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shuangfeng796

ÖÁ×ðľ³æ (ÖøÃûдÊÖ)

¡ï ¡ï ¡ï ¡ï ¡ï
waiy2001(½ð±Ò+4,VIP+0):ллÁË 2-15 19:21
lingzi326(½ð±Ò+5,VIP+0):·Ç³£¸ÐлÄúµÄ·ÖÏí£¬¶à¶à񾃮°¡~~~ 2-15 19:21
waiy2001(½ð±Ò-4,VIP+0):ÔÎ,ÖØ¸´ÁË,ºÇºÇ 2-15 19:21
¡¾Ñ§¿ÆÁìÓò¡¿¾§Ìå
¡¾ÎÄÏ×ÌâÄ¿¡¿Metal Complexes of Organophosphate Esters and Open-Framework MetalPhosphates: Synthesis, Structure, Transformations, and ApplicationsFunctional Theory
¡¾ÆÚ¿¯À´Ô´¡¿Chem. Rev. 2008, 108, 3549¨C3655
¡¾×÷Õß»ò¿ÎÌâ×é¡¿C. N. R. Rao
¡¾·¢±íʱ¼ä¡¿November 17, 2008
¡¾ÄÚÈݼò½é¡¿Inorganic phosphate chemistry was dominated by the study
of minerals for a long time. With the recent discovery of
phosphate analogues of aluminosilicate zeolites with open
framework structures, research on extended metal phosphate
structures gained momentum. Similarly, recent realization
that larger solids can be built rationally from preformed
molecular precursors has led to an outburst of activity in
the synthesis of smaller metal phosphate molecules. Although
there have been a few review articles in the literature in
recent years on developments in metal phosphate chemistry
covering narrow themes, for example, phosphate ester
hydrolysis (by a given metal system), organophosphonates,
19 and focus on one type of framework solids (see
¡¾Ìå»á&ÊÕ»ñ¡¿¶ÔÓÚ×öÁ×ËáÑÎÀà·Ö×ÓɸµÄ³æ³æ¶øÑÔÕâÆ¬ÎÄÏ׺ÜÓÐÖ¸µ¼ÒâÒå
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21Â¥2009-02-15 17:36:48
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han456

Ìú³æ (³õÈëÎÄ̳)

¾§Ìå½á¹¹Á¢ÌåÄ£Ð͹¹½¨Èí¼þ Diamond ÖÐÎÄ˵Ã÷Êé

¡ï ¡ï ¡ï
lingzi326(½ð±Ò-1,VIP+0):Çë²»ÒªÔÚ±¾ÌûÖлظ´²»Ïà¹ØÄÚÈÝ£¬Çë×ÔÐб༭Ð޸ģ¬È»ºóPM°æÖ÷·µ»¹½ð±Ò 2-17 12:03
lingzi326(½ð±Ò+4,VIP+0):ÐÞ¸ÄÁËÒ»ÏÂÌû×ÓÄÚÈÝ£¬Ð»Ð»ÌṩÁ´½Ó 2-17 12:08
http://muchong.com/bbs/viewthread.php?tid=1167730

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[ Last edited by lingzi326 on 2009-2-17 at 12:05 ]
22Â¥2009-02-15 20:21:34
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jackitaly

½ð³æ (ÕýʽдÊÖ)

¡ï ¡ï ¡ï ¡ï ¡ï
waiy2001(½ð±Ò+5,VIP+0):лл 2-21 09:25
һƪnature photonics ÉϵÄreview

¡¾Ñ§¿ÆÁìÓò¡¿laser material

¡¾ÎÄÏ×ÌâÄ¿¡¿¡¶Ceramic laser materials¡·

¡¾ÆÚ¿¯À´Ô´¡¿¡¶nature photonics¡·

¡¾×÷Õß»ò¿ÎÌâ×é¡¿
Akio Ikesue* and Yan Lin Aung
World Lab., Mutsuno, Atsuta-ku, Nagoya 456-0023 Japan

