Palanivel Subha†, Arumughan Nandana†, Putla Sudarsanam*
Mudavath Arun Kumar, Bhattu Swapna, Nittan Singh, Giridhar Madras, Putla Sudarsanam*
Mangalapalli Kamali, Palanivel Subha, Putla Sudarsanam*
Bhattu Swapna, Putla Sudarsanam*
Materials Today Chemistry 54 (2026) 103700
Arpita Devi, Palanivel Subha, Putla Sudarsanam, Priyanka Dutta, Tonmoy J. Bora, Kusum K. Bania*
Chand Adarsh Ashwani, Bhattu Swapna, Putla Sudarsanam*
Materials Today Chemistry, 54, 2026, 103618
Suresh Babu Putla, Palanivel Subha, Nittan Singh, Putla Sudarsanam*, Pavuluri Srinivasu*
Bhattu Swapna, Palanivel Subha, Asha Ramesh, Subrahmanyam Challapalli, Giridhar Madras, Putla Sudarsanam*
Nittan Singh, Bhattu Swapna, Alina Mariana Balu, Kushal Bhatte*, Putla Sudarsanam*
ACS Sustainable Chem. Eng. 2025, 13, 49, 21266–21276
Chand Adarsh Ashwani, Mangalapalli Kamali, Lavanya Yalagandula, Satyapaul A. Singh, Putla Sudarsanam*
Palanivel Subha, Qizhi Luo, Hu Li and Putla Sudarsanam*
Green Chem., 2025,27, 11794-11808 Highlighted on the inside back cover page
Suresh Babu Putla, Bhattu Swapna, Mudavath Arun Kumar, Putla Sudarsanam*, Pavuluri Srinivasu*
ChemCatChem 2025, 17, e202401694
Bhattu Swapna, Chullikulavan Fiba, Madam Bobby Barnabas, Regulagadda Suryanarayana, and Putla Sudarsanam*
Chem. Commun., 2025,61, 8847-8850 Highlighted on the back cover page
Chand Adarsh Ashwani, Palanivel Subha, Lavanya Yalagandula, Christophe Len, Satyapaul A Singh, Putla Sudarsanam*
Green Chem., 2025,27, 7820-7832 Highlighted on the inside back cover page
Bhattu Swapna, Madam Bobby Barnabas, Pragya Moni Gogoi, Pankaj Bharali, Giridhar Madras, Putla Sudarsanam*
Nanoscale, 2025,17, 10620-10631 Highlighted on the inside back cover page
Pavan Narayan Kalbande, Bhattu Swapna, Shubhangi B Umbarkar*, Putla Sudarsanam*
Jie Li, Ye Meng, Yu Wen, Yinyin He, Putla Sudarsanam*, Song Yang, Hu Li*
SN Rachitha, Abhishek Kumar Yadav, Mangalapalli Kamali, Putla Sudarsanam, Saikat Dutta*
Mangalapalli Kamali, Mudavath Arun Kumar, Putla Sudarsanam*, Benjaram M Reddy*
Mudavath Arun Kumar, Bhattu Swapna, Pavan Narayan Kalbande, Lavanya Yalagandula, Satyapaul A Singh, Putla Sudarsanam*
ACS Sustainable Chem. Eng. 2024, 12, 43, 15923–15934 Highlighted on the front cover page
Bhattu Swapna, Nittan Singh, Suranjana Patowary, Pankaj Bharali, Giridhar Madras, Putla Sudarsanam*
Catal. Sci. Technol., 2024,14, 5574-5587 Highlighted on the back cover page
Bhattu Swapna, Suresh Babu Putla, Asha Ramesh, Challapalli Subrahmanyam, Giridhar Madras, Putla Sudarsanam*
Sustainable Energy Fuels, 2024,8, 5170-5180 Highlighted on the front cover page
Kumar Krishan, Bhattu Swapna, Ankit Kumar Chourasia, Chandra S Sharma, Putla Sudarsanam*
Palanivel Subha, Kumar Krishan, Putla Sudarsanam*
Sustainable Energy Fuels, 2024,8, 3775-3800 Highlighted on the inside front cover page
Suresh Babu Putla, Mangalapalli Kamali, Bhattu Swapna, Benjaram M Reddy*, Putla Sudarsanam*
