Yan Wang | Biological Sciences | Best Researcher Award

Ms. Yan Wang | Biological Sciences | Best Researcher Award

College of Biological and Pharmaceutical Engineering from West Anhui University, China

Wang Yan is an emerging researcher in the field of tea science, specializing in epigenetic regulation and quality metabolism of tea plants. As a lecturer and Doctor of Tea Science, she combines deep scientific knowledge with practical expertise, also being recognized as a senior tea artist. Her academic journey, focused entirely at Anhui Agricultural University, has been marked by consistent excellence. Wang Yan has successfully completed and currently leads multiple research projects, many funded by prestigious national and provincial bodies. Her work focuses on understanding the molecular mechanisms that affect tea quality and plant responses to environmental stress, providing critical insights to both academic research and practical agricultural applications. She has published extensively in high-impact journals, particularly Q1-ranked publications, establishing her as a serious and credible voice in her domain. Her ability to connect detailed biochemical investigations with real-world tea production challenges reflects her practical orientation and relevance. Wang Yan’s broad engagement in national projects, strong publication record, and interdisciplinary collaborations signify her growing influence. Her career demonstrates a balance of academic excellence, applied science, and a deep commitment to advancing the tea industry through scientific innovation.

Professional Profile

Education

Wang Yan’s educational background is rooted in Anhui Agricultural University, one of China’s prominent institutions for agricultural sciences. She began her academic journey in 2012 by pursuing a Bachelor’s degree, where she built a foundational understanding of agricultural and biological sciences. Her academic excellence led her to continue her studies at the same university, earning her Master’s degree in 2018. Wang Yan further distinguished herself by pursuing a Doctorate in Tea Science, a highly specialized field, completing her PhD in 2021. Throughout her educational trajectory, Wang Yan maintained a consistent focus on tea plants, their biological processes, and quality mechanisms. Her progression from undergraduate to doctoral studies within a single institution suggests a deep alignment with the university’s research goals and significant mentorship relationships that have likely nurtured her scientific growth. This solid and focused educational background has provided her with both theoretical and practical expertise in her chosen field. In addition to her formal degrees, her academic training encompassed extensive laboratory research, field studies, and engagement with key agricultural research projects, equipping her to contribute both to scientific knowledge and practical industry improvements.

Professional Experience

Wang Yan currently holds the position of Lecturer at Anhui Agricultural University, where she contributes actively to both research and teaching. Her professional journey includes participation and leadership in a range of scientific research projects funded by national, provincial, and local agencies. She has completed significant research, including a project funded by the State Key Laboratory of Tea Biology and Resource Utilization, investigating the epigenetic mechanism of protein arginine methyltransferase PRMT5 under high-temperature stress in tea plants. Wang Yan is also actively involved in several ongoing projects, such as the study of efficient composite management technology of forest and tea ecology and the genetic diversity analysis of Lu’an Guapian tea. Additionally, she contributes to applied research commissioned by governmental bodies, such as Yuexi County’s Health Commission, showcasing her ability to bridge scientific research with policy and industry needs. Wang Yan’s professional experience reflects a strong combination of fundamental and applied research activities. Her role in various collaborative research teams, often as a key contributor or principal investigator, underlines her growing leadership in the academic community. Furthermore, her teaching responsibilities in subjects like “Tea and Health” and “Food Nutrition” demonstrate her commitment to educating future professionals in the field.

Research Interests

Wang Yan’s research interests lie at the intersection of tea plant biology, epigenetics, and agricultural quality management. She is particularly focused on understanding how epigenetic mechanisms influence the growth, stress responses, and metabolite production in tea plants. Her studies aim to uncover how environmental stresses, such as high temperature, affect tea quality at the molecular and genetic levels, and how these processes can be regulated or enhanced to produce higher-quality tea products. In addition, she is interested in genetic diversity analysis and breeding strategies that can strengthen tea plant resilience and improve specific traits desirable for tea production. Wang Yan also explores biotechnological approaches, such as the use of Ganoderma lucidum fermentation to enhance the flavor and health benefits of summer and autumn tea leaves. Her broader scientific curiosity extends to sustainable tea plantation management and integrating traditional Chinese medicinal insights into tea agriculture. These interests place her research at the forefront of agricultural innovation, combining fundamental biological research with solutions for the tea industry’s evolving challenges.