¡¾·¢±íʱ¼ä¡¿DECEMBER 2008

¡¾ÄÚÈݼò½é¡¿
The word ¡®ceramics¡¯ is derived from the Greek keramos, meaning pottery and porcelain. The opaque and translucent cement and clay often used in tableware are not appropriate for optical applications because of the high content of optical scattering sources, that is, defects. Recently, scientists have shown that by eliminating the defects, a new, refined ceramic material ¡ª polycrystalline ceramic ¡ª can be produced. This advanced ceramic material offers practical laser generation and is anticipated to be
a highly attractive alternative to conventional glass and single-crystal laser technologies in the future. Here we review the history of the development of ceramic lasers, the principle of laser generation based on this material, some typical results achieved with ceramic lasers so far, and discuss the
potential future outlook for the field.

¡¾Ìå»á&ÊÕ»ñ¡¿

×Ô´Ó±¾ÎĵÚÒ»×÷Õß1995ÄêÔÚJ. Am. Ceram. Soc. £¨78, 1033¨C1040 (1995)£© ÉÏ·¢±íµÚһƪ¿ÉÓÃÓÚ¼¤¹â²úÉúµÄ͸Ã÷ÌÕ´ÉÒÔÀ´£¬Í¸Ã÷ÌմɵÄÖÆ±¸ÔÚÈ«ÊÀ½ç¼¤¹â²ÄÁÏÁìÓòÏÆÆðÁËÒ»¹ÉÈȳ±¡£¹ú¼ÒÒ²³ÉÁ¢ÁËÖØ´óרÏËüµÄÖØ´óÓ¦ÓÃǰ¾°²»ÑÔ¶øÓ÷¡£ÕâÆª¡¶nature photonics¡·ÉϵÄreviewÊÇһƪ²»¹ý¶àµÃµÄ×ÊÁÏ¡£

[ Last edited by jackitaly on 2009-2-20 at 16:24 ]
23Â¥2009-02-20 23:22:50
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wangj799

ľ³æ (ÕýʽдÊÖ)

¡ï ¡ï ¡ï ¡ï ¡ï
waiy2001(½ð±Ò+3,VIP+0):ºÇºÇ£¬Ð»Ð» 2-21 09:26
lingzi326(½ð±Ò+2):²»´í£¬»¶Ó­ÔÙÌṩһЩÎÄÏ×
¡¾Ñ§¿ÆÁìÓò¡¿¾§Ìå
¡¾ÎÄÏ×ÌâÄ¿¡¿Catenation of Loop-Containing 2D Layers with a 3D pcu Skeleton into a New Type of Entangled Framework Having Polyrotaxane and
Polycatenane Character
¡¾ÆÚ¿¯À´Ô´¡¿Inorganic. Chem. 2008, 47, 5555¨C5557
¡¾×÷Õß»ò¿ÎÌâ×é¡¿Xin-Long Wang
¡¾·¢±íʱ¼ä¡¿March 11, 2008
¡¾ÄÚÈݼò½é¡¿Catenation of 2D layers of rings with a 3D frame of pcu topology gives a new type of entangled framework incorporating functional,
nanosized polyoxoanions, which exhibits both polycatenane and
polyrotaxane character.
¡¾Ìå»á&ÊÕ»ñ¡¿¶ÔÓÚ×ö¾§ÌåµÄǶÌ׺ÜÓаïÖú¡£
24Â¥2009-02-21 00:26:09
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ahlm001

ľ³æ (ÖøÃûдÊÖ)

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25Â¥2009-02-21 01:29:20
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mannyezhang

ľ³æ (ÕýʽдÊÖ)