Mudavath Arun Kumar, Mangalapalli Kamali, Suresh Babu Putla, Palanivel Subha, Putla Sudarsanam*
Bhugendra Chutia, Rashmi Chetry, Komateedi N Rao, Nittan Singh, Putla Sudarsanam, Pankaj Bharali*
Suresh Babu Putla, P Subha, Bhattu Swapna, Nittan Singh, Putla Sudarsanam*
Nittan Singh, Suresh Babu Putla, Chandrodai Pratap Singh, Pavan Narayan Kalbande, Priyanka Choudhary, Sailaja Krishnamurty, Venkata Krishnan, Kushal Bhatte*, Putla Sudarsanam*
Pavan Narayan Kalbande, Nittan Singh, Bhattu Swapna, Shubhangi Umbarkar, Putla Sudarsanam*
Jie Li, Tengyu Liu, Nittan Singh, Zhuochun Huang, Yan Ding, Jinshu Huang, Putla Sudarsanam*, Hu Li*
Jie Li, Putla Sudarsanam*, Hu Li*
Hamidreza Arandiyan, Putla Sudarsanam, Suresh K Bhargava, Adam F Lee*, Karen Wilson*
Rashmi Chetry, Bhugendra Chutia, Suranjana Patowary, Biraj Jyoti Borah, Putla Sudarsanam, Pankaj Bharali*
Nittan Singh, Pavan Narayan Kalbande, Shubhangi Umbarkar, Putla Sudarsanam*
Navya Subray Bhat, Shobhita L. Hegde, Saikat Dutta, Putla Sudarsanam*
Hongguo Wu, Hu Li*, Wenfeng Zhao, Putla Sudarsanam*, Song Yang*
Putla Sudarsanam*, Nittan Singh, Pavan Narayan Kalbande
Puranjan Mishra,Putla Sudarsanam,Durga Madhab Mahapatra,Ahmed Elmekawy,Deepak Pant & Lakhveer Singh*
60. P. Sudarsanam,* N.K. Gupta, B. Mallesham, N. Singh, P. N. Kalbande, B.M. Reddy, B.F. Sels. Supported MoOx and WOx solid acids for biomass valorization: Interplay of coordination chemistry, acidity, and catalysis. ACS Catalysis 11 (2021) 13603–13648. IF: 11.7
59. H. Wu, L. Zhang, J. Wang, Y. Jiang, H. Li*, P. Sudarsanam*, S. Yang*. Room-temperature quasi-catalytic hydrogen generation from waste and water. Green Chemistry 23 (2021) 7528-7533. IF: 9.3
58. P. Sudarsanam,* A. Köckritz, H. Atia, M.H. Amin, A. Brückner*. Synergistic nanostructured MnOx/TiO2 catalyst for highly selective synthesis of aromatic imines. ChemCatChem 13 (2021) 1990-1997. IF: 3.8
57. K. Rajkumari, B. Changmai, A.K. Meher, C. Vanlalveni, P. Sudarsanam, Andrew E. H. Wheatley, S. L. Rokhum*. A reusable magnetic nanocatalyst for bio-fuel additives: the ultrasound-assisted synthesis of solketal. Sustainable Energy & Fuels (RSC) 5 (2021) 2362-2372. IF: 5
56. X. Tan, P. Sudarsanam, J. Tan, A. Wang, H. Zhang, H. Li, S. Yang. Sulfonic acid-functionalized heterogeneous catalytic materials for efficient biodiesel production: A review. Journal of Environmental Chemical Engineering, 9 (2021) 104719. IF: 7.4
55. P. Sudarsanam,*, D. Ruijten, Y. Liao, T. Renders, S.-F. Koelewijn, B. F. Sels*. Towards lignin-derived chemicals using atom-efficient catalytic routes. Trends in Chemistry (Cell Press Reviews), 2 (2020) 898-913 (Invited Article). Highlighted on the front cover page IF: 14
54. P. Sudarsanam*, H. Li*, T. V. Sagar. TiO2-based water-tolerant acid catalysis for bio-derived fuels and chemicals. ACS Catalysis, 10 (2020) 9555–9584. IF: 11.7
