24小时热门版块排行榜    

查看: 401  |  回复: 0
当前主题已经存档。

punkx

铁杆木虫 (正式写手)

[交流] Characterizing nanomaterials with XRD

X-ray diffraction (XRD) is a powerful method for the study of nanomaterials (materials with structural features of at least one dimension in the range of 1-100 nm). Nanomaterials have a characteristic microstructure length comparable with the critical length scales of physical phenomena, giving them unique mechanical, optical and electronic properties.


X-ray diffractograms of nanomaterials provide a wealth of information - from phase composition to crystallite size, from lattice strain to crystallographic orientation. The Georgia Institute of Technology's Center for Nanoscience and Nanotechnology (Georgia Tech; Atlanta, Georgia, USA) is well equipped for nanomaterial research with PANalytical X'Pert PRO MRD, X'Pert PRO MPD and Alpha-1 systems, each used for particular applications.


Growth orientation of ZnO nanobelts

Nanobelts are single crystal, defect-free, shape-specific semiconductors requiring no protection against oxidation - properties that have many potential applications. At Georgia Tech, the X'Pert PRO MRD was used to study the growth orientation of nanobelts with respect to the single crystal Al2O3 substrate.


Professor Z L Wang's research group, working with ZnO nanobelts, has shown that under certain conditions these can be grown in different crystallographic orientations with specific dimensions and shapes. Figure 1 shows the TEM image of a typical ZnO nanobelt.






Figure 1: TEM micrograph of a ZnO nanobelt. The sphere at the tip of the nanobelt is the Au catalyst used in this specific study.



Figure 2 shows nanobelts with a definite preferred growth orientation, with respect to a single crystal substrate. The Fourier transform of the SEM micrograph (Figure 3) confirms the XRD findings. While microscopy techniques and XRD are complementary, in this study XRD has the advantage of being able to sample a large volume of material, providing an average representation of the microstructure.








Figure 2: XRD pole figure of 0002





Figure 3a: SEM micrograph of ZnO nanobelts





Figure 3b: Fourier transform of SEM micrograph



Studying the defects of nano-structured metals


A high-resolution diffractometer such as the X'Pert PRO Alpha-1 may not be an obvious choice for studying dislocation type and density evolution in nano-structured Cu by deformation at liquid nitrogen temperature, considering that materials with small crystallite size will have correspondingly broad, low intensity diffraction peak profiles. However, for some materials, broadening may be due to more than just crystallite size and the Alpha-1's ability to eliminate the redundant Ka2 contribution to the profile means less error in the final analysis.



Figure 4 shows crystallite size distributions at four levels of deformation by rolling copper under liquid nitrogen temperature. The total dislocation density and types of dislocations were then extracted from the XRD line profile analysis (figure 5). Studies like these help researchers understand the unique mechanical properties of nano-structured metals.



Figure 4: Crystallite size distribution at different deformation levels




Figure 5: Dislocation character and densities in deformed nano-structured Cu as a function of deformation



In situ high temperature analysis of 3D nanostructures

Georgia Tech's X'Pert PRO MPD is fitted with an HTK1200 oven - an in situ diffraction tool used in this case to convert silica-based diatom nanostructures to materials such as MgO, while preserving their complex shapes.


Diatoms are single-celled aquatic microorganisms, which assemble complex silica microshells (frustules) containing channels, pores or other intricate features. Although the sizes of diatoms vary, typical frustule dimensions are around 100 micrometers. Such 3D assemblies of magnesia nanocrystals could have agricultural, pharmaceutical, petrochemical, environmental and structural applications.


Diffractograms collected every five minutes during the isothermal annealing process document the progress of the chemical conversion of the diatoms in the presence of Mg vapor (Figure 6).





