日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Solar-driven upcycling of plastic waste using plasmonic black gold

利用等离子体黑金进行太阳能驱动的塑料废弃物升级再造

Singh, Saideep; Sharma, Gunjan; Joshi, Mamata; Polshettiwar, Vivek

Tuning the electronic structure and SMSI by integrating trimetallic sites with defective ceria for the CO(2) reduction reaction

通过将三金属位点与缺陷二氧化铈结合来调节电子结构和强金属-载体相互作用(SMSI),从而用于CO(2)还原反应

Singhvi, Charvi; Sharma, Gunjan; Verma, Rishi; Paidi, Vinod K; Glatzel, Pieter; Paciok, Paul; Patel, Vashishtha B; Mohan, Ojus; Polshettiwar, Vivek

Hot electron-driven tandem CO(2) reduction and propane dehydrogenation over plasmonic black gold nanoreactors

热电子驱动的串联CO(2)还原和丙烷脱氢反应在等离子体黑金纳米反应器上进行

Sharma, Gunjan; Singhvi, Charvi; Mishra, Girish; Nandi, Amitabha; Schuck, Götz; Grimm, Nico; Wallacher, Dirk; Kumar, Abhishek; Nukala, Pavan; Nath, Sukhendu; Ghosh, Soumya; Polshettiwar, Vivek

Synthesis of synergistic catalysts: integrating defects, SMSI, and plasmonic effects for enhanced photocatalytic CO(2) reduction

协同催化剂的合成:整合缺陷、强金属-载体相互作用和等离子体效应以增强光催化CO₂还原反应

Belgamwar, Rajesh; Singhvi, Charvi; Sharma, Gunjan; Paidi, Vinod K; Glatzel, Pieter; Yamazoe, Seiji; Sarawade, Pradip; Polshettiwar, Vivek

The paradox of thermal vs. non-thermal effects in plasmonic photocatalysis

等离子体光催化中热效应与非热效应的悖论

Verma, Rishi; Sharma, Gunjan; Polshettiwar, Vivek

Defects tune the acidic strength of amorphous aluminosilicates

缺陷可以调节非晶态铝硅酸盐的酸性强度。

Rishi Verma ,Charvi Singhvi ,Amrit Venkatesh ,Vivek Polshettiwar

Pt-doped Ru nanoparticles loaded on 'black gold' plasmonic nanoreactors as air stable reduction catalysts

负载于“黑金”等离子体纳米反应器的 Pt 掺杂 Ru 纳米粒子作为空气稳定还原催化剂

Gunjan Sharma, Rishi Verma, Shinya Masuda, Khaled Mohamed Badawy, Nirpendra Singh, Tatsuya Tsukuda, Vivek Polshettiwar

Enhanced efficiency in plastic waste upcycling: the role of mesoporosity and acidity in zeolites

提高塑料废弃物升级回收利用效率:沸石介孔性和酸性的作用

Singh, Saideep; Martínez-Ortigosa, Joaquín; Ortuño, Nuria; Polshettiwar, Vivek; García-Martínez, Javier

Surface plasmon-enhanced photo-driven CO2 hydrogenation by hydroxy-terminated nickel nitride nanosheets

表面等离子体增强羟基端基氮化镍纳米片的光驱动 CO2 加氢

Saideep Singh #, Rishi Verma #, Nidhi Kaul #, Jacinto Sa, Ajinkya Punjal, Shriganesh Prabhu, Vivek Polshettiwar

Direct CO(2) capture and conversion to fuels on magnesium nanoparticles under ambient conditions simply using water

在环境条件下,仅用水即可在镁纳米颗粒上直接捕获二氧化碳并将其转化为燃料。

Rawool, Sushma A; Belgamwar, Rajesh; Jana, Rajkumar; Maity, Ayan; Bhumla, Ankit; Yigit, Nevzat; Datta, Ayan; Rupprechter, Günther; Polshettiwar, Vivek