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Manifestations and Effects of Dipolar Coupling in Erbium-Based Molecular Magnets
Manifestations and Effects of Dipolar Coupling in Erbium-Based Molecular Magnets
Manifestations and Effects of Dipolar Coupling in Erbium-Based Molecular Magnets

상세정보

자료유형  
 학위논문 서양
최종처리일시  
20250211152033
ISBN  
9798384469407
DDC  
540
저자명  
Orlova, Angelica P.
서명/저자  
Manifestations and Effects of Dipolar Coupling in Erbium-Based Molecular Magnets
발행사항  
[Sl] : University of California, San Diego, 2024
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2024
형태사항  
234 p
주기사항  
Source: Dissertations Abstracts International, Volume: 86-04, Section: B.
주기사항  
Advisor: Rinehart, Jeffrey Dennis.
학위논문주기  
Thesis (Ph.D.)--University of California, San Diego, 2024.
초록/해제  
요약The focus of this dissertation is the thorough analysis of the effects of dipolar coupling on magnetic relaxation behavior within erbium-based molecular magnets. Utilizing the Er-COT unit as the starting point and building block, we investigate intra- and inter-molecular dipolar coupling motifs generated with analogous highly anisotropic building block units. Each chapter holds a specific focus, organized as follows: Chapter 1 offers a brief introduction to molecular magnetism, followed by an overview of topics necessary towards understanding magnetic relaxation in the scope of this work, including energy perturbations, relaxation dynamics, and anisotropy; an introduction to the Er-COT unit and coupling schemes in lanthanide-based molecular magnetism, and the motivation for investigating dipolar coupled systems. The chapter concludes with extended chapter summaries for the remainder of this work.Chapter 2 focuses on the role and effects of intramolecular dipolar coupling in a series of compounds of increasing nuclearity. This work demonstrates the ability of intramolecular dipolar coupling to control quantum tunnelling of magnetization, and thus the rate and mechanism of magnetic relaxation. This chapter utilizes an expanded frequency space magnetometry technique to garner new insights into magnetic relaxation by visualizing, fitting, and analyzing multiple relaxation regimes. The chapter concludes with an intuitive model of thought based on a simple vector addition model, within which spin interactions can be estimated directly from a crystal structure.Chapter 3 discusses the effects of intermolecular dipolar coupling within a series of identical single-ion magnets within varied crystal packing environments. This work depicts the propensity of intermolecular dipolar coupling to drive dramatic differences in resulting magnetic behavior and seeks to shed light on the relationship between single-ion magnetism and solid-state magnetism. This chapter applies a novel fitting methodology to quantify additional parameters from isothermal magnetization data for downstream analysis. Chapter 4 presents the analysis of a highly symmetric, near-tetrahedral tetranuclear single-molecule magnet to discuss the effects of crystallographic symmetry on the resulting dipole-coupled spin-space symmetry. This chapter discusses the ensuing available rhombic dodecahedral quantum space of this molecule, composed of octahedral and cubic subspaces, and makes connections to theoretically proposed quantum Cayley networks upon hypercubes.
일반주제명  
Chemistry
일반주제명  
Electromagnetics
일반주제명  
Inorganic chemistry
키워드  
Dipolar coupling
키워드  
Magnetism
키워드  
Magnetochemistry
키워드  
Molecular magnetism
키워드  
Quantum tunnelling
키워드  
Single-molecule magnetism
기타저자  
University of California, San Diego Chemistry and Biochemistry
기본자료저록  
Dissertations Abstracts International. 86-04B.
전자적 위치 및 접속  
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MARC