Research Skills

Wang Yan possesses a comprehensive set of research skills crucial for modern plant science and agricultural biotechnology. Her expertise includes molecular biology techniques such as gene expression analysis, epigenetic mapping, and functional genomics. She has utilized multi-omics approaches, including transcriptomics and proteomics, to study complex biological processes in tea plants. Wang Yan is skilled in using bioinformatics tools to analyze large datasets, perform genetic diversity assessments, and construct linkage maps critical for breeding programs. She is proficient in conducting laboratory experiments related to protein function, histone modifications, and biochemical pathway analyses. In addition, she is adept at field research, involving the collection of plant materials, phenotypic assessments, and ecological management studies. Her ability to design, execute, and interpret both laboratory and field experiments indicates a strong versatility. Wang Yan’s collaborative skills are evident in her work on multi-institutional projects, demonstrating effective team science participation. Her technical competency is matched by her ability to translate research findings into practical applications, benefitting both academic circles and agricultural practitioners. This extensive skill set positions her well for continued contributions to tea science and broader agricultural biotechnology fields.

Awards and Honors

While specific awards and honors are not extensively listed, Wang Yan’s academic and professional record itself suggests recognition through competitive project funding and publication achievements. Her ability to secure research grants from esteemed bodies such as the National Natural Science Foundation of China and various provincial commissions highlights the high regard for her research proposals and scientific contributions. Furthermore, her publications in Q1, top-tier journals indicate a strong peer recognition in the scientific community. Being a senior tea artist also implies a form of professional accreditation and respect in the practical and cultural aspects of tea science. As she continues to build her research portfolio, it is highly likely that formal awards, prizes, and honorary recognitions will follow. Considering the rigor of her funded projects, her participation in national research efforts, and her contributions to agricultural development plans, Wang Yan’s current career stage already reflects an emerging leader profile. These achievements not only affirm her scientific capabilities but also position her favorably for future distinguished honors in the academic and agricultural sectors.

Conclusion

In conclusion, Wang Yan is a highly promising researcher whose academic background, professional experiences, and research achievements make her an excellent candidate for recognition through the Best Researcher Award. Her dedication to the field of tea science, especially in the areas of epigenetic regulation and quality improvement, represents significant contributions to both theoretical knowledge and practical applications. Her record of publishing in high-impact journals and managing multiple funded projects reflects her credibility and leadership potential in the scientific community. While she could further strengthen her profile through increased international collaboration and leadership in major research grants, her current accomplishments already distinguish her as a rising star in agricultural sciences. Wang Yan’s work not only advances the academic understanding of tea plant biology but also directly supports industry needs, demonstrating a rare and valuable combination of academic excellence and real-world impact. Her future prospects are strong, and with continued growth and exposure, she is poised to make even greater contributions to science and society.

Publications Top Notes

  • Title: Genetic Diversity Analysis and Core Germplasm Construction of Tea Plants in Lu’an

  • Authors: Wang Yan, Peng Huanyun, Tong Xiaoyan, Zhu Junyan, Liu Dong

  • Year: 2025

 

Adelson Rocha Dantas | Biological Sciences | Best Researcher Award

Dr. Adelson Rocha Dantas | Biological Sciences | Best Researcher Award

Visiting Researcher at Brazilian Agricultural Research Corporation, Brazil

Adelson Rocha Dantas is a distinguished researcher specializing in forest ecology and sustainable management. He currently holds the position of a Regional Scientific Development Fellow at CNPq – Level C. He obtained a Bachelor’s degree in Forestry Engineering from the State University of Amapá (UEAP) in 2011 and is currently pursuing a degree in Biological Sciences at the Federal University of Amapá. Additionally, he has a postgraduate specialization in Environmental Auditing and Expertise from the International Faculty of Curitiba (FACINTER). Dantas has been actively involved in scientific research since his undergraduate studies, holding research fellowships at various institutions, including Embrapa Amapá, where he worked on projects related to forest phenology, ecosystem ecology, and plant physiology. His primary research interests include the ecology of flooded forests, species phenology, dendrochronology, and sustainable forest management. He has contributed significantly to the study of the genus Carapa and its ecological interactions. Through his extensive academic and professional endeavors, Dantas continues to impact the field of tropical forest conservation and management. His work plays a crucial role in understanding climate change impacts on Amazonian biodiversity.