53. C. Goswami, H. Saikia, K. Tada, S. Tanaka, P. Sudarsanam, S. K. Bhargava, P. Bharali. Bimetallic palladium-nickel nanoparticles anchored on carbon as high performance electrocatalysts for oxygen reduction and formic acid oxidation reactions. ACS Applied Energy Materials, 3 (2020) 9285–9295. IF: 5.5
52. A. Wang, P. Sudarsanam, Y. Xu, H. Zhang, H. Li, S. Yang*. Functionalized magnetic nanosized materials for efficient biodiesel synthesis via acid–base/enzyme catalysis. Green Chemistry 22 (2020) 2977-3012. IF: 9.1
51. L. H. Hashim*, A. Halilu*, P. Sudarsanam, Y. B. Umar, M. R. B. Johan, S. K. Bhargava*. Bifunctional rice husk-derived SiO2-Cu-Al-Mg nanohybrid catalyst for one-pot conversion of biomass-derived furfural to furfuryl acetate. Fuel 275 (2020) 117953- 117961. IF: 6.7
50. B. G. Rao, P. Sudarsanam, T. V. Rao, M. H. Amin, S. K. Bhargava, B. M. Reddy*. Highly dispersed MnOx nanoparticles on shape-controlled SiO2 spheres for ecofriendly selective allylic oxidation of cyclohexene. Catalysis Letters 150 (2020) 3023-3035. IF: 2.3
49. K.K. Hazarika, H. Talukdar, P. Sudarsanam, S.K. Bhargava,* P. Bharali*. Highly dispersed Mn2O3−Co3O4 nanostructures on carbon matrix as heterogeneous Fenton‐like catalyst. Appl. Organometal. Chem. 34 (2020) e5512-e5525. IF: 3.7
48. B. Changmai, P. Sudarsanam, L. Rokhum*. Biodiesel production using a renewable mesoporous solid catalyst. Industrial Crops and Products 145 (2020) 111911. IF: 5.6
47. P. Sudarsanam,* T. Duolikun, P.S. Babu, L. Rokhum, M. R. Johan. Recent developments in selective catalytic conversion of lignin into aromatics and their derivatives. Biomass Conv. Bioref. 10 (2020) 873-883. IF: 3.5
46. P. Sudarsanam,* E. Peeters, E.V. Makshina, V.I. Parvulescu, B.F. Sels*. Advances in porous and nanoscale catalysts for viable biomass conversion. Chemical Society Reviews, 48 (2019) 2366-2421. IF: 40.4
45. B. Mallesham, P. Sudarsanam, B.V.S. Reddy, B.G. Rao, B.M. Reddy*. Nanostructured nickel/silica catalysts for continuous flow conversion of levulinic acid to γ-valerolactone. ACS Omega, 2018, 3, 16839–16849 (Invited Article). IF: 3.2
44. B. G. Rao, P. Sudarsanam, P.R.G. Nallappareddy, M. Y. Reddy, T.V. Rao, B.M. Reddy. Selective allylic oxidation of cyclohexene over a novel nanostructured CeO2–Sm2O3/SiO2 catalyst. Research on Chemical Intermediates, 2018, 44, 6151–6168. IF: 2.8
43. P. Sudarsanam,* B. Hillary, M.H. Amin, N. Rockstroh, U. Bentrup, A. Brueckner, S.K. Bhargava*. Heterostructured copper-ceria and iron-ceria nanorods: Role of morphology, redox, and acid properties in catalytic diesel soot combustion. Langmuir 34 (2018) 2663–2673. IF: 3.7
42. B. Ren, P. Sudarsanam, A.E. Kandjani, B. Hillary, M.H. Amin, S.K. Bhargava*, L.A. Jones*. Electrochemical detection of As (III) on a manganese oxide‐ceria (Mn2O3/CeO2) nanocube modified Au electrode. Electroanalysis, 30 (2018) 928-936. Highlighted on the front cover page IF: 2.7
