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Self-assembly微納米加工及應(yīng)用OutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶

輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語OutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶 輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語Overview

Self-assembling

processes

are

common

throughout

nature

andtechnology.

They

involve

components

from

the

molecular

(crystals)

to

theplanetary

(weather

system)

scale

and

many

different

kinds

ofinteractions.

The

concept

of

self-assembly

is

used

increasingly

in

manydisciplines,

with

a

different

flavor

and

emphasis

in

each.The

definition

of

SA

Self-assembly

is

the

autonomous

organization

of

components

intopatterns

or

structures

without

human

intervention.-G.M.

whitesides,

B.

Grzybowski

Self-assembly

is

a

spontaneous

and

reversible

process

that

bringstogether

in

a

defined

geometry

randomly

moving

distinct

bodiesthrough

selective

bonding

forces.-Serge

Palacin,

Renaud

demadrillHere,

we

limit

the

term

to

processes

thatInvolve

pre-existing

componentsCan

be

controlled

by

proper

design

of

the

componentsOutlineBasic

concepts:Definition

of

Self-assembly 生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶

輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語Tobacco

mosaic

virus感染了煙草花葉病毒的體系,植物葉子上表現(xiàn)出病毒引起的馬賽克;煙草葉上壞死的局域部分.Structure

of

TMV煙草花葉病毒的結(jié)構(gòu)特征:長約300nm,直徑約18nm,包含2130個表層蛋白分子和由6400個氨基酸分子組成的RNA。Structure

of

TMVSA

of

TMVOutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶 輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語DNAWatson

and

Crick

with

DNAmodel1953年發(fā)現(xiàn)1962年諾貝爾獎在DNA分子結(jié)構(gòu)構(gòu)建方面,威爾金

斯和富蘭克林提供了DNA衍射圖譜;查哥夫發(fā)現(xiàn)了A的量總是等于T的量、C的量總是等于G的量。沃森和克里克在此基礎(chǔ)上提出了DNA分子的雙螺旋結(jié)構(gòu)模型。Structure

of

DNAReplication

of

DNAReplication

of

DNA:

SALessons

from

natural

SAManipulationSelf-assemblyOutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝

分子自組裝單層膜:烷基硫醇

LB膜納米晶體的自組裝:金屬納米晶 輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語SAMsSelf-assembled

monolayers

(SAMs):

SAMs

are

ordered

molecularassemblies

that

are

formed

spontaneously

by

the

adsorption

of

asurfactant

with

a

specific

affinity

of

its

headgroup

to

a

substrate.Different

systems

of

SAMsDefine

the

individual

SAM-systems

byusing

the

headgroup-substrate

pair

R-SH

(R-SAc

or

disulfide):

Au,Ag,

Cu,

Pd,

Ni,

Pt

Silane-based

SAMs:

on

surfacewith

–OH

groupsR-NC:

Au,

Pt,

PdR-CN:

Au,

CuR-NH2:

Au,

Ag,

PtothersPreparation

of

thiols

SAMSSolution

depositionSubstrateGas

phase

depositionThiol

moleculesFormation

of

a

SAMSTM

image

of

a

SAM7

x7nm2

STM

image

of

C6

SAM( 3

x 3)R30°

overlayerLangmuir,

17(2001):,

4919Characteristics

of

this

SAMS

in

three-fold

hollow

siteProton

loss

on

adsorption

(SH S-)(硫醇30o

tilt

to

the

normal硫醇鹽)distance

between

attachment

sites

=

5

?diameter

of

n-alkyl

chains

=

4.6

?Au-S

band

strength

=

~40kcal/moleVan

der

Waal

forces

between

–CH2-

groups

=

~1.5kcal/moleN-alkyl

chains

adopt

a

trans

zig-zag

structureAt

room

temperature,

only

a

few

gauche

defects

in

outermost

–CH2-Basic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇

LB膜

納米晶體的自組裝:金屬納米晶 輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語OutlineLB

techniqueA

schematic

of

a

Langmuir

Blodgett

trough:

1.