Professional Profile

Education

Adelson Rocha Dantas has a robust academic background in biological and environmental sciences. He earned a Ph.D. in Ecology from the National Institute for Amazonian Research (INPA) in 2021 under the guidance of Dr. Maria Teresa Fernandez Piedade, with research focusing on population ecology, floodplain forest ecology, seed dispersal, and dendroecology. Prior to this, he completed a Master’s degree in Forest Sciences at the Federal Rural University of Pernambuco (UFRPE) in 2015, supported by a CNPq scholarship, where he studied the population dynamics and spatial distribution of multi-use species in floodplain forests. His undergraduate degree in Forestry Engineering was obtained from the State University of Amapá (UEAP) in 2011. He further enhanced his expertise through a postgraduate course in Environmental Auditing and Expertise from FACINTER in 2012. Dantas has also pursued numerous supplementary courses, including dendroecology, environmental licensing, and statistical methodologies for research. In 2022, he completed a postdoctoral fellowship at Embrapa Amapá, where he advanced his research on forest ecology. His diverse educational background, complemented by specialized training in ecological analysis and conservation techniques, underscores his expertise in Amazonian forest ecosystems and sustainable management practices.

Professional Experience

Adelson Rocha Dantas has extensive professional experience in ecological research and sustainable forest management. Since 2022, he has been a Research Fellow at the Agroforestry Research Center of Amapá (Embrapa-AP), actively engaged in research and development projects. He has held multiple research roles, including serving as a Visiting Researcher at INPA from 2016 to 2021, where he contributed to ecological conservation initiatives. His career also includes multiple research fellowships funded by CNPq, beginning as a Scientific Initiation Fellow at UEAP from 2009 to 2010 and later as a Scientific and Technological Initiation Fellow at Embrapa-AP from 2010 to 2011. Throughout his career, Dantas has worked on key projects related to dendrochronology, forest ecology, and climate change impacts on Amazonian species. His expertise extends to field studies on the phenology and reproductive biology of economically significant tree species, such as Pentaclethra macroloba and Euterpe oleracea. Dantas has also been involved in research activities focused on understanding the temporal growth patterns and seed production dynamics of Bertholletia excelsa. His practical experience, combined with his academic background, positions him as a leading expert in Amazonian forest ecology and conservation.

Research Interests

Adelson Rocha Dantas’s research interests center on Amazonian forest ecology, with a particular focus on population ecology, dendroecology, and sustainable forest management. His work examines the ecological dynamics of floodplain forests and the impacts of climate change on key Amazonian tree species. He has conducted extensive studies on the phenology and reproductive biology of Pentaclethra macroloba and Carapa species, exploring their ecological interactions, growth patterns, and seed dispersal mechanisms. His research also integrates aspects of forest conservation, aiming to develop strategies for sustainable resource management. Another key area of his interest is dendrochronology, where he investigates the historical ecological patterns of Amazonian forests through tree ring analysis. Additionally, Dantas explores the adaptive strategies of floodplain species, assessing their response to environmental stressors such as hydrological fluctuations and deforestation. His commitment to ecological research contributes significantly to the conservation of Amazonian biodiversity and the development of policies for sustainable land use. Through his interdisciplinary approach, Dantas bridges the gap between theoretical ecology and applied conservation, ensuring the long-term sustainability of critical forest ecosystems in Brazil.

Research Skills

Adelson Rocha Dantas possesses a diverse set of research skills essential for ecological and environmental studies. His expertise includes field-based ecological data collection, dendrochronological analysis, and phenological monitoring of Amazonian species. He is proficient in statistical modeling and spatial analysis, employing tools such as R and GIS for ecological data interpretation. Dantas has experience in experimental design for forest ecology studies, including population dynamics assessments and long-term biodiversity monitoring. His laboratory skills include seed germination analysis, wood anatomy studies, and climate impact assessments on tree growth. He is also well-versed in environmental auditing techniques and sustainable forest management practices. His strong background in botanical taxonomy enables him to identify and classify Amazonian plant species accurately. Additionally, Dantas has developed expertise in ecological modeling, contributing to understanding species distribution patterns under changing environmental conditions. His interdisciplinary skill set supports his research contributions to conservation science, sustainable forestry, and climate adaptation strategies. Through his analytical and field research capabilities, Dantas continues to enhance knowledge about Amazonian ecosystems and inform conservation policies.

