...
首页> 外文期刊>ACS nano >Nanoscale Probing of Local Hydrogen Heterogeneity in Disordered Carbon Nitrides with Vibrational Electron Energy-Loss Spectroscopy
【24h】

Nanoscale Probing of Local Hydrogen Heterogeneity in Disordered Carbon Nitrides with Vibrational Electron Energy-Loss Spectroscopy

机译:振动电子损耗光谱纳米型纳米氮化物中局部氢异质性的纳米级探测

获取原文
获取原文并翻译 | 示例
           

摘要

In graphitic carbon nitrides, (photo)catalytic functionality is underpinned by the effect that residual hydrogen content, manifesting in amine (N-H-x) defects, has on its optoelectronic properties. Therefore, a detailed understanding of the variation in the local structure of graphitic carbon nitrides is key for understanding structure-activity relationships. Here, we apply aloof beam vibrational electron energy-loss spectroscopy in the scanning transmission electron microscope (STEM) to locally detect variations in hydrogen content in two different layered carbon nitrides with nanometer resolution. Through low dose rate TEM, we obtain atomically resolved images from crystalline and disordered carbon nitrides. By employing an aloof-beam configuration in a monochromated STEM, radiation damage can be dramatically reduced, yielding vibrational spectra from carbon nitrides to be assessed on 10's of nanometer length scales. We find that in disordered graphitic carbon nitrides the relative amine content can vary locally up to 27%. Cyano (C equivalent to N) defects originating from uncondensed precursor are also revealed by probing small volumes, which cannot be detected by infrared absorption or Raman scattering spectroscopies. The utility of this technique is realized for heterogeneous soft materials, such as disordered graphitic carbon nitrides, in which methods to probe catalytically active sites remain elusive.
机译:在石墨碳氮化物中,(照片)催化官能团通过胺(N-H-X)缺陷的残留氢含量(N-H-x)缺陷的效果为基础,对其光电性质进行了基础。因此,详细了解石墨碳氮化物的局部结构变化是理解结构活动关系的关键。这里,我们在扫描透射电子显微镜(茎)中应用超然光束振动电子能损光谱,以局部地检测具有纳米分辨率的两种不同分层碳氮化物中的氢含量的变化。通过低剂量率TEM,我们从结晶和无序的氮化物中获得原子分辨图像。通过在单色茎中采用超离子束构造,可以显着减少辐射损伤,从纳米长度尺度的10个纳米氮化物中产生振动光谱。我们发现,在无序的石墨碳氮化物中,相对胺含量可以局部地变化至27%。通过探测小体积,还揭示了源自未调测的前体的氰基(相当于N)缺陷,其不能通过红外吸收或拉曼散射光谱检测。该技术的效用是实现异质软材料,例如无序的石墨碳氮化物,其中探测催化活性位点的方法仍然难以捉摸。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号