Amphiphile

monolayer2.

Liquid

subphase

3.

LB

Trough

4.

Solid

substrate

5.

Dipping

mechanism6.

Wilhelmy

Plate

7.

Electrobalance

8.

Barrier

9.

Barrier

Mechanism10.

Vibration

reduction

system

11.

Clean

room

enclosureLB儀器LB拉膜方法Langmuir-Schaefer方法等溫Π-Α曲線0 100

200

300

400

500

600

700

800Area

per

molecule

A

(nm2)900 1000

1100

12000510液態(tài)15固態(tài)氣態(tài)302520Surface

pressure

p

(mN/m)OutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶 輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語Gold

colloidal

particlesHAuCl4

+

Tannic

acid

+

Trisodium

citrateGold

nanocrystals8.3±8%nm單晶的單分散性好Jpn.

J.

Appl.

Phys.

40

(2001):

346–349Encapsulate

gold

nanocrystalsCH3SH3CSCH3SH3CSCH3SH3CSSSCH3SSSH3CSCH3SCH3SCH3SH3CSCH3SCH3CH3CH3SCH3SH3CS

SCH3SH3CH3CH3CSH3CSH3CAuMoleculecappedgold

nanoparticleSelf-assembly

of

gold

nanocrystalsEvaporation

of

the

solventformation

of

flows

in

the

solvent

whichtransport

the

particles

toward

the

surfaceThe

thickness

of

the

solutionbecomes

comparable

to

theparticle

sizethe

interactive

force

between

particlesinduced

by

the

surface

tension

of

the

solventcauses

the

particles

to

coalesce

into

close-packed

arraysJ.

Vac.

Sci.

Technol.

B

19

(2001):

115Set-up

for

the

self-assemblyNano

Letters,

4(2004):41Self-assembly

and

transferPreparation

of

PDMS

stampsStampingPatterned

nanoparticle

arraysPatterned

nanoparticle

arraySiO2/SiTuning

the

inter-particle

spacingC8C12C16100

nmx

100

nm100

nmx

100

nm100

nmx

100

nmSHSHSHOutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶

輔助自組裝(assistedself-assembly)

模板輔助的自組裝(TASA)外場輔助的自組裝:靜電場,交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語Principle

of

TASATASA過程中三種重要的力:FC:毛細(xì)作用力Fg:重力Fe:靜電相互作用力J.

Am.

Chem.

Soc.,

123

(2001):8718Some

resultsPS球:2.5微米;孔:5微米

(直徑)PS球:2.5微米;孔:6微米

(直徑)Adv.

Funct.

Mater.,

13(2003):

907Attractive

vs.

repulsive

interactionThe

SEM

images

of

two

samples

that

were

obtained

through

the

TASA

process

from

PS

beadsterminated

in

the

-NH2

functional

group.

The

pH

value

of

the

colloidal

dispersion

was

(A)

6.5

and

(B)

8.5,

respectively.

The

strong

attraction

between

PS

colloids

and

template

surface

forsample

A

made

it

hard

to

move

the

particles

across

the

surface

using

capillary

force

alone.

As

aresult,

it

was

impossible

to

control

the

TASA

process

to

generate

aggregates

with

well-definedsizes

and

structures.

When

this

attractive

interaction

was

reduced

by

increasing

the

pH

value

ofthe

dispersion

medium,

one

could

obtain

well-defined

assemblies

through

the

TASA

process.The

irregular

shape

of

these

colloidal

particles

was

intrinsic

to

this

commercial

sample,not

caused

by

the

TASA

process.Control

over

the

single-layered

structuresSingle

layeredControl

over

the

double-layered

structuresDouble

layered(A)

The

SEM

image

of

an

arrays

of

tetrahedrons

that

were

assembled

from

1.0um

PS

beads

in

cylindricalholes

2um

in

diameter

and

2um

in

depth.

