Department of Materials Science and Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea.
ACS Sens. 2018 Oct 26;3(10):2152-2158. doi: 10.1021/acssensors.8b00714. Epub 2018 Oct 15.
In this work, we prepared a well-aligned palladium oxide nanowire (PdO NW) array using the lithographically patterned Pd nanowire electrodeposition (LPNE) method followed by subsequent calcination at 500 °C. Sensitization with platinum (Pt) nanoparticles (NPs), which were functionalized on PdO NWs through a simple reduction process, significantly enhanced the detection capability of the Pt-loaded PdO NWs (Pt-PdO NWs) sensors toward hydrogen gas (H) at room temperature. The well-distributed Pt NPs, which are known chemical sensitizers, activated the dissociation of H and oxygen molecules through the spillover effect with subsequent diffusion of these products to the PdO surface, thereby transforming the entire surface of the PdO NWs into reaction sites for H. As a result, at a high concentration of H (0.2%), the Pt-PdO NWs showed an enhanced sensitivity of 62% (defined as Δ R/ R × 100%) compared to that (6.1%) of pristine PdO NWs. The Pt-PdO NWs exhibited a response time of 166 s, which was 2.68-fold faster than that of pristine PdO NWs (445 s). In addition, the Pt-PdO NWs responded to a very low concentration of H (10 ppm) with a sensitivity of 14%, unlike the pristine PdO NWs, which did not exhibit any response at that concentration. These outstanding results are mainly attributed to a homogeneous decoration of Pt NPs on the surface of well-aligned PdO NWs. In this work, we demonstrated the potential suitability of Pt-PdO NWs as a highly sensitive H sensing layer at room temperature.
在这项工作中,我们使用光刻图案化钯纳米线电沉积(LPNE)方法制备了排列整齐的氧化钯纳米线(PdO NW)阵列,随后在 500°C 下进行煅烧。通过简单的还原过程将铂(Pt)纳米颗粒(NPs)功能化在 PdO NW 上,显著提高了 Pt 负载的 PdO NWs(Pt-PdO NWs)传感器对室温下氢气(H)的检测能力。分布均匀的 Pt NPs 是已知的化学敏化剂,通过溢流效应激活 H 和氧分子的解离,随后这些产物扩散到 PdO 表面,从而将 PdO NWs 的整个表面转化为 H 的反应位点。结果,在高浓度 H(0.2%)下,Pt-PdO NWs 的灵敏度比原始 PdO NWs(6.1%)提高了 62%(定义为 Δ R/ R × 100%)。Pt-PdO NWs 的响应时间为 166 s,比原始 PdO NWs(445 s)快 2.68 倍。此外,Pt-PdO NWs 对非常低浓度的 H(10 ppm)表现出 14%的灵敏度,而原始 PdO NWs 在该浓度下没有任何响应。这些优异的结果主要归因于 Pt NPs 在排列整齐的 PdO NWs 表面的均匀装饰。在这项工作中,我们证明了 Pt-PdO NWs 作为室温下高灵敏度 H 传感层的潜在适用性。