41. P. Sudarsanam,* R. Zhong, S.V. den Bosch, S.M. Coman, V.I. Parvulescu,* B.F. Sels*. Functionalised heterogeneous catalysts for sustainable biomass valorisation. Chemical Society Reviews, 47 (2018) 8349-8402 (Invited Article). IF: 40.4
40. B. Hillary, P. Sudarsanam,* M.H. Amin, S.K. Bhargava*. Nanoscale cobalt–manganese oxide catalyst supported on shape-controlled cerium oxide: Effect of nanointerface configuration on structural, redox, and catalytic properties. Langmuir, 33 (2017) 1743–1750. IF: 3.7
39. M.H. Amin, P. Sudarsanam, M.R. Field, J. Patel, S.K. Bhargava*. Effect of a swelling agent on the performance of Ni/porous silica catalyst for CH4-CO2 reforming. Langmuir, 33 (2017) 10632–10644. IF: 3.7
38. B. Govindarao, P. Sudarsanam, P.R.G. Nallappareddy, M.Y. Reddy, T.V. Rao, B.M. Reddy*. Selective allylic oxidation of cyclohexene catalyzed by nanostructured Ce-Sm-Si materials. Catalysis Communications, 101 (2017) 57-61. IF: 3.7
37. M.M. Ambursa, P. Sudarsanam, L.H. Voon, S.B.A. Hamid*, S.K. Bhargava. Bimetallic Cu-Ni catalysts supported on MCM-41 and Ti-MCM-41 porous materials for hydrodeoxygenation of lignin model compound into transportation fuels. Fuel Processing Technology 162 (2017) 87-97. IF: 7.2
36. H. Saikia, R. Duarah, P. Sudarsanam, S.K. Bhargava, P. Bharali*. PdCu nanoparticles stabilized on porous CeO2 for catalytic degradation of azo dyes: structural characterization and kinetic studies, ChemistrySelect 2 (2017) 2123-2130. IF: 1.9
35. S.B. Abd Hamid,* Murtala M. Ambursa, P. Sudarsanam, L.H. Voon, S.K. Bhargava. Effect of Ti loading on structure-activity properties of Cu-Ni/Ti-MCM-41 catalysts in hydrodeoxygenation of guaiacol, Catalysis Communications, 94 (2017) 18–22. IF: 3.7
34. P. Sudarsanam, B. Hillary, M.H. Amin, S. Hamid, S.K. Bhargava*. Structure-activity relationships of nanoscale MnOx/CeO2 heterostructured catalysts for selective oxidation of amines under eco-friendly conditions, Applied Catalysis B: Environmental, 185 (2016) 213-224. IF: 20.3
33. B. Mallesham, P. Sudarsanam, B.V.S. Reddy, B.M. Reddy*. Development of cerium promoted copper–magnesium catalysts for biomass valorization: Selective hydrogenolysis of bioglycerol, Applied Catalysis B: Environmental, 181 (2016) 47–57. IF: 20.3
32. B.G. Rao, P. Sudarsanam, B. Mallesham, B.M. Reddy*. Highly efficient continuous-flow oxidative coupling of amines using promising nanoscale CeO2–M/SiO2 (M= MoO3 and WO3) solid acid catalysts, RSC Advances 6 (2016) 95252–95262. IF: 3.9
31. P. Sudarsanam, B. Hillary, B. Mallesham, B.G. Rao, M.H. Amin, A. Nafady, A. Alsalme, B.M. Reddy, S.K. Bhargava*. Designing CuOx nanoparticle-decorated CeO2 nanocubes for catalytic soot oxidation: Role of the nanointerface in the catalytic performance of heterostructured nanomaterials, Langmuir, 32 (2016) 2208–2215. Listed among top ten most impactful articles from Langmuir, https://axial.acs.org/2018/09/19/research-langmuir/ IF: 3.7