(b)

the

SEM

image

of

an

arrays

of

square

pyramidal

clustersassembled

from

1.0um

silica

colloids

in

pyramidal

cavities

(2.2um

wide

at

the

base)

(C)

zigzag

chains

of4.3μm

PS

beads

in

trenches

that

were

5

and

5.5

μm

in

width

and

depth,

respectively.

The

inset

in

part

Cshows

the

SEM

image

of

one

of

these

zigzag

chains

after

they

had

been

released

from

the

template

andredeposited

onto

a

silicon

substrate.Extension

to

smaller

scalesOutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶 輔助自組裝(assistedself-assembly)模板輔助的自組裝

外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語Electrostatic

field

assisted

SANature

409(2001):

66InP

nanowireAC

field

assisted

SA:

DieletrophoresisTwo

different

particles

in

a

non-uniform

electric

field.

The

particle

on

the

leftis

more

polarisable

than

the

surrounding

medium

and

is

attracted

towardsthe

strong

field

at

the

pin

electrode,

whilst

the

particle

of

low

polarisability

onthe

right

is

directed

away

from

the

strong

field

region.DielectrophoresisAC

trapping

of

Au

NPsLaetitia

Bernard

Ph.D

thesisMagnetic

field

assisted

SAOptical

micrographs

of

Ni

nanowirechain

formation

after

precipitationfrom

a

water

suspension

in

externalmagnetic

fields

of

(a)

H<0.2

G,

(b)H=2

G,

and

(c)H=8

G.J.

Appl.

Phys.

91

(2002)

8549Magnetic

field

assisted

SA(a)

Plan-view

scanning

electron

micrograph

(SEM)

image

of

a

Pt–Ni–Pt

nanowire

trapped

by

elliptical

Nimagnetic

electrodes.

The

vertical

bars

are

Au

leads

for

electrical

measurements;

(b)

Close

up

SEM

imageof

the

trapped

nanowire,

with

the

substrate

tilted

70°.J.

Appl.

Phys.

91

(2002)

8549More:

Nano

Lett.

1(2001)

155OutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶 輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語Singleelectron

transistor

made

by

SA材料:10nm金納米顆粒雙功能分子:APTES,1,6-hexanedithiolJ.

Appl.

Phys.

82

(1997):

696Single

electron

transistor

made

by

using

SA96單電子隧穿導(dǎo)致的庫侖阻塞J.

Appl.

Phys.

82

(1997):

6場效應(yīng)效果OutlineBasic

concepts生物體系中的自組裝Tobacco

mosaic

virus

(TMV)DNA人工自組裝分子自組裝單層膜:烷基硫醇LB膜納米晶體的自組裝:金屬納米晶 輔助自組裝(assistedself-assembly)模板輔助的自組裝外場輔助的自組裝:靜電場,

交變電場,磁場自組裝在納米電子學(xué)中的應(yīng)用單電子晶體管單分子器件結(jié)束語Molecular

electronics分子尺度的新的物理現(xiàn)象,量子效應(yīng)開始起主要作用實現(xiàn)用單個分子履行器件的功能的夢想分子尺寸很?。?-10nm;分子可以被設(shè)計和剪裁;分子可以是活性的/功能性的;化學(xué)合成的分子是全同的;很多分子有自組織功能。EemptyLUMO

=

lowestunoccupiedmolecular

orbitalHOMO

=

highestoccupiedmolecular

orbitalfullPhysics

today,

May

2003,

43Annu.

Rev.

Phys.

Chem.,2006,

57:

593Annu.

Rev.

Phys.

Chem.,2007,

58:

535Molecules

as

electrical

components?HSSHWires:conductingSpacers:insulatorsalkanesSwitchessmart

molecules:functionalityMechanical

SwitchGrunder

et

al.

JOCS

(2007)SSOOOptical

Switchvan

der

Molen

et

al.Nanotechn.

(2006)Molecular

Diode;Elbing

et

al.

PNAS

(2005)DiodesNNSOSOContactVATechniques

for

measuring

moleculesProc.

IEEE,

91,1785,

2003Mechanically

controllable

break

junction-

controllable

gap

size-

clean

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