Awards and Honors

Adelson Rocha Dantas has received several awards and honors in recognition of his contributions to forest ecology and conservation science. As a recipient of multiple CNPq research scholarships, he has been acknowledged for his outstanding academic and research achievements. His doctoral and master’s studies were both funded by prestigious CNPq grants, underscoring the significance of his research in Amazonian ecology. Dantas has also been awarded fellowships for his postdoctoral research at Embrapa Amapá, where he has continued to make impactful contributions to sustainable forest management. His research projects on dendroecology and climate change adaptation have been recognized by national and international environmental research communities. Additionally, his participation in high-profile conservation initiatives has earned him accolades from academic institutions and ecological organizations. His expertise in forest phenology and sustainable resource management has positioned him as a key contributor to the field of tropical forestry. Through his dedication and scientific achievements, Dantas continues to receive recognition for his work in preserving the biodiversity of the Amazon Rainforest.

Conclusion

Adelson Rocha Dantas is a highly accomplished researcher dedicated to the study and conservation of Amazonian forests. His extensive education, professional experience, and research contributions have significantly advanced understanding of floodplain forest ecology and sustainable management practices. Through his work at Embrapa Amapá and other institutions, he has made invaluable contributions to the fields of dendrochronology, species phenology, and climate impact assessment. His research skills and interdisciplinary approach have provided critical insights into the adaptation mechanisms of Amazonian species, influencing conservation strategies and sustainable forestry policies. Dantas’s numerous awards and recognitions highlight his commitment to ecological research and environmental sustainability. His work continues to inform and support efforts to mitigate the impacts of climate change on forest ecosystems. As he advances in his career, his research remains essential to the preservation of biodiversity and the development of ecological policies in Brazil. His passion for environmental science and dedication to knowledge dissemination ensure that his contributions will have a lasting impact on tropical forest conservation and sustainable land management.

Publications Top Notes

  1. Effect of hydroclimatic seasonality on the phenological behavior of Euterpe oleracea in the Amazon estuary

    • Authors: Jaqueline Tavares Santos, Adelson Rocha Dantas, Marcelino Carneiro Guedes
    • Year: 2025
  2. Natural history of the hyperdominant tree, Pentaclethra macroloba (Willd.) Kuntze, in the Amazon River estuary

    • Authors: A. R. Dantas, C. C. Vasconcelos, M. C. Guedes, A. C. Lira-Guedes, M. T. F. Piedade
    • Year: 2024
  3. Reproductive and vegetative phenology database of two progenies of Euterpe oleracea Mart. planted in the Amazon estuary

    • Authors: Jaqueline Tavares Santos, A. R. Dantas, Marcelino Guedes
    • Year: 2024
  4. Population dynamics of Pentaclethra macroloba, a hyperdominant tree in the Amazon River estuary

    • Authors: Adelson Rocha Dantas, Leonardo Pequeno Reis, Marcelino Carneiro Guedes, Ana Cláudia Lira-Guedes, Ana Lícia Patriota Feliciano, Luiz Carlos Marangon
    • Year: 2023
  5. Effect of climate and flooding on the phenology of Attalea phalerata (Arecaceae) in a white‐water floodplain forest of the Amazon River

    • Authors: Rafael Neri Furtado, Marcelino Carneiro Guedes, Adelson Rocha Dantas, Ana Cláudia Lira‐Guedes, José Júlio de Toledo
    • Year: 2023
  6. Demographic and growth patterns of Pentaclethra macroloba (Willd.) Kuntze, a hyperdominant tree in the Amazon River estuary

    • Authors: Adelson Rocha Dantas, Marcelino Carneiro Guedes, Ana Cláudia Lira‐Guedes, Jochen Schöngart, Maria Teresa Fernandez Piedade
    • Year: 2022
  7. Complexidade taxonômica e ampliação da área de ocorrência de Attalea phalerata Mart. ex Spreng. para o Estado do Amapá, Brasil

    • Authors: Tonny David Santiago Medeiros, Ana Cláudia Lira Guedes, Carlos Alberto Santos da Silva Junior, Raullyan Borja Lima e Silva, Ana Luzia Ferreira Farias, Sheylla Susan Moreira da Silva de Almeida, Adelson Rocha Dantas, Salustiano Vilar da Costa Neto, Patrick de Castro Cantuária
    • Year: 2021
  8. Phenological behavior and floral visitors of Pentaclethra macroloba, a hyperdominant tree in the Brazilian Amazon River estuary

