论文标题
从可见到中IR波长的宽带廉价等离子体学和光化学的胶体硝酸钛纳米体
Colloidal Titanium Nitride Nanobars for Broadband Inexpensive Plasmonics and Photochemistry from Visible to Mid-IR Wavelengths
论文作者
论文摘要
开发具有高载体密度的胶体等离激元纳米材料,显示出从可见光到中红外(MIR)范围延伸的光学共振和光化学活性仍然是一个挑战性的追求。在这里,我们报告了基于TIO2纳米线的湿化学途径合成及其随后在氨水流中的高温退火,使用了两步方法获得的氮化钛(TIN)纳米体的制造。对所得锡纳米体的电磁模拟显示,具有横向,纵向和混合横向纵向等离激元模式的丰富的光学共振集,这些模式涵盖了从可见光到miR区域的能量。与PT CO催化剂纳米晶体装饰的锡纳米体相比,由于在940 nm的近红外激发下,由于增强的热电子发电,在940 nm的近红外激发下,两种各向同性锡纳米球的光催化氢的演化活性增强。我们还证明,血浆锡纳米骨可以通过在miR区域提供强大的表面增强的红外吸收(SEIRA)效应来检测呋喃分子振动。
Developing colloidal plasmonic nanomaterials with high carrier density that show optical resonances and photochemical activity extending from the visible to the mid-infrared (MIR) ranges remains a challenging pursuit. Here, we report the fabrication of titanium nitride (TiN) nanobars obtained using a two step procedure based on a wet chemical route synthesis of TiO2 nanowires and their subsequent high temperature annealing in ammonia flow. Electromagnetic simulations of the resulting TiN nanobars reveal a rich set of optical resonances featuring transverse, longitudinal and mixed transverse longitudinal plasmonic modes that cover energies from the visible to MIR region. TiN nanobars decorated with Pt co catalyst nanocrystals show enhanced photocatalytic hydrogen evolution activity in comparison to both isotropic TiN nanospheres of similar size and TiN nanocubes under near infrared excitation at 940 nm due to the enhanced hot electron generation. We also demonstrate that plasmonic TiN nanobars can be used for the detection of furfural molecular vibrations by providing a strong surface enhanced infrared absorption (SEIRA) effect in the MIR region.