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2008


堠 3

1 5

1.1 ࠠ 5

1.2 ࠠ 6

1.2.1 6

1.2.1.1 ࠠ 7

1.2.1.2

9

1.2.1.3 - . 9

1.3 ࠠ 10

1.4 13

2 15

2.1 15

2.2 15

2.2.1 ࠠ 15

2.2.2 黠 16

2.3 ⠠ 16

2.3.1

ࠠ 17

2.3.2 ࠠ 20

2.3.3

ࠠ 22

23

24


. , , , , , . , , , . , , . 1990- - , . , .

, , - [1]. . , , , . .


1

1.1

. . , . , , . , , .

25 . , , . , . .

, - . - , - . "" . ( ), , , .

, , , , , .

1.2

1.2.1

, , , . . 600. . : (XRD), (TEM), . , 10 20, λ = 1.5418 A

, , : , , ; ( , ). [3]. , 2-8 . , , 15-30 . . . , 120 190, (). 0.1, . .

, NaOH HCl. ( 1.5) ( 12.5) . , 2 . , 5 1.5.

. , , [4]. , , , .

395, . 5-8. : , , .

1.2.1.1

, , . [5] , , , . [5] , Nd:YAG . , . [5] , , . , .

1.2.1.2

. , [5], , , , , . , [6], , . - , .

, - , .

1.2.1.3 - . [5]

- ( ) , .

, , .

- . , . , , . -, , NaBH4 . -, -

, , . -, : , . -, , , , .

- (, , .); ; .

1.3

, , , . . , . , . . / . (-) . .

[7], - Ag+ 392 650 , ().

, (λ = 410 ). γ- . - , . , , , , . , .

, , , . . , (, ).

. [8] (Mie.Drude) :

λ2 = (2πc)2m0 + 2n)/4πN e2 (1)

c - ; m - ; e - ; ε0 ; n - ; Ne - .

, . , . (1889) . (1908, ). r ln , . ( ) r e e0 : s ~ ln4r6(e - e0) (, 1871). r r ~ ln ( e > 1) (2r = mln, m = 1,2, 3) 6pr2 , ; .

(r >> ln) , . ( ) r/ln. , , . , , .

, , . , -, , , . -, (), , , . -, .

1.4

. .

, . , .

1. -


. .

- .


2

2.1

AgNO3 5*10-3M; 1*10-3M; 5*10-4M; 1*10-4M;

C6H12O6 1*10-2M; 1*10-3M;

C6H8O6 1*10-2M; 2*10-2M;

NaBH4 1*10-2M;

NH3*H2O 25%;

. -000906.05

, ... .

:

1.         2 -200. 0,15.

2.         Analytic jena;

3.         150;

4.         -2;

5.         LG MS 1724U.

2.2

2.2.1

(, , , . ). 1:1. (t=96-98) 120 10 ( max).

- , / . Ag- 300-700 Analiticjena ( (Q) 1).

2.2.2

: = 0,100; () = 0,877; = 0,023. 100 , = 0,02. m( ) = 3,5199: m( ) = 0,3520; m() = 3,0870; m() = 0,0896. , , .

2.3

, , . , . , , : , ( ); -() , .

, 2 5.

2 -

(■ , ▲ ).

2.3.1 AgNO3

, .2.2.1. AgNO3 0,0001 0,005. 0,01.

6.

3 -

4 - , AgNO3 .

5 - , AgNO3 (■ , ♦ - ,

▲ ).

6 - , AgNO3 (■ (AgNO3) = 0,0001,

♦ - (AgNO3) = 0,0005, -- (AgNO3) = 0,001;▲ (AgNO3) = 0,005).

- - . 420, .

2.3.2

, .2.2.1. 5 11. 0,001 0,0005.

7.

7 - , AgNO3 (▲ = 11,21; + - 10,24;

■ = 8,34; ♦ - = 7,15; -- = 5,16;).

- ( = 5,16) - ( = 11,21). , = 10,24 11,21 : .

, , = 8,34, . λ = 420 . , [4]. .

8 - , AgNO3 (■ = 0,001, ♦ - = 0,005, ▲ = 0,01, + = 0,05).

2.3.3

, .2.2.1. 0,001 0,05. 0,005.

8.

.

. , -, Ag+.


1. .

2. . : ; (AgNO3) = 0,0001; (C6H12O6 ) = 0,05; = 8,34.


1... : , / ..// . .. . 2001. - . XLV, 3.- .5-9.

2. Meng Chen Preparation and Study of Polyacryamide-Stabilized Silver Nanoparticles through a One-Pot Process/ Meng Chen, Li-Ying Wang, Jian-Tao Han, Jun-Yan Zhang, Zhi-Yuan Li, Dong-Jin Qian//Department of Chemistry and Laboratory of AdVanced Materials, Fudan UniVersity. 2006. .34-38.

3. .. /.., .., . // . .. . 2007. - . X, 8. .7 -12.

4. ... / .., ... , .., . // . 2. 1999. .40, 2. . 129-133.

5. Lilia Coronato Courrol A simple method to synthesize silver nanoparticles by photo-reduction/ Lilia Coronato Courrol, Fl´avia Rodrigues de Oliveira Silva, La´ercio Gomes// EPUSP. 2007. Vol.18, 6. .12 16.

6. Wanzhong Zhang Synthesis of silver nanoparticlesEffects of concerned parameters in water/oil microemulsion/Wanzhong Zhang, Xueliang Qiao, Jianguo Chen// State Key Laboratory of Material Processing and Die & Mould Technology. 2007. .17 21.

7. , .. - /

.. , .. // . 2006. - 5 12.

8. .. / .. // , . 2007. .2 7.

9. .. /..// . - 2007. 3. .32 36.

10. . /.// . - 2008. - 3. .32 38.

11. , .. /..// . 2007. - 5. .4 11.

12. Paul Mulvaney Surface Chemistry of Coiioidai Silver in Aqueous Solution: Observations on Chemisorption and Reactivity/ Paul Mulvaney, Thomas Linnert, Arnim Henglein// The Journal of Physical Chemistry, Berlin. - 1991. - Vol. 95, 20. .36 36.

13. , .. / .., .., ... .: , 2007. 309.

4 ࠠ

 

 

 

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