    • Authors: Adelson Rocha Dantas, Marcelino Carneiro Guedes, Ana Cláudia Lira-Guedes, Maria Teresa Fernandez Piedade
    • Year: 2021
  9. Morphology, germination, and geographic distribution of Pentaclethra macroloba (Fabaceae): a hyperdominant Amazonian tree

    • Authors: Adelson Rocha Dantas, Marcelino Carneiro Guedes, Caroline Da Cruz Da Cruz Vasconcelos, Jaynna Gonar Lobo Isacksson, Dayane Nathália Barbosa Pastana, Ana Cláudia Lira-Guedes, Maria Teresa Fernandez Piedade
    • Year: 2020
  10. Population dynamics of Attalea excelsa (Arecaceae) in floodplain forest of the Amazonian estuary

  • Authors: Adelson Rocha Dantas
  • Year: 2020

Qian Mao | Biological Sciences |Best Researcher Award

Dr. Qian Mao | Biological Sciences |Best Researcher Award

Lecturer at Liaoning university, China

Dr. Qian Mao is a distinguished lecturer and researcher in food science and engineering at Liaoning University, where she also serves as a master’s supervisor. She earned her Ph.D. from Jilin University and focuses her research on food oral processing, biodegradable materials, and bionic chewing systems. Dr. Mao has successfully led several key research projects funded by the National Natural Science Foundation and provincial programs. Her contributions to the field are reflected in numerous peer-reviewed publications in high-impact journals. In addition to her research, Dr. Mao is an innovative educator, actively involved in teaching reform and curriculum development, and has received several awards for her excellence in education and teaching. Her work integrates scientific inquiry with practical applications, aiming to improve both food processing techniques and sustainability. With a strong academic background and a commitment to advancing her field, Dr. Mao continues to make significant contributions to food science research and education.

profile:

Education:

Dr. Qian Mao has a strong academic foundation in food science and engineering. She earned her Ph.D. in Food Science and Engineering from Jilin University, where she conducted advanced research from September 2011 to December 2016. Her doctoral studies focused on food texture evaluation and sensory science, laying the groundwork for her future research in food oral processing and biodegradable materials. Prior to her Ph.D., Dr. Mao completed her Bachelor of Engineering in Food Science and Engineering at Southwest University for Nationalities from September 2007 to June 2011. During her undergraduate studies, she gained a solid understanding of food processing technologies and the science behind food production. This comprehensive academic background has equipped Dr. Mao with the expertise needed to excel in both teaching and research, contributing to her development as a leader in her field and enabling her to make significant advancements in food science and engineering.

Professional Experience:

Dr. Qian Mao has extensive professional experience in academia, focusing on both research and teaching. Since October 2018, she has been a lecturer at the College of Light Industry at Liaoning University, where she teaches undergraduate and graduate courses in food science, including Food Chemistry, Food Processing Technology, and Advances in Modern Food Science Research. Prior to this, from March 2017 to September 2018, she served as a lecturer at the Key Laboratory of Deep Processing of Agricultural Products at Changchun University. During her tenure at these institutions, Dr. Mao has led several high-profile research projects, including studies on bionic chewing systems and food texture evaluation funded by national and provincial organizations. Her hands-on experience as a Principal Investigator has allowed her to contribute significantly to the advancement of food science, while her teaching responsibilities highlight her dedication to education and mentorship, helping to shape the next generation of food science professionals.

Research Skills:

Dr. Qian Mao possesses a robust set of research skills that make her a leader in the field of food science and engineering. Her expertise lies in food oral processing, sensory science, and the development of biodegradable materials. She has a strong background in designing and implementing innovative research methodologies, such as developing bionic chewing systems for texture evaluation, which bridges the gap between theoretical research and practical application. Dr. Mao is proficient in numerical simulation techniques, allowing her to model complex food processing systems and evaluate the texture of food in various environments. Her research also extends to sustainable food technologies, with projects focused on biodegradable materials and food packaging. As a Principal Investigator, she has successfully secured and managed multiple high-profile research grants, showcasing her project management skills. Additionally, her experience in interdisciplinary research allows her to collaborate effectively across different scientific domains, further enhancing the impact of her work.