¶¥Ò»ÏÂ

¡ï ¡ï ¡ï ¡ï ¡ï
lingzi326(½ð±Ò+5):²»´í£¬Ð»Ð»·ÖÏí£¬¶à¶àÒæÉÆÅ¶~~~
¡¾Ñ§¿ÆÁìÓò¡¿ÉúÎï²ÄÁÏ
¡¾ÎÄÏ×ÌâÄ¿¡¿Tubular Structure Agglomerates of Calcium Carbonate Crystals Formed on a Cation-Exchange Membrane
¡¾ÆÚ¿¯À´Ô´¡¿Crystal Growth & Design, 2006, 6 (7), 1611-1614
¡¾×÷Õß»ò¿ÎÌâ×é¡¿Masakazu Takiguchi, Koichi Igarashi, Masayuki Azuma, and Hiroshi Ooshima
Graduate School of Engineering, Osaka City UniVersity, 3-3-138 Sugimoto,
Sumiyoshi-ku, Osaka 558-8585, Japan
¡¾·¢±íʱ¼ä¡¿ReceiVed January 24, 2006; ReVised Manuscript ReceiVed April 27, 2006
¡¾ÄÚÈݼò½é¡¿Crystallization of calcium carbonate was carried out by using 1 M calcium chloride and 1 M sodium carbonate and a specially designed crystallizer equipped with a cation-exchange membrane. The crystallizer is a jacketed cylindrical glass tube that was divided into two compartments by a cation-exchange membrane and placed horizontally. Calcium carbonate crystals grew on the surface of the cation-exchange membrane in the sodium carbonate solution side and formed self-assembled tubular agglomerates vertically against the membrane surface. The growing site of the tube was concluded to be the interface between the membrane and the tube rather than the top of tube.
¡¾Ìå»á&ÊÕ»ñ¡¿¶ÔÓÚÓ÷ÂÉú·½·¨ºÏ³ÉÉúÎï²ÄÁϺÜÓÐÆô·¢ÐÔ¡£
26Â¥2009-02-21 10:39:17
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Mag8018

гæ (СÓÐÃûÆø)

¹ØÓÚÂÝÐý̼ÏËά

¡ï ¡ï ¡ï ¡ï ¡ï
warlen(½ð±Ò+5,VIP+0):лл·ÖÏí£¡ 2-27 16:27
¡¾Ñ§¿ÆÁìÓò¡¿Carbon
¡¾ÎÄÏ×ÌâÄ¿¡¿P reparation of carbon micro-coils with the application of outer
and inner electromagnetic fields and bias voltage
¡¾ÆÚ¿¯À´Ô´¡¿Carbon
¡¾×÷Õß»ò¿ÎÌâ×é¡¿C. Kuzuyaa, M. Kohdaa, Y. Hishikawab, S. Motojimaa ,*
¡¾·¢±íʱ¼ä¡¿September, 2002
¡¾ÄÚÈݼò½é¡¿The carbon micro-coils were prepared by the catalytic pyrolysis of acetylene with the superimposed application of an electromagnetic field  as well as with application of a bias voltage to the substrate. The coil yield increased by 1.1¨C1.2 times with the superimposed application of the AC or DC electromagnetic field. It was found that the superimposed application of the outer and inner electric magnetic fields resulted in the strong influence on the morphology of the grown carbon coils.
¡¾Ìå»á&ÊÕ»ñ¡¿½éÉÜÂÝÐý̼ÏËάµÄÖÆ±¸¡£¶ÔÓÚÈçºÎ¿ØÖÆÏËάÐÎ̬ºÍ²úÁ¿ÒòËØÓÐÏ꾡µÄ½éÉÜ¡£ÕâЩÂÝÐý̼ÏËά²ÄÁϾßÓжÀÌØµÄµç´ÅÐÔÖʺÍÁ¦Ñ§ÐÔÄÜ£¬²¢ÔÚ±ðµÄÓ¦ÓÃÁìÓò¾ßÓй㷺µÄÓ¦Óá£

Link:
http://www.sciencedirect.com/sci ... 5a2dbe5c8aa55b2c233
27Â¥2009-02-26 21:35:43
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lingling3687

½ð³æ (ÕýʽдÊÖ)

waiy2001(½ð±Ò+0,VIP+0):¿ÉÒÔϵÄѽ£¬ÄÄÆªÏ²»ÁË£¿ 3-4 21:10
ΪʲôÀÏÊÇϲ»ÏÂÀ´°¡£¿Æ­ÈËÂð£¿
28Â¥2009-03-04 20:16:47
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû

Ô°¶¡

½ð³æ (СÓÐÃûÆø)