30. P. Sudarsanam, B. Mallesham, A. Rangaswamy, B.G. Rao, S.K. Bhargava, B.M. Reddy*. Promising nanostructured gold/metal oxide catalysts for oxidative coupling of benzylamines under eco-friendly conditions, Journal of Molecular Catalysis A: Chemical, 412 (2016) 47-55. IF: 8.05
29. M.M. Ambursa, T.H. Ali, H.V. Lee, P. Sudarsanam, S.K. Bhargava, S.B.A. Hamid*. Hydrodeoxygenation of dibenzofuran to bicyclic hydrocarbons using bimetallic Cu–Ni catalysts supported on metal oxides, Fuel, 180 (2016) 767–776. IF: 6.7
28. S. Gbadamasi, T.H. Ali, L.H. Voon, A.Y. Atta, P. Sudarsanam, S.K. Bhargava, S.B.A. Hamid*. Promising Ni/Al-SBA-15 catalysts for hydrodeoxygenation of dibenzofuran into fuel grade hydrocarbons: Synergetic effect of Ni and Al-SBA-15 support, RSC Advances, 6 (2016) 25992-26002. IF: 3.9
27. A. Halilu, T.H. Ali, A.Y. Atta, P. Sudarsanam, S.K. Bhargava, S.B.A. Hamid*. Highly selective hydrogenation of biomass-derived furfural into furfuryl alcohol using a novel magnetic nanoparticles catalyst, ACS energy& fuels 30 (2016) 2216–2226. One of the top 25 most cited articles in ACS energy&fuels journal. IF: 5.2
26. A. Rangaswamy, P. Sudarsanam, B. Govinda Rao, B.M. Reddy*. Novel molybdenum–cerium based heterogeneous catalysts for efficient oxidative coupling of benzylamines under eco-friendly conditions, Research on Chemical Intermediates, 42 (2016) 4937-4950. IF: 2.8
25. S.B.A. Hamid, N.A. Daud, D.D. Suppiah, W.A. Yehya, P. Sudarsanam, S.K. Bhargava*. Catalytic dehydration of glycerol to acrolein over M2.5H0.5PW12O40 (M= Cs, Rb and K) phosphotungstic acids: Effect of substituted alkali metals, Polyhedron 120 (2016) 154-161 (Invited Article). IF: 2.4
24. S.B.A. Hamid, N. Basiron, W.A. Yehya, P. Sudarsanam, S.K. Bhargava*. Nanoscale Pd-based catalysts for selective oxidation of glycerol with molecular oxygen: Structure-activity correlations, Polyhedron 120 (2016) 124-133 (Invited Article). IF: 2.4
23. P. Sudarsanam, M.H. Amin, B.M. Reddy, A. Nafady, K.A. Farhan, S.K. Bhargava*. MnOx nanoparticle-dispersed CeO2 nanocubes: A remarkable heteronanostructured system with unusual structural characteristics and superior catalytic performance, ACS Applied Materials & Interfaces, 7 (2015) 16525–16535. IF: 8.5
22. P. Sudarsanam, B. Hillary, D.K. Deepa, M.H. Amin, B. Mallesham, B.M. Reddy, S.K. Bhargava*. Highly efficient cerium dioxide nanocubes-based catalyst for low temperature diesel soot oxidation: cooperative effect of cerium- and cobalt-oxides, Catalysis Science & Technology, 5 (2015) 3496-3500. Highlighted in the 100th anniversary of the Royal Australian Chemical Institute (RACI100) IF: 4.4
21. M.H. Amin, P. Sudarsanam, S.B.A. Hamid, S.K. Bhargava*. Understanding the role of lanthanide promoters on the structure-activity of nanosized Ni/γ-Al2O3 catalysts in carbon dioxide reforming of methane, Applied Catalysis A: General, 492 (2015) 160–168. IF: 4.7