Award and Recognition:

Dr. Qian Mao has received numerous awards and recognitions for her contributions to both research and education in the field of food science. In 2023, she was honored with the First Prize for Information-Based Innovation in Education and Teaching in Liaoning Province, recognizing her innovative approaches to integrating technology in the classroom. She also received the Second Prize for Excellent Teaching Plans at Liaoning University in the same year. Her dedication to undergraduate teaching was further acknowledged in 2022 when she was awarded the Second Prize in the Undergraduate Teaching Achievement Award. Additionally, Dr. Mao has been recognized as an Outstanding Instructor for her involvement in student innovation competitions, and she has been lauded for her organizational skills in events like the Liaoning Province Food Safety Innovation Competition. These accolades highlight her excellence not only in research but also in fostering academic growth and innovation among students.

Conclusion:

Dr. Qian Mao’s substantial contributions to research and teaching make her a strong candidate for the Best Researcher Award. With continued focus on expanding her international presence and fostering future talent, she is poised to further elevate her already impressive academic and research achievements.

Publication Top Notes:

  1. Formation of incipient soot particles from polycyclic aromatic hydrocarbons: A ReaxFF molecular dynamics study
    • Authors: Q. Mao, A.C.T. Van Duin, K.H. Luo
    • Year: 2017
    • Citations: 199
    • Published in: Carbon 121, 380-388
  2. A new detailed kinetic model for surrogate fuels: C3MechV3.3
    • Authors: S. Dong, S.W. Wagnon, L.P. Maffei, G. Kukkadapu, A. Nobili, Q. Mao, et al.
    • Year: 2022
    • Citations: 72
    • Published in: Applications in Energy and Combustion Science 9, 100043
  3. Classical and reactive molecular dynamics: Principles and applications in combustion and energy systems
    • Authors: Q. Mao, M. Feng, X.Z. Jiang, Y. Ren, K.H. Luo, A.C.T. Van Duin
    • Year: 2023
    • Citations: 57
    • Published in: Progress in Energy and Combustion Science 97, 101084
  4. Effects of moisture and salinity on methane adsorption in kerogen: A molecular simulation study
    • Authors: J. Zhou, Q. Mao, K.H. Luo
    • Year: 2019
    • Citations: 53
    • Published in: Energy & Fuels 33 (6), 5368-5376
  5. Initiation mechanisms of enhanced pyrolysis and oxidation of JP-10 (exo-tetrahydrodicyclopentadiene) on functionalized graphene sheets: Insights from ReaxFF molecular dynamics
    • Authors: M. Feng, X.Z. Jiang, Q. Mao, K.H. Luo, P. Hellier
    • Year: 2019
    • Citations: 48
    • Published in: Fuel 254, 115643
  6. Investigation of methane oxidation by palladium-based catalyst via ReaxFF Molecular Dynamics simulation
    • Authors: Q. Mao, A.C.T. Van Duin, K.H. Luo
    • Year: 2017
    • Citations: 48
    • Published in: Proceedings of the Combustion Institute 36 (3), 4339-4346
  7. Role of ring-enlargement reactions in the formation of aromatic hydrocarbons
    • Authors: M. Baroncelli, Q. Mao, S. Galle, N. Hansen, H. Pitsch
    • Year: 2020
    • Citations: 41
    • Published in: Physical Chemistry Chemical Physics 22 (8), 4699-4714
  8. Fundamental study on mechanisms of thermal decomposition and oxidation of aluminum hydride
    • Authors: M. Feng, H. Li, Q. Mao, K.H. Luo, P. Hellier
    • Year: 2019
    • Citations: 41
    • Published in: The Journal of Physical Chemistry C 123 (40), 24436-24445
  9. Dynamics and kinetics of reversible homo-molecular dimerization of polycyclic aromatic hydrocarbons
    • Authors: Q. Mao, Y. Ren, K.H. Luo, A.C.T. Van Duin
    • Year: 2017
    • Citations: 39
    • Published in: The Journal of Chemical Physics 147 (24)
  10. Dimerization of polycyclic aromatic hydrocarbon molecules and radicals under flame conditions
    • Authors: Q. Mao, D. Hou, K.H. Luo, X. You
    • Year: 2018
    • Citations: 38
    • Published in: The Journal of Physical Chemistry A 122 (44), 8701-8708