           http://cnst.rice.edu/TIPS_rev.htm
                                               31
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Building the tools to build the tools

• Directly manufacturing a diamondoid
  assembler using existing techniques
  appears very difficult .
• We’ll have to build intermediate systems
  able to build better systems able to build
  diamondoid assemblers.


                                          32
Zyvex
If we can make
     whatever we want
what
     do we want
           to make?
                        33
Zyvex
 Diamond Physical Properties
    Property                         Diamond’s value Comments

    Chemical reactivity              Extremely low
    Hardness (kg/mm2)                9000                  CBN: 4500 SiC: 4000
    Thermal conductivity (W/cm-K)    20                    Ag: 4.3 Cu: 4.0
    Tensile strength (pascals)       3.5 x 109 (natural)   1011 (theoretical)
    Compressive strength (pascals)   1011 (natural)        5 x 1011 (theoretical)
    Band gap (ev)                    5.5                   Si: 1.1 GaAs: 1.4
    Resistivity (W-cm)               1016 (natural)
    Density (gm/cm3)                 3.51
    Thermal Expansion Coeff (K-1)    0.8 x 10-6            SiO2: 0.5 x 10-6
    Refractive index                 2.41 @ 590 nm         Glass: 1.4 - 1.8
    Coeff. of Friction               0.05 (dry)            Teflon: 0.05

                         Source: Crystallume




                                                                                    34
Zyvex
        Strength of diamond
• Diamond has a strength-to-weight ratio
  over 50 times that of steel or aluminium
  alloy
• Structural (load bearing) mass can be
  reduced by about this factor
• When combined with reduced cost, this
  will have a major impact on aerospace
  applications
                                         35
Zyvex
        A hydrocarbon bearing




        http://www.zyvex.com/nanotech/bearingProof.html

                                                     36
Zyvex
        Neon pump




                    37
Zyvex
           A planetary gear




    http://www.zyvex.com/nanotech/gearAndCasing.html
                                                 38
Zyvex
   A proposal for a molecular
        positional device




                                39
Zyvex
        Classical uncertainty
                     kbT
                  
                   2
                      k

        σ:    mean positional error
        k:    restoring force
        kb:   Boltzmann’s constant
        T:    temperature
                                      40
Zyvex
        A numerical example of
         classical uncertainty
                      kbT
                   
                    2
                       k

         σ:    0.02 nm (0.2 Å)
         k:    10 N/m
         kb:   1.38 x 10-23 J/K
         T:    300 K
                                  41
Zyvex
         Molecular tools
• Today, we make things at the molecular scale
  by stirring together molecular parts and
  cleverly arranging things so they
  spontaneously go somewhere useful.
• In the future, we’ll have molecular “hands”
  that will let us put molecular parts exactly
  where we want them, vastly increasing the
  range of molecular structures that we can
  build.
                                            42
Zyvex
 Synthesis of diamond today:
       diamond CVD
• Carbon: methane (ethane, acetylene...)
• Hydrogen: H2
• Add energy, producing CH3, H, etc.
• Growth of a diamond film.


 The right chemistry, but little control over the site of
 reactions or exactly what is synthesized.

                                                            43
Zyvex
A hydrogen abstraction tool




 http://www.zyvex.com/nanotech/Habs/Habs.html

                                                44
Zyvex
  Some other molecular tools




                               45
Zyvex
    A synthetic strategy for the
synthesis of diamondoid structures
• Positional assembly
      (6 degrees of freedom)
• Highly reactive compounds (radicals,
  carbenes, etc)
• Inert environment (vacuum, noble gas)
  to eliminate side reactions

                                          46
Zyvex
        The impact of
       nanotechnology
   depends on what’s being
             made
    • Computers, memory, displays
        •   Space Exploration
        •   Medicine
        •   Military
        •   Environment, Energy, etc.
                                        47
Zyvex
    Powerful computers
• In the future we’ll pack more computing
  power into a sugar cube than the sum total of
  all the computer power that exists in the world
  today
• We’ll be able to store more than 1021 bits in
  the same volume
• Or more than a billion Pentiums operating in
  parallel
• Powerful enough to run Windows 2015
                                               48
Zyvex
        Memory probe