Silica diatom
Diatom converted to MgO





Figure 6: X-ray diffraction patterns collected during annealing



Many thanks to the researchers at Georgia Tech for their assistance with this report:

ZnO nanobelts: R. Yang, I. Dragomir-Cernatescu, Z.L. Wang and R. L. Snyder

MgO Nanodevices: M. S. Haluska, I. Dragomir-Cernatescu, K. H. Sandhage and R. L. Snyder

Deformed Nano-structured Cu:  I. Dragomir-Cernatescu, M. Gheorghe, N. Thadhani and R. L. Snyder


More detailed descriptions of the above studies can be found in:

1. Dragomir-Cernatescu I., Gheorghe M., Thadhani N. and Snyder R. L.: "Dislocation densities and character evolution in copper deformed by rolling under liquid nitrogen from X-ray peak profile analysis"; Powder Diffraction pp. 109-111, 20(2), (2005).

2. M. S. Haluska, I. Dragomir-Cernatescu, K. H. Sandhage and R. L. Snyder: "X-ray diffraction Analysis of 3-D MgO Diatom Replicas Synthesized by Low-Temperature Gas/Solid Displacement Reaction"; Powder Diffraction pp. 306-310, 20(4), (2005).



This is an X'Press article. Please see the overview of all X'Press articles of this issue.
http://www.panalytical.com/index.cfm?pid=866&itemid=146&contentitemid=329
回复此楼
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
相关版块跳转 我要订阅楼主 punkx 的主题更新
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[基金申请] filecode +10 等待解的谜 2026-08-06 14/700 2026-08-06 21:16 by zhanghaozhu
[基金申请] 听说今天filecode变了 +15 布布和一二 2026-08-06 29/1450 2026-08-06 21:08 by yq199112088
[基金申请] 固定端突然变了,今天 +3 archvillain 2026-08-06 7/350 2026-08-06 21:05 by archvillain
[基金申请] filecode +8 布布和一二 2026-08-06 11/550 2026-08-06 20:41 by tangpu318
[基金申请] 大家散了吧,后缀研究没有意义,别浪费时间了,过好目前的每一天,不要焦虑 +5 Tide man 2026-08-06 6/300 2026-08-06 20:19 by 苏知砚
[基金申请] 基金中了 +4 laoda193707 2026-08-06 4/200 2026-08-06 18:56 by olivermiaoer
[有机交流] 一个有机合成实验室都需要哪些设备? 50+3 kf2781974 2026-07-31 12/600 2026-08-06 15:11 by eddyin
[基金申请] 求各位大神看下 100+6 hpkpkpkp 2026-08-05 33/1650 2026-08-06 14:49 by zhiyanjiang
[教师之家] 咨询面上基金 +4 李长云 2026-07-31 7/350 2026-08-06 11:20 by 李长云
[基金申请] 影响面上的因素 +8 布布和一二 2026-08-05 11/550 2026-08-06 10:41 by 宝贝虫子
[基金申请] 8月时间戳变的,举个手。玩一下,释放压力 +9 archvillain 2026-08-04 11/550 2026-08-05 20:06 by wlwhappy
[基金申请] 面上再次挂了,太难了,躺也躺不了,倦也卷不过,小学校之殇! +22 低垂的野花 2026-07-31 30/1500 2026-08-05 18:03 by 低垂的野花
[基金申请] 好消息?这个有何含义??? +8 Tide man 2026-08-05 10/500 2026-08-05 16:14 by xmuxiaoyu
[考博] 【2027博士申请】纳米药物递送方向 20+3 13586093586 2026-08-03 4/200 2026-08-05 09:59 by lfy8008
[基金申请] 有没有H口的?有收到消息的吗? +3 超级海虾 2026-08-04 3/150 2026-08-04 17:26 by 学教育滴
[论文投稿] 十年后又回来了,论文投稿求助 +3 哈哈114477 2026-08-01 3/150 2026-08-04 15:40 by tegsgjy20
[基金申请] 纯娱乐,不喜欢勿喷 +7 Tide man 2026-08-04 10/500 2026-08-04 15:10 by loufangrui
[基金申请] 面上提前没消息,有中的吗 +14 archvillain 2026-08-02 18/900 2026-08-04 14:42 by archvillain
[基金申请] 娱乐 +4 Tide man 2026-08-03 4/200 2026-08-04 11:51 by wgch518
[基金申请] 什么时候能放榜呀? +3 Jacob678 2026-08-03 3/150 2026-08-03 16:14 by gltch
信息提示
请填处理意见