20. B. Govindarao, P. Sudarsanam, A. Rangaswamy, B.M. Reddy*. Highly efficient CeO2–MoO3/SiO2 catalyst for solvent-free oxidative coupling of benzylamines into N-benzylbenzaldimines with O2 as the Oxidant, Catalysis Letters, 145 (2015) 1436–1445. IF: 2.3
19. A. Rangaswamy, P. Sudarsanam, B.M. Reddy*. Rare earth metal doped CeO2-based catalytic materials for diesel soot oxidation at lower temperatures, Journal of Rare Earths, 33 (2015) 1162-1169. IF: 5.2
18. P. Sudarsanam, K. Kuntaiah, B.M. Reddy*. Promising ceria-samaria based nano-oxides for low temperature soot oxidation: A combined study of structure-activity properties, New Journal of Chemistry, 38 (2014) 5991–6001. IF: 2.7
17. P. Sudarsanam, A. Rangaswamy, B.M. Reddy*. An efficient noble metal-free Ce-Sm/SiO2 nano-oxide catalyst for oxidation of benzylamines under eco-friendly conditions, RSC Advances, 4 (2014) 46378–46382. IF: 3.9
16. P. Sudarsanam, P.R. Selvakannan, S.K. Soni, S.K. Bhargava, B.M. Reddy*. Structural evaluation and catalytic performance of nano-Au supported on nanocrystalline Ce0.9Fe0.1O2-δ solid solution for oxidation of carbon monoxide and benzyl amine, RSC Advances, 4 (2014) 43460–43469. IF: 3.9
15. P. Sudarsanam, B. Mallesham, P.S. Reddy, D. Großmann, W. Grünert, B.M. Reddy*. Nano-Au/CeO2 catalysts for CO oxidation: Influence of dopants (Fe, La and Zr) on the physicochemical properties and catalytic activity, Applied Catalysis B: Environmental, 144 (2014) 900–908. IF: 20.4
14. P. Sudarsanam, B. Mallesham, D.N. Durgasri, B.M. Reddy*. Physicochemical characterization and catalytic CO oxidation performance of nanocrystalline Ce-Fe mixed oxides, RSC Advances, 4 (2014) 11322–11330. IF: 3.9
13. B. Mallesham, P. Sudarsanam, B.M. Reddy*. Production of biofuel additives from esterification and acetalization of bio-glycerol over SnO2-based solid acids, Industrial & Engineering Chemistry Research, 54 (2014) 18775–18785. IF: 3.8
12. B. Mallesham, P. Sudarsanam, B.M. Reddy*. Eco-friendly synthesis of bio-additive fuels from renewable glycerol using nanocrystalline SnO2-based solid acids, Catalysis Science & Technology, 4 (2014) 803–813. IF: 4.4
11. P. Sudarsanam, B. Mallesham, D.N. Durgasri, B.M. Reddy*. Physicochemical and catalytic properties of nanosized Au/CeO2 catalysts for eco-friendly oxidation of benzyl alcohol, Journal of Industrial and Engineering Chemistry, 20 (2014) 3115–3121. IF: 3.8
10. D.N. Durgasri, T. Vinodkumar, P. Sudarsanam, B.M. Reddy*. Nanosized gadolinium doped ceria-based mixed oxides: study of structural aspects and catalytic evaluation for CO oxidation, Catalysis Letters, 144 (2014) 971–979. IF: 2.3
9. P. Sudarsanam, B. Mallesham, A. Nagaprasad, P.S. Reddy, B.M. Reddy*. Synthesis of bio-additive fuels from acetalization of glycerol with benzaldehyde over molybdenum promoted green solid acid catalysts, Fuel Processing Technology, 106 (2013) 539–545. IF: 7.2