                       49
Zyvex
              Displays
• Molecular machines smaller than a
  wavelength of light will let us build
  holographic displays that reconstruct
  the entire wave front of a light wave
• It will be like looking through a window
  into another world
• Covering walls, ceilings and floor would
  immerse us in another reality
                                         50
Zyvex
                      Space
• Launch vehicle structural mass will be
  reduced by about a factor of 50
• Cost per pound for that structural mass
  will be under a dollar
• Which will reduce the cost to low earth
  orbit by a factor 1,000 or more

        http://science.nas.nasa.gov/Groups/
        Nanotechnology/publications/1997/applications/
                                                         51
Zyvex
   It costs less to launch less
• Light weight computers and sensors will
  reduce total payload mass for the same
  functionality
• Recycling of waste will reduce payload
  mass, particularly for long flights and
  permanent facilities (space stations,
  colonies)

                                        52
Zyvex
 Swallowing the surgeon
...it would be interesting in surgery if you could swallow
    the surgeon. You put the mechanical surgeon inside
    the blood vessel and it goes into the heart and “looks”
    around.     ...  Other small machines might be
    permanently incorporated in the body to assist some
    inadequately-functioning organ.

           Richard P. Feynman, 1959
           Nobel Prize for Physics, 1965


                                                         53
Zyvex
        Nanomedicine Volume I
• By Robert Freitas
• Surveys medical applications of
  nanotechnology
• Extensive technical analysis
• Volume I (of three) published in 1999
• http://www.foresight.org/Nanomedicine


                                          54
Zyvex
              Mitochondrion
        Molecular bearing
         20 nm scale bar
              Ribosome

        Molecular computer
        (4-bit) + peripherals

                                55
Zyvex
                    “Typical” cell




        Mitochondrion


                                Molecular computer
                                + peripherals




                                                     56
Zyvex
  Disease and illness are
  caused largely by damage at
  the molecular and cellular
  level

 Today’s surgical tools are
 huge and imprecise in
 comparison
                              57
Zyvex
 In the future, we will have fleets
 of surgical tools that are
 molecular both in size and
 precision.

  We will also have computers
  that are much smaller than a
  single cell with which to guide
  these tools.
Zyvex                               58
   Medical applications
• Killing cancer cells,
  bacteria
• Removing blockages
• Providing oxygen
      (artificial red blood cell)
• Adjusting other
Zyvex                               59
A revolution in medicine
• Today, loss of cell function results in
  cellular deterioration:
           function must be preserved
• With medical nanodevices, passive
  structures can be repaired. Cell
  function can be restored provided cell
  structure can be inferred:
           structure must be preserved
                                            60
Zyvex
                        Cryonics
              37º C                                37º C


              Freeze                            Restore
Temperature




                                                to health
                         -196º C (77 Kelvins)

                      Time
                       (many decades)
                                                      61
Zyvex
               Clinical trials
           to evaluate cryonics
•   Select N subjects
•   Freeze them
•   Wait 100 years
•   See if the medical technology of 2100 can
    indeed revive them

But what do we tell those who don’t expect to
  live long enough to see the results?
                                                62
Zyvex
  Would you rather join:
        The control group?
            (no action required)
             or
  The experimental group?
        (see www.alcor.org for info)

                                       63
Zyvex
  Military applications of molecular
  manufacturing have even greater
  potential than nuclear weapons to
  radically change the balance of
  power.

      Admiral David E. Jeremiah, USN (Ret)
      Former Vice Chairman, Joint Chiefs of
  Staff
   http://www.zyvex.com/nanotech/nano4/jeremiahPaper.htm
      November 9, 1995
                                                64
Zyvex
 Human impact on the
environment depends on

        • Population
        • Living standards
        • Technology
                             65
Zyvex
    Restoring the environment
      with nanotechnology
•   Low cost greenhouse agriculture
•   Low cost solar power
•   Pollution free manufacturing
•   The ultimate in recycling

                                 66
Zyvex
        Solar power and
        nanotechnology
• The sunshine reaching the earth has
  almost 40,000 times more power than
  total world usage.
• Nanotechnology will produce efficient,
  rugged solar cells and batteries at low
  cost.
• Power costs will drop dramatically
                                            67
Zyvex
   Environmentally friendly
        manufacturing
• Today’s manufacturing plants pollute
  because they use imprecise methods.
• Nanotechnology is precise — it will
  produce only what it has been designed
  to produce.
• An abundant source of carbon is the
  excess CO2 in the air
                                       68
Zyvex
  Nanotechnology offers ...
  possibilities for health,
  wealth, and capabilities
  beyond most past
  imaginings.

            K. Eric Drexler
                              69
Zyvex
        The best way
           to predict the future
               is to invent it.

                  Alan Kay

                                   70
Zyvex

						
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