¡ï ¡ï
waiy2001(½ð±Ò+2,VIP+0): 3-14 20:24
¡¾Ñ§¿ÆÁìÓò¡¿¾§ÌåÉú³¤
¡¾ÎÄÏ×ÌâÄ¿¡¿Electrochemical Growth of Ce1-xZrxO2 Solid Solution Flower-Like Nanostructures and Their Optical and Magnetic Properties
¡¾ÆÚ¿¯À´Ô´¡¿J. Phys. Chem. C
¡¾×÷Õß»ò¿ÎÌâ×é¡¿Gao-Ren Li,* Dun-Lin Qu, and Ye-Xiang Tong*
¡¾·¢±íʱ¼ä¡¿2009
¡¾ÄÚÈݼò½é¡¿The synthesis of the Ce1-xZrxO2 flower-like nanostructures via the electrochemical deposition route, which represents a simple, quick, and economical method. By controlling the electrodepositon conditions, various Ce1-xZrxO2 flower-like structures can be easily prepared.
¡¾Ìå»á&ÊÕ»ñ¡¿¿É¿Ø·½·¨µÃµ½ÐÂÆæ²ÄÁÏ,ÖµµÃÒ»¶Á.

ÎļþÌ«´ó,²»ÄÜÌá½»,²»ÖªµÀÔõô°ì.
ѧº£ÎÞÑÄ£¬ÊéɽÓз
29Â¥2009-03-09 00:18:03
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû

fengxinming

Ìú¸Ëľ³æ (Ö°Òµ×÷¼Ò)

ÎûÎû¹þ¹þ¼Ò×崴ʼÈË

¡ï ¡ï
waiy2001(½ð±Ò+2,VIP+0): 3-14 20:24
¡¾Ñ§¿ÆÁìÓò¡¿½ðÊôÓлú
¡¾ÎÄÏ×ÌâÄ¿¡¿Employing La2- (La ) Eu, Tb, Pr) or Co3-Based Molecule Building
Blocks To Construct 3,8-Connected Nets: Hydrothermal Synthesis,
Structure, Luminescence, and Magnetic Properties
¡¾ÆÚ¿¯À´Ô´¡¿Crystal Growth and Design  2008, 6, 2006¨C2010
¡¾×÷Õß»ò¿ÎÌâ×é¡¿Feng Luo, Yunxia Che, and Jimin Zheng
¡¾·¢±íʱ¼ä¡¿ 2008
¡¾ÄÚÈݼò½é¡¿In this work, we report two 3,8-connected nets. The first one is polymers 1-3, La(pydc)(L)0.5(¦Ì-H2O) (pydc )
pyridine-2,5-carboxylate, H2L ) adipic acid), which are isostructural and described by the (4 ¡¤ 5 ¡¤ 6)2(42 ¡¤ 56 ¡¤ 616 ¡¤ 72 ¡¤ 82) topology
notation, and the other one is polymer 4, Co3(1,4-BDC)(1,2-BDC)2(¦Ì2-H2O)2(¦Ì-H2O)2 (1,4-BDC ) 1,4-benzenedicarboxylate, 1,2-
BDC ) 1,2-benzenedicarboxylate), characterized by the tfz-d net with the (43)2(46 ¡¤ 618 ¡¤ 84) topology symbol. Comparing with the
reported 3,8-connected nets, the present examples show several unique properties: (a) the La2- and Co3-based MBBs are unprecedented;
(b) two different multicarboxylate ligands are employed to construct such nets; (c) the 3D matrix of polymers 1-3 is unique and
unprecedented.
¡¾Ìå»á&ÊÕ»ñ¡¿ÄÚÈÝÇåÎú£¬Í¼ÎIJ¢´Ó£¬ÖµµÃ¹ÛÉÍ£¬Ñ§Ï°
ÎҷѾ¢Ç§ÐÁÅÀÉÏÌÝ×ӵĶ¥¶Ë£¬È´·¢ÏÖÌÝ×Ó´î´íÁËǽͷ¡­¡­
30Â¥2009-03-13 09:35:35
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû
Ïà¹Ø°æ¿éÌø×ª ÎÒÒª¶©ÔÄÂ¥Ö÷ lingzi326 µÄÖ÷Ìâ¸üÐÂ
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