Tripathy Suraj Prakash, Subudhi Satyabrata, Ray Asheli, Behera Pragyandeepti, Panda Jayashree, Dash Srabani, Parida Kulamani
Centre for Nano Science and Nanotechnology, Siksha 'O' Anusnadhan (Deemed to be University), Bhubaneswar, Odisha 751030, India.
Centre for Nano Science and Nanotechnology, Siksha 'O' Anusnadhan (Deemed to be University), Bhubaneswar, Odisha 751030, India.
J Colloid Interface Sci. 2023 Jan;629(Pt B):705-718. doi: 10.1016/j.jcis.2022.09.104. Epub 2022 Sep 24.
In the existing eco-crisis, designing and engineering an efficient as well as water stable photocatalyst for energy conversion and pollutant abatement remains crucial. In this regard, a mixed linker type zirconium metal organic framework (Zr-MOF) with terepthalic acid based ditopic linkers were utilized to design a single component photocatalyst through single step solvothermal method to utilize photons from visible light illumination towards hydrogen energy (H) production and Tetracycline Hydrochloride (TCH) degradation. The one pot synthesized mixed linker based Zr-MOF displays visible light absorption through band gap tuning, superior exciton segregation and oxygen vacancy that cumulatively supports the enhancement in the photocatalytic output with respect to their pristine counterparts. Additionally, the X-ray photoelectron spectroscopy, optical and electrochemical studies strongly reinforces the above claims. The prepared mixed linker Zr-MOF showed superior photocatalytic H evolution performance of 247.88 µmol h (apparent conversion efficiency; ACE = 1.9%) that is twice than its pristine Zr-MOFs. Moreover, in TCH degradation, the mixed linker MOF displays an enhanced efficacy of 91.8 % and adopts pseudo-first order type kinetics with a rate constant value of 0.032. Typically, the active species participating for the TCH photo-degradation follows the order of hydroxyl (OH) < superoxide (O) radicals. Consequently, the mixed linker Zr-MOF could be effectively used as a robust photocatalyst exhibiting boosted TCH degradation and H production.
在当前的生态危机中,设计并制造一种高效且水稳定的光催化剂用于能量转换和污染物消除仍然至关重要。在这方面,一种具有基于对苯二甲酸的双齿连接体的混合连接体型锆基金属有机框架(Zr-MOF)通过一步溶剂热法被用于设计单组分光催化剂,以利用可见光照射产生氢能(H)并降解盐酸四环素(TCH)。一锅合成的基于混合连接体的Zr-MOF通过带隙调节显示出可见光吸收、优异的激子分离和氧空位,这些因素共同支持了相对于其原始对应物而言光催化输出的增强。此外,X射线光电子能谱、光学和电化学研究有力地支持了上述观点。所制备的混合连接体Zr-MOF表现出247.88 μmol h的优异光催化析氢性能(表观转化效率;ACE = 1.9%),是其原始Zr-MOF的两倍。此外,在TCH降解方面,混合连接体MOF显示出91.8%的增强效率,并采用准一级动力学,速率常数为0.032。通常,参与TCH光降解的活性物种遵循羟基(OH)<超氧(O)自由基的顺序。因此,混合连接体Zr-MOF可以有效地用作一种强大的光催化剂,表现出增强的TCH降解和产氢能力。