8. B. Mallesham, P. Sudarsanam, R. Gangadhara, B.M. Reddy*. Design of highly efficient Mo and W promoted SnO2 solid acids for heterogeneous catalysis: Acetalization of bioglycerol, Green Chemistry, 15 (2013) 478–489. IF: 9.3
7. P. Sudarsanam, L. Katta, G. Thrimurthulu, B.M. Reddy*. Vapor phase synthesis of cyclopentanone over nanostructured ceria-zirconia solid solution catalysts, Journal of Industrial and Engineering Chemistry, 19 (2013) 1517–1524. IF: 5.9
6. K. Kuntaiah, P. Sudarsanam, B.M. Reddy*, A. Vinu. Nanocrystalline Ce1–xSmxO2–δ (x = 0.4) solid solutions: Structural characterization versus CO oxidation, RSC Advances, 3 (2013) 7953–7962. IF: 3.9
5. L. Katta, P. Sudarsanam, B. Mallesham, B.M. Reddy*. Preparation of silica supported ceria-lanthana solid solutions useful for synthesis of 4-methylpent-1-ene and dehydroacetic acid, Catalysis Science & Technology, 2 (2012) 995–1004. IF: 4.4
4. P.S. Reddy, P. Sudarsanam, G. Raju, B.M. Reddy*. Selective acetylation of glycerol over CeO2-M and SO42-/CeO2-M (M = ZrO2 and Al2O3) catalysts for synthesis of bioadditives, Journal of Industrial and Engineering Chemistry, 18 (2012) 648–654. IF: 5.9
3. P.S. Reddy, P. Sudarsanam, B. Mallesham, G. Raju, B.M. Reddy*. Acetalisation of glycerol with acetone over zirconia and promoted zirconia catalysts under mild reaction conditions, Journal of Industrial and Engineering Chemistry, 17 (2011) 377–381. IF: 5.9
2. L. Katta, P. Sudarsanam, G. Thrimurthulu, B.M. Reddy*. Doped nanosized ceria solid solutions for low temperature soot oxidation: zirconium versus lanthanum promoters, Applied Catalysis B: Environmental, 101 (2010) 101–108. IF: 20.4
1. P.S. Reddy, P. Sudarsanam, G. Raju, B.M. Reddy*. Synthesis of bio-additives: Acetylation of glycerol over zirconia-based solid acid catalysts, Catalysis Communications, 11 (2010) 1224–1228. IF: 3.7
1 N. Singh, P. N. Kalbande, P. Sudarsanam*. Chapter 18: Heterogeneous Catalytic Routes for Bio-glycerol-Based Acrylic Acid Synthesis in Book: Biodiesel Production: Feedstocks, Catalysts, and Technologies, Wiley, May, 2022.
2 S. Sarkar, N. Singh, M Khan, P. Sudarsanam. Chapter 10: Nanostructured Graphene Oxide‐Based Catalysts for Fischer–Tropsch Synthesis in Book: Heterogeneous Nanocatalysis for Energy and Environmental Sustainability, Volume 1, Wiley, November, 2022.
3 B. Mallesham, P.S. Babu, H. Li, P. Sudarsanam*. Chapter 3: Catalytic conversion of acrolein and acrylic acid drop-ins for added-value chemicals in Book: Advanced Catalysis for Drop-in Chemicals (Eds., P. Sudarsanam and H. Li), Elsevier, 47-62, 2022.
4 P. Sudarsanam and B.M. Reddy*. Chapter 3: Production techniques of nanoparticles on a laboratory scale in Book: Nanotechnology Commercialization (Ed., T. Tsuzuki), Pan Stanford Publishing Pte. Ltd., Singapore, 73–138, 2013.