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■035    ▼a(MiAaPQ)AAI31334664
■040    ▼aMiAaPQ▼cMiAaPQ
■0820  ▼a540
■1001  ▼aOrlova,  Angelica  P.
■24510▼aManifestations  and  Effects  of  Dipolar  Coupling  in  Erbium-Based  Molecular  Magnets
■260    ▼a[Sl]▼bUniversity  of  California,  San  Diego▼c2024
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2024
■300    ▼a234  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  86-04,  Section:  B.
■500    ▼aAdvisor:  Rinehart,  Jeffrey  Dennis.
■5021  ▼aThesis  (Ph.D.)--University  of  California,  San  Diego,  2024.
■520    ▼aThe  focus  of  this  dissertation  is  the  thorough  analysis  of  the  effects  of  dipolar  coupling  on  magnetic  relaxation  behavior  within  erbium-based  molecular  magnets.  Utilizing  the  Er-COT  unit  as  the  starting  point  and  building  block,  we  investigate  intra-  and  inter-molecular  dipolar  coupling  motifs  generated  with  analogous  highly  anisotropic  building  block  units.  Each  chapter  holds  a  specific  focus,  organized  as  follows:  Chapter  1  offers  a  brief  introduction  to  molecular  magnetism,  followed  by  an  overview  of  topics  necessary  towards  understanding  magnetic  relaxation  in  the  scope  of  this  work,  including  energy  perturbations,  relaxation  dynamics,  and  anisotropy;  an  introduction  to  the  Er-COT  unit  and  coupling  schemes  in  lanthanide-based  molecular  magnetism,  and  the  motivation  for  investigating  dipolar  coupled  systems.  The  chapter  concludes  with  extended  chapter  summaries  for  the  remainder  of  this  work.Chapter  2  focuses  on  the  role  and  effects  of  intramolecular  dipolar  coupling  in  a  series  of  compounds  of  increasing  nuclearity.  This  work  demonstrates  the  ability  of  intramolecular  dipolar  coupling  to  control  quantum  tunnelling  of  magnetization,  and  thus  the  rate  and  mechanism  of  magnetic  relaxation.  This  chapter  utilizes  an  expanded  frequency  space  magnetometry  technique  to  garner  new  insights  into  magnetic  relaxation  by  visualizing,  fitting,  and  analyzing  multiple  relaxation  regimes.  The  chapter  concludes  with  an  intuitive  model  of  thought  based  on  a  simple  vector  addition  model,  within  which  spin  interactions  can  be  estimated  directly  from  a  crystal  structure.Chapter  3  discusses  the  effects  of  intermolecular  dipolar  coupling  within  a  series  of  identical  single-ion  magnets  within  varied  crystal  packing  environments.  This  work  depicts  the  propensity  of  intermolecular  dipolar  coupling  to  drive  dramatic  differences  in  resulting  magnetic  behavior  and  seeks  to  shed  light  on  the  relationship  between  single-ion  magnetism  and  solid-state  magnetism.  This  chapter  applies  a  novel  fitting  methodology  to  quantify  additional  parameters  from  isothermal  magnetization  data  for  downstream  analysis.  Chapter  4  presents  the  analysis  of  a  highly  symmetric,  near-tetrahedral  tetranuclear  single-molecule  magnet  to  discuss  the  effects  of  crystallographic  symmetry  on  the  resulting  dipole-coupled  spin-space  symmetry.  This  chapter  discusses  the  ensuing  available  rhombic  dodecahedral  quantum  space  of  this  molecule,  composed  of  octahedral  and  cubic  subspaces,  and  makes  connections  to  theoretically  proposed  quantum  Cayley  networks  upon  hypercubes.
■590    ▼aSchool  code:  0033.
■650  4▼aChemistry
■650  4▼aElectromagnetics
■650  4▼aInorganic  chemistry
■653    ▼aDipolar  coupling
■653    ▼aMagnetism
■653    ▼aMagnetochemistry
■653    ▼aMolecular  magnetism
■653    ▼aQuantum  tunnelling
■653    ▼aSingle-molecule  magnetism
■690    ▼a0485
■690    ▼a0488
■690    ▼a0607
■71020▼aUniversity  of  California,  San  Diego▼bChemistry  and  Biochemistry.
■7730  ▼tDissertations  Abstracts  International▼g86-04B.
■790    ▼a0033
■791    ▼aPh.D.
■792    ▼a2024
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17162613▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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